ML20128H112

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Fire Endurance Test of Thermo-Lag 330-1 Fire Protective Envelope (24 Inch Tray W/Tee)
ML20128H112
Person / Time
Site: Comanche Peak Luminant icon.png
Issue date: 01/13/1993
From: Humphrey C, Priest D
OMEGA POINT LABORATORIES
To:
Shared Package
ML20127K787 List:
References
12340-94367H, NUDOCS 9302160278
Download: ML20128H112 (454)


Text

{{#Wiki_filter:_ I ' i !O j !t I FIRE ENDURANCE TEST 4 OF A THERMO LAG 3301  ;

FIRE PROTECTIVE ENVELOPE i

(24 in. Tray with Tee) i Project No.12340-943G7h i Scheme 12 j Assembly 2 i l i 1 1 iO FIRE ENDURANCE TEST TO QUALIFY A PROTECTIVE l ENVELOPE FOR CLASS 1E ELECTRICAL CIRCUITS 4 December 16, l992

Prepared For

TU Electric 4 COMANCHE PEAK STEAM ELECTRIC STATION P.O. Box 1002 Glen Rose, Texas .760431002 oA Po s t 9302160278 9303g9

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(______ ___ _ _ - Report No.12340 94367h Decemist 10,1992 Texas Utilities Electric Pcg) il

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ABSTRACT A 24 in. wide cable tray assembly, with tee section, clad with a nominal thickness of 1/2 in. Thermo Lag @ 3301 and various upgrades as described herein was evaluated in accordance with the Texas Utilities Electric TEST PLAN, Rev. 8, based essentially on the requirements of American Nuclear Insurers Bulletin B.7.2,11/87, Attachment B entitled: "ANIIMAERP RA Standard Fire Endurance Test Method To Qualify A Protective Envelope For Class IEEE Electrical Circuits," Revision I, dated November 1987, and the Nuclear Regulatory Commission letter dated October 29,1992 (see Appendix K). This assembly was found to meet the requirements of those documents for a fire resistance period of 60 minutes. O V The details, procedures and observations reported herein are correct and true within the limits of sound engineering practice. All specimens and test sample assemblies were produced, installed and tested under the surveillance of either Texas Utilities' er the testing laboratory's in house Quality Assurance Program. This report describes the analysis of a distinct assembly and includes descriptions of the test procedure followed, the assembly tested, and all results obtained. All test data are on file and remain available for review by authorized persons. 6  % 2Lua A. L ~/ d Constance A. Humphrey ila/ 9.3 Ddte Manager, QA Dept.

                       &W Deggary N, Priest I /

U Date President O G po A *o, o a ogggo 1

Report No.12340 94307h Decemler 10,1992 Texts UtilitlIs El:ctric Page ill O O TABLE OF CONTENTS nMi PAGE INTRODUCTION 1 OBJECTIVE 1 TEST PROCEDURE 1 Fire Test Furnaco 2 Thermocouples 3 Circuit Integrity 3 Insulation Resistance Testing 4 Data Acquisition system 5 Hose Stream Test 5 Barrier Inspection G (Oj Visual Cable Inspection G TEST ASSEMBLY G Test Deck G Test Items (General) 8 Test Items (Tray) 10 Tray Supports 10 Electrical Cables 10 Thermocouple Placement 11 Thermo Lag

  • Installation Highlights 12 TEST RESULTS 14 CONCLUSIONS 19 APPENDICES Appendix A: CONSTRUCTION DRAWINGS 20 Appendix B: TEST PLAN 29 Continued on next page V o A *o, o m o* j

Iteport No.12340-94307h December 10,1992 Texas Utilities Electric l' age iv O TABLE OF CONTENTS (CONT.) rIni PAGE Appendix C: THERMOCOUPLE LOCATIONS 50 Appendix D: CIRCUlT INTEGRITY DETAILS 58 Appendix E: INSULATION RESISTANCE DETAILS OG Appendix F: GRAPHICAL TEST DATA 78 Appendix G: TABULAR TEST DATA 121 Appendix H: QUALITY ASSURANCE 100 Appendix I: PHOTOGRAPHS 393 Appendix J: THERMO LAG 81NSTALLATION DETAILS 427 Appendix K: NRC LETTER, "Thermo Lag

  • Acceptance 430 Methodology for CPSES Unit 2," dated O O * - 29.1992 Last Page of Document 438 O 40AN Of C .4 OMATO

4 i j ' December 16,1992 bport Na 12340-94367h Texas Utilities Electric Pag)1 l 1 4 O 1 ! INTRODUCTION i i i The protection of vital electrical circuits from the effects of an external fire I ! exposure is of primary concern in the design and construction of an electrical i power generating plant. Typical" fire protective envelopes" are designed te protect i the contents of an electrical raceway for fire exposure periods of one to three hours, during which time the electrical circuitry must remain functional. { i l The external fire exposure selected te evaluate protective envelope systems is that i described in the ASTM E119 88 Fire Tests of Building Construction and Materials j (E119 Time Temperature Curve, described later in this document.) ] Typical fire test programs involve the selection and construction of a specific-4 electrical racoway system,- instrumentation for thermal and circuit integrity- ! measurements, followed by the application of the protective envelope system by . qualified personnel. .l 4 . This standard should be used to measure and describe the properties of materials, l 2 products, or assemblies in response to heat and game under controlled laboratory i' conditions and should not be used to descrine or appraise the pre hazard or risk of i materials, products, or assemblies under actual pre conditions.~ However, results . , of this test may be used as slements of a fire risk assessment that takes into ' i account all the factors that are pertinent to an assessment of the fire hazard of a i

particular end use. ,

i OBJECTIVE

The objective of this project was to evaluate a specific protective envelope system

' for use as a 1 hour fire protective envelope for redundant electrical systems. The ' l entire program was carried ~out in accordance with the. Texas Utilities Electric, TEST PLAN, One Hour Fire Endurance Tests of Articles Protected with the . 4 Thermo Lag 330 Fire Barrier System, Rev. 8, which may be found in~ Appendix B  ! of this document. For reasons of clarity and to reduce redundancy, many items = ' ' discussed in the Test Plan have not been duplicated elsewhere in this document. - T

                                'IHrfPROCEDURE                                                                                                                                            ,

L .

This entire- test-program was- performed in accordance with Texas Utilities- .,

, Electric TEST PLAN,'Rev 8, which has been included in Appendix. B. : Many of - the specific details of this projoct will be found in that document. m 4

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Report No.12340 943G7h Deceinter 16,1992 Texas Utilities Electric l'ags 2 O FIRE'ITEP FURNACE The test furnace is designed to allow the specimen to be uniformly exposed to the specified time temperature conditione. It is fitted with symmetrically located natural gas burners designed to allow an even heat flux distribution across the surface cf a test specimen. The temperature within the furnace is determined to be the mathematical average of thermocouples located symmetrically within the furnace and positioned 12 in, away from representative parts and locations of the test specimen. The exact positioning of the thermocouples is such that the average fire exposure across the entire test specimen can he determined. The materials used in the construction of these thermocouples are those suggested in the E110 test standard. During the performance of a fire exposure test, the furnace temperatures are monitored at least every 15 seconds and displayed for the furnace operator to allow control along the specified temperature curve. All data is printed to paper every 30 seconds and saved to magnetic disk every minute. The fire exposure is controlled to conform with the standard time temperature curve shown in Figure 1, as determined by the table below: O 2000 - Temperature Time 1760 ' G) (min) C 1000 - L - 1000 5 1250 - 2 1300 10 2 1000 - 1402 3} U - 1550 3)

                                       &     750 -                                            1700              G) b     soo.                                             1792              90 h                                                       1850             120 250 -                                            1888              if;0 0      ..    .     ,  ,    ,    , ,
                                                                                   , ,        1925              180 0   25 50  75 100 125 150 175 200 Time (minutes)

Fhrure 1 The test furnace used consists of a large horizontal exposure chamber, with an internal dimension of 12 ft long and 7 ft wide. The furnace is equipped with diffuse flame natural gas burners symmetrically located across the floor of the furnace and controlled by individual gas flow valves, with the overall gas flow to O V f 'a %g

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Heport No.12340-94367h Docenher 10,1992 Texas Utilities Electric Paga 3 O the furnace being controlled by a single overall gas control valve. Capable of a maximum heat output of 5 million Utu/ hour, these burners are arranged well below the exposed face of the specimen to ensure an even temperature at the surface of the specimen. Windows are located on two sides of the furnace to allow observation of the specimen during fire exposure. The depth of the furnace is variable, being increased to the desired amount by the addition of concrete blocks around the perimeter ledge. These blocks are lined with ceramic fiber blanket to minimize the heat loss from the furnace and to decrease the time required for the furnace walls to heat up. For these tests, the walls are built up from their normal height of 40 in, to a total height of slightly over 79 in, from the furnace fioor to the top of theledge. The fire test is controlled according to the standard time / temperature curve, as indicated by the average temperature obtained from the readings of the furnace interior thermocouples symmetrically located across the specimen,12 in, away. The thermocouples are enclosed in protection tubes of such material and dimensions that the time constant of the thnr'nocouple assembly lies between 5.') and 7.2 minutes, as required by the E 119 standard. The furnace temperaturo during a test is controlled such that the area under the timo/ temperature curve is within 10% of the corresponding area under the standard time / temperature curve for the one hour test period. The furnace oressure is controlled to be as nearly neutral with respect to the surrounding laboratory atmosphere as possible, measured at the vertical mid-height of the test specimen. Adjusting the neutral plane at that position resulta in a nominal +0.015 in. WC pressure at the top of the specimen (under surface of the deck) and --U.015 in. WC pressure at the bottom of the specimen. TIIEIG10 COUPLES Temperatures on the interior of the fire protected systems are measured with Type K, 24 gauge, Chromel Ahimel electrically welded thermocouples formed from Chromel and Alumel wires of "special limits of error (il.1*C)," and covered with braided fiberglass insulation (unless thermocouple lead routing requires higher temperature resistance, in which case the thermocouple leads are insulated with ceramic liber or Nexcl8 insulation). CIRCUIT INTEGRITY The purpose of the circuit integrity measurement was to enable the detection of the occurrence of a short between any two conductors or ground (the tray steel) or an open circuit. Since the failure of any conductor within the system would result in a failure of the protective envelope,it was not important to be able to determine exactly which conductor failed, but merely that it did fail. Consequently, all O V g^%

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Report No. 12340-94367h December 10,1992 Texas Utilities Electric Page 4 O conductors in each cab!c type were connected in a single series circuit, with a 1000 1/4 watt resistor between each. (For instance,if a raceway contains 7C/#12 AWG cables, all of the conductors of a particular color are connected into a single, nerlos electrical circuit. Each of these is then connected to the others, in an ' overall series circuit, with a 1/4 watt,1000 resistor between each, so that if a short occurs between any two [or more} conductors within a single cable, a minimum of 1000 will be dropped from the circuit (see section on Circuit Integrity for complete details]) Finally, a 10000 resistor was installed between this circuit and a 12 volt battery to net as a load resistor for the data acquisition system, and a 1000 resistor was connected between the end of the circuit and system ground (See Appendix D: CIRCUIT INTEGRITY DETAILS.) ~ The resultant circtut allows the measuremont of steady state voltage drops across e the entire circuit, which will change accordingly as any combination of the resietors is removed frem the circuit by shorting of any conductors. Prior to beginning the fire test, the circuit integrity signals were connected to the data acquisition system and their inputs verified. The voltage measured (using a calibrated 41/2 digit DVM) was noted and recorded as iV (initial voltage). Then one of the 1000 resistors was shorted, and the resultant voltage measured and p saved as V-toon (voltage with 1000 removed from the circuit). This, then, d indicates the minimum voltage change from Vi that would show a short had occurred in any of the cables. Following the completion of the fire exposure test, a final voltage was measured and recorded as Vr (final voltage). Continuous collection of the circuit integrity voltage signals was performed during the entire fire exposure and hose stream tests and data collection was terminated after the hose stream test was complete. See Appendix D: CIRCUIT INTEGRITY DETAILS for circuit schematics for each of the cable types in this test. INSULATION RESISTANCE TESTING As an additional check on the condition of the conductor insulation, insulation resistance testing was performed on each cable type before the fire and after the hose stream test. The insulation resistance tests were performed using a TU Electric owned and calibrated adjustable megohmmeter, set to the 500 volt DC level for insulation resistance testing on all instrumentation cables and the 1500 volt DC level for all power and control cables. To perform the insulation resistance test, the connection to ground was broken for each cable type and the test instrument leads connected from conductor to conductor and from each conductor to ground. Any leakage between that cable type's conductors and ground, or from conductor to conductor, is readily detected in this manner Upon discovery of an ohmic reading which is lower than the criteria set in the October 29, 1992, NRC Letter (Appendix K) , the reading will be documented in the test s report and the splices between cables will be broken and each cable tested

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Report No.12340 94307h December 16,1992 Texas Utilitle: Electric Page 5 4 I O i l l separately to determine which cable conductor is bad or if there is a bad splice or test lead. Provided the low reading is on a cable, that cable is then removed from ! the raceway and visually examined to determine where and how the failure I occurred. DATA ACQUIStrION SYSTEM l The outputs of the test article thermocouples and circuit integrity lines and  ! furnaco probes are monitored by a data acquisition system consisting of a John I Fluke Mfg. Co., Model HELIOS 2289A Computer Front End, a John Fluke Mfg. Co., Model HELIOS 2281A Extender Chassis (in the case of the 200 channel capacity unit), and an Apple Computer Co., Macintosh Classic microcomputer. 4 The Computer Front End is connected to ehe RSS22 Serial Interface Port of the Macintosh and the Extender Chassis is senally connected to the Computer Front End. The computer is programmed in Microsoft BASIC to command the HELIOS units to sample the data input lines, receive and convert the data into a digital format, and to manipulate the raw data into usable units for display on screen and paper and for saving to floppy disk. Two data acquisition units are used for the majority of tests due to the large

O number of data channels. One data acquisition unit is configured for monitoring 200 data input channels and is used to sample all (or most) of the test article

. thermocouples. A second data acquisition unit is configured for monitoring 100 data input channels and is used to sample the circuit integrity lines of the test i article, ambient laboratory temperature, furnace temperature probes and, if ! necessary, the remaining test article thermocouple inputs. I HOSE STREAM TEST l l According to the Test Plan, following the fire exposure test, the test specimen is removed from the test furnace, lifted approximately 6 ft. from the ground (as ! measured from the lowermost part of the specimen), slowly turned (nominally 6 to 8 revolutions per minute) and exposed to the impact, crosion, and cooling effects of a hose stream directed perpendicularly at the exposed surface of the test specimen as outlined in the standard. The stream is delivered, for a minimum period of 5 minutes, through a 1 1/2 in, fog nozzlo with an adjustable stream, with a nozzle pressure of 75 psi, a spray angle of 30 and with the tip of the nozzle a distance of 5 ft. from the exposed face. The nozzle is to flow a minimum of 75 gpm during the hose stream test. It is recognized that, with a three dimensional object, not all surfaces can be attacked by the hose stream test. For this reason, the specimen is lifted high enough to allow the stream to play against the sides, inside and outside vertical surfaces and the underside of the item, resulting in little, if any, direct force being applied to the inside top surface of the specimen. {

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Report No.1?.340 9436Tn Deoet.h:r 16,1992 Texas Utilities Electric Pags6 l . O BARRIER INSPECTION Following the hose stream test, all barrier materials, joints and seams are to be visually inspected for burnthrough or openings in the barrier envelope in accordance with the acceptance criteria outlned in the NRC letter dated October 29,1992, (Appendix K.) VISUAL CABLE INSPECTION Following the barrier inspection, the barrier materials will be systematically removed and the condition of the various assembly aspects will be noted (see Post Test Observations). The cables in the system will be visually inspected for damage in accordance with the acceptance criteria outlined in the NRC letter dated l October 29,1992, (Appendix K.) If any visible thermal damage exists, the outer jacket of the cable in c,uestion will bu allt open and the condition.of the inner R conductor insulation wi'.1 be assessed. TESTASSEMBLY O The test deck consisted of a perimeter of 3 in. ructural stei. hannel, welded-together into an 8 ft by 13 ft rectangle, with +he pomts outward. Over the top of this framework a layer of 10 GA steel sheet was welded to forr.i si continuous, smooth top. Pipe sockets (4 in s, sch 40 steel pipe) were then welded onto each corner, so  ; that 3 in. a steel pipe legs could be attached te hold the assembly at a comfortable working level. - Holes were then cut into the deck steel at the appropriate locations to allow the test item to be installed into the deck assembly. Structural elements were typically attached to the test item above the deck level, to rigidly fix the item to the deck.' Following the installation of the test item, the deck was reinforced with steel channel positioned so as to minimize any warping, bending or sagging during the fire test (the size of the channel being selected after consideration of the amount of stiffness required for that particular assembly), and then insulated on ' t the underside with two 2 in, thick layers of 6 pcf ceramic fiber blanket, held in place.. with impaling pins, spaced a maximum of 12 in, o.c. The figure below illustrates a cross sectional view of one edge of a typical deck assembly, showing the structural steel, the decking and the insulation.

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Report No.12340-94?G7h Decernber 10,1992 Texas Utilities Electric Page 7 O 10 GA deck steel f ha C rnic M Impaling pin l: Blanket n.. E l 3 ' g . Following complete installation of the test item, the underside of the deck was insulated as previously described, with the ceramic blanket being pushed into direct contact with the test item. A *hox" around the penetration point in the det.k steel was formed of 3 in, steel channel on edge and the enclosed area completely filled to a nominal depth of 3 in, with silicone foam fire seal. silicono foam fire stop

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FIRE SIDE - CROSS SECTION VIEW OF POINT OF PENETRATION OF THE DECK BY A TEST ITEM This method of sealing around the point where a test item penetrates the test deck has proven very effective at withstanding the 60 minute fire exposure. Since the penetration seal is ' considered a part of the support system, and is not in itself O ,( .,.,

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Repnet No.12340 94367h December 16,1992 Tuas Utilith: Electric Page 8 O being evaluated by this test method, the important aspect of the seal is that it ae

            " typical" of a field installation and withstand the fire exposure test. The silicone foam system used in this design does not unduly act as a heat sink, nor does it offer significant physical support to the penetrating item. Its purpose is to seal the gap without affecting the evaluation of the protective envelope system.

TEST TrEM MATERIAIE (GENERAL) Cable trays used in this test consist of actual items in CPSES inventory and were furnished by two different vendors: T.J. Cope and Burndy Husky. The most significant difference between the two systems is the rungs. The T.J. Cope rung is a rectangular shaped bent plate with two open ended legs turned inward. The Burndy Husky rung is a rectangular shaped bent plate with two legs turned outward. Additionally, the side rail four (4) bolt hole patterns are offset on the T.J. Cope, whereby the two bolt holes closest to the edge of the tray end are positioned farthest apart from each other and the remaining two bolt holes are positioned the closest to each other. Further material information and comparisons are as s follows: A'ITRIBUTE BURNDY. HUSKY T.J. COPE Side rail thickness 12 GA 12 GA Rung thickness 16 GA 16 GA _ Splice connector fitting thickness 11 GA 11 GA Rung spacing 6 in, o,c. 6 in. o c. Rung dimensions 1 1/4 in, w x 3/4 in. 15/8 in, w x 13/16 h in, h x 5/8 in. leg x 3/8 in. leg Cable tray straight sections consisted of ASTM"A607, GR 50, hot dipped galvanized steel, ASTM A123. Cable tray fitting materials were in accordance with ASTM A570, GR 36, hot dipped galvanized steel, ASTM A123, The cable tray tee section was made of materials meeting the requirements of ASTM A570, GR 36, hot dipped galvanized steel, ASTM A123. All test items were constructed from materials extracted from TU Electric's Comanche Peak Steam Electric Station stock material storage areas in accordance with existing site procedures. Electrical cables-used in this and other test programs consisted of site specific cables supplied by TU Electric and taken from CPSES lot inventory. These cables

             .were as follows:

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lteport No.12340-94307h Decmler 16,1992 Texas Utilities Electric pag > 9 O CitOSS-CABLE CABLE DIAME'IER SECTIONAL

                                                              'IYPE           FUN __CTION      DESCRIIYI' ION        (In.)      AREA (in2)

W.020 Power 3C/#6 AWG 600v. 0.980 0.754 - W 023 Power 3C/#8 AWG 600v. 0.747 0.438 W 046 Control 9C/#12 AWG 600v. 0.690 0.374 W-047 Control 7C/#12 AWG 600v. 0.605 0.287 W-048 Control 5C/#12 AWG 600v. 0.575 0.200 W 063 Instrumentation 4 Shielded, 0.737 0.427 Twisted Pair 16 AWG 600v. W-071 Instrumentation SC/#16 AWG 600v. 0.474 0.176 The diameters and cross sectional areas listed herein represent the Laboratory's average of ten measurements of each cable type. Thermo Lag

  • 3301 Materinis Thermo Lag 8 materials were previously procured from Thermal Science, Inc.

o (TSI), St. Louis, MO. The Thermo Lag 8 materials extracted from CPSES site () stock were representative of materials installed in the plant. Each one hour rated T' .rmo Lags 3301 fiat and V ribbed panel is 1/2 in. thick (nominal) x 48 in, wide x 78 in, long, with stress skin monolithically adhered to the panel on one face. Each panel was received with 350 Topcoat factory applied. The stress skin is installed adjacent to the surface of the protected commodity. Other materials supplied by TSI were 330 69 stress skin sheets 4 ft. x 7 ft,350 Topcoat (two part water based mixture),3301 trowel grade subliming compound (used with 3301 panels). All Thermo Lag

  • panels were measured, saw cut and installed onto the respective test assembly by Peak Seals raft personnel using approved CPSES drawings, procedures and specifications. Installations were inspected by CPSES-certified quality control inspectors.

Other Materials Materials used in conjunction with Thermo Lag @ components, but furnished by other vendors included: Siltemp blankets, silicone elastomer (Promatec 45B) seal material, Dow Corning 3 6548 RTV silicone foam fire stop material and Thermal Ceramic Knowool M Board (ceramic fiber damming board). These materials were all previously supplied by Promatec, Houston, Texas. Other commercial grado products used were: 1/2 in, wile x 0.020 in, thick type 304 stainless steel rolled edge banding straps with wing ocals; 16 to 18 GA stainless steel tie wire; and,0.010 in. stainless steel sheet metal, e fq

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Report No.12340-943G7h December 16,1992 Texas Utilities Electric Pag 310 TESTITEM (TRAY) The assembly consisted of a T.J. Cope brand 24 in, wide x 4 in, deep,12 GA ladder back horizontal tray tee section (Catalog No. GG 24FT 12 0SCP), and two Burndy. Husky brand 24 in, wide x 4 in, deep,12 GA ladder back vertical trays (Catalog No. SGY1-24144 H) assembled into a "U-shaped" configuration having a 102 inch horizontal dimension and a vertical dimension of 78 inches at each leg. One leg transitioned into the horizontal tee section via a 24 in, wido x 4 in deep Burndy. Husky brand ladderback 00' vertical bend fitting. The opposite leg transitioned into the horizontal tee section via a 1/4 in, thick x 7 3/4 in. A36 L shaped splico plate (CPSES site fabricated) forming a " squared" 90' angle bend. These fittings were connected using vendor supplied 11 GA splice plates and 3/8 in, diameter bolting hardware. The distance from the bottom of the tray to the top support angle measured 36 in. in length. A hole in the deck steel was provided around each vertical tray leg. The perimeter of each hole was edged with 3 in, steel channel (flanges out). The blockout was scaled with Dow Corning 3 6548 RTV silicone foam material. Internal silicono clastomer (Promatec 45B) seal material } was installed insido each tray leg at the level of the top deck. Silicon clastomer material was also used to construct a 7" deep fire stop across the complete width of the mouth of the tee. Drawings of the test item and supports are located in . Appendix A. TRAY SUPPORTS The cable tray was supported and held into position by two trapeze type hangers using 3 in. steel channels bolted together with 5/8 in, diameter x 11/2 in. A307 bolts. The channels were attached to 4 in. x 4 in. x 1/2 in, clip angles fillet welded to the 3 in, channel on each vertical side. The 4 in. x 4 in, clip angles were then attached to the 1/4 in, reinforced steel deck using 1/2 in, diameter threaded steel rods and two 2 in. thick layers of calcium silicate board (Promat Fire Protection, Inc., Promat L Board) sandwiched between the clip angles and the steel deck. 4 ELECTIUCAL CABLES All electrical cables used in this project were site specific for CPSES. An approximato 1/3 mix of Power, Instrumentation and Control cables totaling 34 cables were pulled into the tray, maintaining a single layer, except in the tee section where the cables were looped toward the mouth of the tee to produce a higher cable loading. The usable cross-sectional area of die cable tray was (3 in, deep x 24 in, wide) 72 square inches. The table below shows the cable types used in this test, the number of each cable installed, the total cross sectional area of each cable type and the percent of the total available area taken up by each type. 4 O. A Ogggo

Report No,12340 94367h December 16,1992 Texas Utilities Electric Page 11

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CROSS-CABLE NUMBER SECTIONAL  % OF'IDTAL 1

TYPE PRESFRI' AREA (In2) ARFA l W-020 4 3.016 4.19 i W-023 4 1.752 2.43 TotalPower 4.768 6.62 W-046 3 1.122 1.56 W 047 7 2.009 2.79 W 048 6 1.560 2.17

TotalContml 4.691 6.52

' W-063 3 1.281 1.78 W-071 7 1.232 1.71 TotalInstrumentation 2.513 3.49 , TOTAL FILL => 11.972 16.63 % 4 1 O The eenie ne # eneve -ere vi eea i the tr x i= i aie i ver ie manner and attached to the tray rungs with standard electrical plastic tie wraps. r ae-The excess ends of the tie wraps were cut off. Care was taken to ensure that one i power cable was centered down the middle of the tray and one cach of control and

instrumentation cables were positioned midway between the center and each tray rail. These cables were those that were instrumented with thermocouples.

TIIERMOCOUPLE PLACEMENT , i 24 gauge, Type K, Chromel Alumel electrically welded thermocouples (Special Limits of Error: il.1*C, purchased with lot traceability and calibration certifications) were attached nominally every 6 inches along one each of power, control and instrumentation cables, by placing the thermojunction in direct contact with the top surface of the cable and covering with a double wrap of glass 1 fiber reinforced electrical tape (Glass Cloth Electrical Tape, Class "B" Insulation, 1/2 in wide, 3M Corporation, item No. 27) for a minimum distance of 3-1/2 i inches. The instrumented Power cable was located at the nominal center of the tray, while the instrumented Control cable was located midway to the front tray rail and the Instrumentation cable with thermoccuples was located midway.to the rear tray rail. In order to get a realistic measurement of the temperatures at the tray rails, , similar thermocouples were positioned nominally every 12 inches along both side

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Report No.12340 943ti7h Decemler 16,1992 Texas Utilities Electric Page 12 O rails of the tray assembly, being held in position by clamping under the head of a

   #8 x 32 x 114 in, long stainless steel round head machine screw in a drilled and threaded hole at each location. Care was taken to ensure that any screw shank that extended through the tray rail and into the interior of the tray was either ground off or was a safe distance from any of the cables inside the tray.

TIIERMO LAG

  • INSTALLATION IIIGIILIGIITS Thermo Lag
  • materials were inetdled in accordance with the instructions contained in the CPSES Site Procedures referenced in Test Plan, Rev. 8. Short abstracts of the installation are included herein to clarify specific details.

Drawings of the install,d Thermo Lag

  • on the test assembly are shown in Appendix J.

Thermo Lag

  • 3301 Flat and V Ribbed Panels (1/2 in. nom. thickness)

These panels were used to construct the cable tray protective envelope (V ribbed) and to protect the support members (flat panels). Thermo Lag

  • 3301 Subliming Tmwel Grade Material This material was used to pre caulk all joints and seams between panels and built up areas where panels were scored and shaped (e.g., sweeping bends) and to provide a skim coat where external stress skin was installed.

Thermo Lag

  • 3301 V Riblai Panel Orientation Where V-ribbed panels were installed on the top and bottom of the horizontal tray run and on both the inside and the outside of the radial bend and squared bend, the V ribs were positioned perpendicular to the tray side rails. Panels installed against tray side rails were positioned with the.V ribs in three different directions: 1) on the vertict.1 tray legs, the V ribs were positioned horizontally,2) on the horizontal tray rur., the V-ribs were positioned vertically, and 3) on the radial bend the V ribs were positioned radially perpendicular to the tray rails.

Application Methods The cable tray system was covered with Thermo Lag

  • 3301 V Ribbed panels prior to covering the support members. To prevent excessive sagging on the top of the horizontal tray run, the horizontal section of the cable tray system was pre-banded using stainless steel banding material. The entire tray covered using 3301 V rib panels (refer to "Thermo Lago 3301 V-Ribbed Panel Orientation" section above) on the top, bottom and sides of the tray. In each case, the side panels were placed into compression whereby once the banding is applied and tightened, the side
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Report No.12340-94307h Decemler 10,1992 Texas Utilities Electric Paga13 D O panels were sandwiched by the top and bottom panels. All joints and seams were pre caulked with 3301 trowel grade material and secured in place using 1/2 in, wide x 0.020 in, thick 304 stainless steel banding straps. After the entire tray assembly was clad, the support members were partially covered with flat Thermo Lag

  • 3301 panel material. The single unistrut member was covered with Thermo Lag
  • 3301 flat panel the total width of the 24 in wide tray, plus an additional 9 in, beyond the side rail where the Thermo Lag
  • 3301 application terminated, the remaining unistrut was left unprotected. All joints and seams were pre caulked with Thermo Lag
  • 3301 Trowel Grade material, then secured in place using 16 18 GA stainless steel tie wire (on the inside layer of panels) and 1/2 in, wide x 0.020 in, thick Type 304 stainless steel banding straps.

Refer to Appendix J for further details. Upgrade Techniques

  • At side panels, a thin layer of Thermo Lag
  • 3301 Trowel Grade material (approximately 3/16 in. thick) was applied extending 5 in, towards the middle of the tray on the top, bottom and side exterior pane! surfaces. Then Thermo-Lag
  • 330 69 stress skin was cut and formed into a squared U shaped configuration, which was placed over the exterior Thermo Lag
  • 3301 top, O bottom, side panels and the 3/16 in. Thermo Lag
  • 3301 Trowel Grade such that when installed, each stress skin " leg" overlaid the top and bottom Thermo-Lag
  • panels by 5 in.. Along sweeping 90 bends, the 330 69 stress skin legs were wedge cut to allow the material to conform to the bend radius and a 5 in.

wide strip of stress skin was placed over the top and bottom " legs" of the stress skin. The stress skin was then stapled using 1/2 in, long Arrow or Bostitch T-50 staples at a distance of 2 in maximum and 1 in, minimum from the edge of the stress skin and 3 in. on centers. Stainless steel tie wire was then used to tie the two stress skin " legs" in place at 5 in. (minimum) to 6 in. (maximum) centers. The stress skin was installed such that the top and bottom Thermo-Lag

  • 3301 panels by were overlappad by 5 in. A skim coat of Thermo Lag
  • 3301 Trowei Grade material, approximately 1/16 in, thick was applied over the stress skin and tie wires. Following securing each butt joint with stainless steel tie wire " stitches" as described below, a circumferential wrap of 330 069 stress skin ns applied to all butt joints in a similar manner, thus allowing for a 5 in, overlap on each side of the butt joint. A skim coat of trowel grade material (1/16 in, thick) was applied over all stress skin and tie wires,
  • The inside and outside joints between Thermo-Lag
  • 330 1 panels, approximately 10 to 14 in, above the horizontal, on the radial 90 bend were
                                                                                                                       " stitched" (defined as connecting two adjoining Thermo Lag
  • 3301 panels with stainless steel tie wire through one or more field drilled holes), using five f * *09A O

04ATO

Report No.1234044367h December 16,1992 Texas Utilities Electric Pag 314 I stitches (one centered, one 51/2 in, on either side of center and the remainder 5 l 1/2 in, apart.) l 1

  • The bottom Thermo Lag
  • joint on the " squared" bend, where the vertical and horizontal panels meet, was secured in place using stainless steel tie wire i stitching at five equally spaced locations (51/2 in. 4 rt). The top joint was similarly secured.
  • A thin layer of Thermo-Lag
  • 3301 Trowel Grade material approximately 3/16 in, thick was applied to the Thermo Lag
  • panel pieces covering the side rail splice plates. Pieces of 330-069 stress skin were cut into squares and folded so that, when placed over the splice plate, a " tab" of st:ess skin would extend from both the top and the bottom, toward the center of the tray. The folded stress skin was stapled in place using 1/2 in, long Arrow or Bostich T-50 staples at a dietance of 2 in, maximum and 1 in, minimum from the edge of the stress skin and 3 in, en centers. A skim coat of Thermo-Lag 8 330-1 Trowel Grade material, approximately 1/16 in. thick was then applied over the stress skin and staples.
  • Finally, Thermo-Lag
  • 350 Topcoat was applied over areas where the Thermo-p Lag
  • 330-1 Trowel-Grade material had been applied, following the required 72 V hours of cure time.

TFSFRERJL'IE The completed test specimen was placed on the Laboratory's horizontal fire test furnace and time tiarmocouples and circuit integrity systems connected to the data acquisition system and their outputs verified. The test was conducted on November 13, 1992, by Herbert W. Stansberry 11, project manager, with the folloeng persons present: Lc 2. h able - USNRC Che nr:ett - TU Electric (Fluor Daniel Corporation) Cal baning - TU Electric (ABB Impell Corporation) Obaid Bhatty - TU Electric Melvin Quick - TU Electric (Stone & Webster Engineering) Randy Hooton - TU Electric Jack Sawyer - TU Electric (Stone & Webster Engineering) Dale Walling - TU Electric Chuck Holbrook - TU Electric Deggt y N. Priest - Omega Point Laboratories, Inc. Kerry Hitchcock - Omega Point Laboratories, Inc. Connie Humphry - Omega Point Laboratories, Inc. OA v g# g 4 Ogy9,3

Report No. 12340-94367h December 16,1992 Texas Utilities Electric Page 15 O Dingyi Huang - Omega Point Laboratories, Inc. Cleda Patton - Omega Point Laboratories, Inc. Richard Beasley - Omega Point Laboratories, Inc. Laudencio Castanon - Omega Point Laboratories, Inc. David Lynd - Alamo Crano Co. Steve Linick - Alexander Utilities, Inc. Chris Herman - Alexander Utilities, Inc. Rich Lohman - Thermal Science, Inc. a

     e furnace was fired and the ASTM E119 standard time temperature curve 4 ved for a period of 60 minutes. The pressure dif' re itial between the kvaratory surrounding the furnace and a point within the furnace level with the vertical midpoint of the exposed portion of the specimen was maintained at approximately 0.00 in, water colamn throughout the test.

The furnace was dred at 6:25 p.m. By 0:23 (min:sec) the outside surface of the test item was beginning to turn brown, and by 1:00 (min:sec) had ignited fairly uniformly across the exposed surfaces. By 1:24 (min:sec) the furnace was filled with intense smoke and heavy flaming. During the fire exposure, no visual openings into the tray interior were observed, w In the course of the firo endurance test, one problem was encountered as detailed below:

  • The data acquisition unit monitoring the sample thermoccuples suffered a 3 communication error at the very beginning of the test procedure. The k system was immediately restarted and data collection began at two

% minutes. The communication problem was investigated with the technical assistance of John Fluke Mfg. Co. The problem manifested itself in the data output buffer of the HELIOS unit. When the computer polled the RS 422 Serial Interface Port for input data, it received less input channels than the HELIOS unit was commanded to place on its output buffer. Thus the computer program would wait, in a data collection loop, for the remainder of the data. A program restart was required to break the loop. In consequent discussions with John Fluke Mfg. Co., a smaller data sampling loop was recommended, along with error trapping and correcting routines.

  • Due to the time constant (5.0 - 7.2 minutes) inherent in the thermocouples required by the test standard, the furnace operator detected an over-temperature condition (due to the combination of furnace fuel flow and burning test item) and turned the furnace fuel down. When that happened, the flaming on the surface of the Thermo Lag material slowly stopped, g causing the furnace probes to register an under-temperature condition.

( {OA p*% okago  ; l

_ _ _ _ - _ _ . _ _ ~ 4 Report No.12340-94367h December 16,1992 Texas Utilitics Electric Page 16 O Consequently, the operator increased the fuel flow to the furnace and the surface of the test item then re-ignited and filled the furnace with smoke and fiames again. The furnace temperature thus "saw-toothed" its way along the E119 heating curve until the temperature was considerably above 1,000 F, at which time the previously mentioned phenomenon ceased, and 4 the specimen burned steadily for the remainder of the fire exposure period. 4 At the end of the fire exposure period, the thermocouples were disconnected, the furnace extinguished and the specimen removed from the furnace. Circuit continuity measurements were continued throughout the fire and hose stream exposure. The test specimen was elevated to a distance of approximately 6 ft. between the fioor and the bottom of the test item and spun on a swivel at a rate of 6

                   - 8 revolutions per minute (to ensure exposure of as much of the exterior surface as possible) while being exposed to a 30 angle spray nozzle hose stream test with a minimum pressure at the nozzle of 75 psi at a distance of 5 feet, for a 5 minute duration. The minimum flow from the nozzle was 75 gpm (in accordance with Test Plan Ret. 4.1.21). The hose stream was thus positioned to attack the sides, bottom and inside vertical surfaces of the test item, with only minimal exposure to i                  the top surface.

4 No failure of any of the circuit integrity systems was noted throughout the fire and s hose stream exposures. When the test item was removed from the furnace it was still flaming, which slowly decreased as it was positioned for the hose stream test. Prior to the hose stream test, no openings or other severe damage was noticed on

!                   the specimen. The entire exposed surface of the test item was covered with a layer

. of black ash. Following the hose stream test, the Thermo Lag8 pieces remained firmly affixed and the stainless steel banding was still tightly wrapped around the assemblies. An opening was present in the tee section of the cable tray system. The panel forming the bottom portion of the protective envelope around the mouth of the tee was sagging about 8 in, creating an opening between the panel and the firestop.

Although cables were visible inside the system, there was no evidence of thermal damage in the interior of the envelope in the tee section. A fuller description of the condition of the protective envelope is presented later in this document.

The significant temperatures within the raceway system at the end of the fire exposure test are presented in the table below.

               /'

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Report No.12340-94367h December 10,1992 Texas Utilities Electric Page 17 O e MAX. TEMPERATURE AVG. TEh1PERATURE LOCATION ('F) ( F) Tray Rail TCs 353 282 W 023 (Power) Cable 274 227 W-046 (Control) Cable 276 229 W-071 (Instr.) Cable 280 2'Z7 - The average initial temperature for all thermocouples at the start of the test was 69'F, yielding an allowable temperature increase of 250'F, or 319 F actual for the average temperatures. (A 325'F increase above the 69'F initial temperature yields a maximum allowable individual temperature of 394 F, in accordance with ASTM 'E119 88.) All thermocouples in the 24 in.- tray system (on rails and on'- cables) met these criteria. Prior to the fire test, the voltage signals from each of the circuit integrity systems was measured to establish a baseline (Vi). Then, after shorting across a single 1000 resistor, the minimum voltage necessary to indicate failure (V-.toon) was measured. At the. completion of the fire and hose stream exposure tests, the y voltage was again measured (Vr). These values are displayed in the table below. Additionally, a 500 volt insulation resistance test of each instrumentation cable-(conductor to conductor and conductor to-ground) and a 1500 volt insulation resistance test of each power and control cable (conductor to conductor and - conductor to ground) was performed before (Ri ), and after (Rr) the fire and hose stream tests. -These results may be found in Appendix E: Insulation Resistance Testing Details. CABLE I Vi j V toon Vr-W-020 2.943 2.165 2.947 W-023 2.860 2.076 2.865 W-046 5.554 5.158 5.544 W-047 5.116 4.677- 5.108 W-048 4.276 3.696 4.267 W-063 5.914 5.553 5.905 W-071 4.711 4.208 4.709-All data may be found in the Appendices attached to this document. O V

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Report No.12340 94367h December 16,1992 Texas Utilities Electric Page 18 O V Post Test Examination 1 j Immediately following the hose stream test, the test item was systematically disassembled and examined for damage and general condition. A listing of those findings follows. In all cases, when describing a particular Thermo-Lag

  • 330-1

. Flat or V-Ribbed Panel , the term "pancl" will be used. LOCATION OBSERVATION Panel located on the outside, Stress skin exposed on edges (upgraded area).

vertical surface of the left 1/2 in. to 1 in, char depth on the panels.- 1/8 in.

side of the ' tray, including to 1/4 in. uncharred material against the tray the radial 90* bend. surface. Panel located on the inside, Stress skin exposed on edges (upgraded area). I vertical surface of the left 1/2 in, to 1 in, char depth on the panels.1/8 in, side of- the tray, including to-1/4 in, uncharred material against the tray the radial 90* bend, surface. Panel located on the outside, Stress skin exposed on edges (upgraded area), vertical surface of the right 1/2 in, to 1 in, char depth on the panels.1/8 in. side of the tray, including to 1/4 in.-uncharred material against the tray the radial 90* bend. surface.

Panel located on the inside, Stress skin exposed on edges-(upgraded area).

vertical surface of the right 1/2 in, to 1 in. char depth on the panels.1/8 in. side of the tray, including to 1/4 in.-uncharred material against the tray the radial 90' bend. surface. Top center panel between Stress skin exposed along- upgraded edges. supports. Char depth on the panel was 3/4 in, to 1 -1/4 in. 1/8 in. of uncharred material against the tray surface (1/4 in. over firestop in mouth of tee.) Bottom center panel between Stress skin exposed along upgraded edges. The supports, center of the panel was sagging approximately 8 in. An opening was present'along the lower edge of the mouth of the cable tray tee section. Most of char ash removed during hose stream (about 1/4 in. remaining). Small amount (1/8 in. to 1/4 in.) of uncharred material against the tray surface. p U on c  : Ogghbh

Report No.12340-94367h - December 10,1992' Texas Utilities Electric Page 19 4

O l

^ LOCATION OBSERVATION (CONTINUED) $ Panels covering the sides of Stress skin exposed along edges (upgrade area).

the tray rails. Char depths up to 1 in. Approximately 1/8 in, to i

1/4 in uncharred material against the surface of the tray rails and the inside surfaces of the rail connector cover plates. Material totally i intact under the overlapped sections of the rail j connector cover plates. Cables. The cables were visibly undamaged.- The cable

jackets were slightly stiffened in the radial bend a areas and in the tee area. The remainder of the

' cable length was still flexible. The Siltemp material had.. several dark' spots from condensate saturation. CONCLUSIONS ' O The 24 in. cable tray with tee section, clad in a nominal 1/2 in, thickness Thermo-Lag 8 3301 material with' additional upgrades presented herein, met the requirements of the TEST PLAN (essentially those of American Nuclear Insurers ! Bulletin B.7.2,11/87, Attachment B entitled: "ANI/MAERP RA Standard Fire Endurance Test Method To Qualify A Protective. Envelope For Class IEEE-Electrical Circuits," Revision I, dated November 1987), for a' fire resistance rating i- of one hour. The assembly. met the acceptance criteria contained in the TEST PLAN and the ! NRC letter dated October 29,1992, for the following parameters: 1) single point - temperature increase remained below 325 F,2) no burnthrough was evident on the assembly following the fire endurance and hose stream tests,3) visual cable inspection revealed no apparent thermal damage,4) no loss of circuit integrity occurred during the course of the fire and hose stream tests, and 5) the results of the insulation resistance tests were.well within the allowable limits. i 4 O .Of m .,-

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d Report No.12340-943G7h December 16,1992 Texas Utilities Electric APPENDICES i t i 4 i 1 ( i 1 i i. Appendix A i ! CONSTRUCTION DRAWINGS j i i i 1 1 3 t 4 ? g C p i

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Report No. 12340-94367h December 16,1992 2 Texas Utilities Electric APPENDICES l l i .' O Appendix B TEST PLAN l 1 i t 1 l G e R<A ..-

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3( 1 V TEST PLAN . Rev. 8 ONE HOUR FIRE ENDURANCE TESTS OF ARTICLES PROTECTED WITH THE THERMO. LAGS FIRE BARRIER SYSTEM 1.0 SCOPE This test plan describes the methods and guidelines to be utilized for the preparatiot of test specimens, installation of the THERMO-LAGS (hereafter referred to as "Thermo-Lag") Fire Barrier Systems, performance of fire endurance and hose stream tests, electrical cable circuit integrity, insulation resistance testing and temperature monitoring, and all applicable documentation of these tasks and the test results. 2.0 OBJECTIVE The objective of these tests is to qualify a protective generic fire barrier system for ' redundant essential cables at TU Electric's Comanche Peak Steam Electric Station. Suvessful results of this test program will provide documented evidence that the n generic fire barrier systems will satisfactorily withstand an ASTM E119 88 fire V exposure for a period of one hour, followed by a hose stream test. The circuit integrity will be monitored continuously using digital data acquisition. These test.s shall satisfy the requirements for fire testing the cable raceway fire barriers as detailed in the American Nuclear Insurers Bulletin B.7.2,11/87, Attachment B entitled: "AN1/MAERP RA Standard Fire Endurance Test Method To Qualify A Protective Envelope For Class IEEE Electrical Circuits", Revision I, dated November 1987, and the NRC Letter dated October 29,1992,(Ref.4.1.22) (attached), in the absence of other standards for these specific types of tests, standard practice shall be invoked. Variations in this test procedure from these methods, such as the hose stream test alternatives described in Section 8, will be documented in the final test report. 3.0 ACCEPTANCE CRITERIA 3.1 Temperature - Temperatures of all thermocouples will be monitored with each tray rail for cable trays averaged and outside of steel thermocouples for conduits averaged. In addition, thermocouples on one of each cable type (power, control, instrumentation) will be averaged. Acceptance criteria maximum temperatures will be 250" above the ambient initial temperature, for averages as listed above and 325* above the ambient initial temperature, for any single thermocouple. p fg A p*%

31 2 m ' C 3.2 Hose Stream Test / Barrier inspection - A hose stream test with 30* fog nozzle at 75 psi minimum pressure and 75 gpm minimum flow will be applied to the test assembly from 5'-0" away for five minutes. Following the hose stream test, a visualinspection will be conducted to document any evidence of burnthrough or opening of the barrier by the hose stream. Acceptance criteria requires that no evidence of burnthrough or openings in the barrier are identified such that the raceway or cables are visible. 3.3 Cable Visual Inspection - Providing items 3.1 and 3.2 are satisfactory, cable visual inspection is not required. 'However, if either of these criteria are not met, the barrier material will be removed and the cables will be inspected visually for damage in accordance with the criteria described in Section 8.5. Documentation of cable visual condition will support cable functionality testing in 3.4. 3.4 Insulation Resistance Testing - Providing items 3.1 and 3.2 are satisfactory, insulation resistance (IR) testing is not required. However, if either of these criteria are not met, the barrier material will be removed and IR testing shall commence within thirty (30) minutes following the hose stream test. The acceptance criteria for IR testing is described in Section 7.11.1. Following completion of IR testing, cable visual inspection (item 3.3) shall be performed. During _h the barrier visual inspection and prior to thirty minutes following the (d hose stream test, insulation resistance testing will be conducted using the formula for acceptance criteria in the NRC Letter dated October 29, 1992. Providing the results meet those value, the test will be considered satisfactory. 3.5 Cable Circuit Integrity - American Nuclear Insurer's criteria and me* bed for wble circuit monitoring for successful passage of the ASTM E119-88 Fire Endr.rence and Water Hose Stream Test as outlined in Sections 8 and 9 of this test plan.

4.0 REFERENCES

4.1 Documents jl 4.1.1 Federal RegisterNolume 45, No. 225/ Wednesday, November 19,1980 Fire Protection Program for Operating Nuclear a Power Plants 10 CFR, Part 50, Appendix R.  ; i , 4.1.2 American Nuclear Insurers Bulletin B . 7. 2. . 11/87, ' Attachment B entitled: "ANI/MAERP RA Standard Fire Endurance Test Method To Qualify A Protective Envelope j oA a o OF ,A 1 i ogggb _

32 3

    '         For Class IEEE Electrical Circultn*, Revision I, dated November 1937.

4.1.3 ASTM E119 88

  • Standard Methods of F ' rests of Building Construction and Materials."

4.1.4 Thermal Science, Inc.'s Technical Note 20G84, Revision V "THERMO LAG 330 Fire Barrier System, Installation Procedures Manual, Power Generating Plant Application," including TSI letters of clarification thereto. 4.1.5 Specification CPES M 2032, Rev. O,

  • Procurement and Installaticn of Fire Barrier and Fireproofing Materials."

4.1.6 M21701,"Thermo Lag Typical Details" ' a. Sheet 01, Rev. CP 1

b. Sheet 02, Rev. CP 1
c. Sheet 03, Rev. CP 1
d. Sheet 03A, Rev. CP 1
c. Sheet 03B, Rev. CP 1
f. Sheet 04, Rev. CP 1
g. Sheet 04A, Rev. CP 1 4

(' h. Sheet 05, Rev. CP 1

  \            i. Sheet 05A, Rev. CP-1
j. Sheet 06, Rev. CP 1
k. Sheet 07, Rev. CP 1
1. Sheet 08, Rev. CP 1
m. Sheet 09, Rev. CP 1
n. Sheet 10, Rev. CP 1
o. Sheet 11, Rev. CP 1
p. Sheet 12, Rev. CP-1
q. Sheet 13, Rev. CP 1-
r. Sheet 14, Rev. CP 1

( s. Sheet 15, Rev. CP-1 4.1.7 Construction / Quality Procedure CQP-CV 107, Rev. O,

                " Application of Fire Barrier and Fireproofing Matecials."

4.1.8 Specification CPES M 1061, Rev. O, " Fire Rated, Radiatien Shielding and Pressure Penetration Seals." 4.1.9 M2-1901, " Penetration Seals Typical Details"

a. Sheet 01, Rev. CP 1
b. Sheet 02, Rev. CP 1 p c. Sheet 03, Rev. CP 1 oA no
                                  *o ns,o

3 4 O Q d. Sheet 04, Rev. CP 1 4.1.10 Construction / Quality Procedure CQP MS-125, Rev. 1,

                    " Penetration Seals and Maintenance of Separation Gaps" 4.1.11  Installation Procedure IP 0044.CP, Rev. E, " Installation and Repair of 3 6548 Silicone RTV Foam Penetration Seals."

4.1.12 Quality / Construction Procedure QCP 0044.CP, Rev. F,

                    " Installation Inspection of 3 6548 Silicone RTV Foam Penetration Seals."

4.1.13 Installation Procedure IP-0045.CP, Rev. D, " Installation and Repair of 45B Elactomer Penetration Seals." 4.1.14 Quality / Construction Procedure QCP 0045.CP, Rev. D,

  • Installation Inspection of 45B Penetration Seals."

4.1.15 Quality / Construction Procedure QCP 0049.CP, Rev. C,

                    " Documentation of Penetration Seal Inspection."

4.1.16 Quality / Construction Procedure QCP-0067.CP, Rev. D,

                    " Density Verification."

4.1.17 Specification CPES E 2004, Rev.15. " Electrical Installation." 4.1.18 Construction / Quality Procedure CQP EL 222, Rev. 1,

                    " Installation and Fabrication of Conduit Raceway Systems."

4.1.19 Construction / Quality Procedure CQP EL-225, Rev. 2, " Cable Tray and Supports." 4.1.20 Prerequisite Test Procedure XCP EE-01, Rev.11,"Megger/HI Pot Testing." 4.1.21 IEEE Standard 634 (78)

  • Standard Cable Penetration Fire Stop Qualification Test."

4.1.22 NRC Letter to TU Electric dated October 29,1992. 5.0 RESPONSIBILITIES 5.1 Texas Utilities Electric (TU Electric) and Associated Contractor Organizations (3

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i-T 34 i i 5 1 4 5.1.1 Establish the criteria, guidelines, drawings (draft unlity), l recommendations,_ etc., to gov 9rn the installation of the test l items. Supply the test item pieces, including all hardware,

electrical cables, conduit, tray systems, etc. l

\ l 5.1.2 Estab'.ish the criteria, guidelines, drawings (draft quality), j recommendations, etc., to govern the installation of the fire l penetration seal systems as indicated on applicable drawings  ; (Ref. 4.1.8 through 4.1.16). 't 5.1.3 Establish the criteria, guidelines, drawings (final, report. I quality if needed), recommendations, etc., to govern the j installation of the Thermo Lag Fire Barrier System Materials

- to the test articles (Ref. 4.1.5 through 4.1.7).

1 [ 5.1.4 Provide the specific Thermo Lag and penetration seal ! installation procedures and work package documentation (Ref. I j 4.1.7 and 4.1.15). 1 7 ! 5.1.5 Provide materials representative of existing or future site ' installations. ] ! 5.1.6 Provide the Thermo Lag Fire Barrier System and penetration

                                                                                                  - seal materials and installation tools and equipment.

! 5.1.7- Provide scheduling:of personnel, equipment:and material I necessary to perform the installation and QC documentation of , i the fire barrier system materials utilizing the appropriate j installation procedures. , ! - 5.1.8 Coordinate all phases of the fire test preparation'with the ! testing organization including approval'of variations from the - i

- - standard American Nuclear Insurers Test Method.-

$[ 5.1.9 Apply the_ fire barrier system and penetration seals to the test

articles.  ;

L - - - J i 5.1.10 Supply- QC a'nd construction; personnel to -witness - and document assembly and test article ~ raceway configurations (Ref. 4.1.8 and 4.1.19).- 1- - 5.1.11 Perform as a liaison with the testing organization and provide

- the testing organization:with all applicable TU Electric-Documents as identified in Section 4.1.
                                                                                                                                                                                                                                                                                       +

i -5.1.12 Provide all.spplicable quality control documentation for the-F fire barrier system materials, cables, and installation of the-  ; 5 < ~ l~<- ~

                                                                                                                                  . [\         _

l . 4 - 2 4 Osygg P 9 yps-s yy ha m its e m-g + y= w-r,up gp<=.ww=.-r--g..eemy9-i--y--em- --bsp-=.M-+-is+p--g.%. ey 7swe,,w-, - p',mr.egy-,,,.%-p -e web y > > re. qg-aya-_ee-4=,y9-iyw ei----g,w+y m ed .4es yy ' g w< - hywwi e w-. t-wg wo-g-

35 6 i O rire darrier exsie-article. a re etratie e i- teri i <e e ca test 5.1.13 Provide equipment for performance of insulation resistance testing in accordance with TU Electric specifications and procedures (Ref. 4.1.17 and 4.1.20) as described in Section 7.11. 5.2 Omega Point Laboratories, Inc. (Laboratory) 5.2.1 Prepare the test furnace, deck and slab assemblics and provide all required test instrumentation in accordance with Appendix B Quality Assurance and Quality Control Programs and other applicable procedures. 5.2.2 Provide thermocouple calibration and instrumentation, storage temperature recorder, surface temperature probe and relative humidity instrumentataon. 5.2.3 Assemble, install and document the installation of all trays, conduits, cables, etc. to be supplied by TU Electric. Provide computer generated drawings of tray and conduit systems which clearly indicate dimensions, thermocouple locations, circuit integrity cable locations, etc. 5.2.4 Observe and document the installation of the Thermo Lag Fire Barrier System Materials and penetration seals to the test articles, and attendant instrumentation on each test article. 5.2.5 Conduct the fire endurance and water hose stream tests, and also provide electrical cable circuitry integrity and continuity monitoring throughout the specified test time period.

5.2.6 Inspect and document the physical condition of all cables and Thermo Lag fire barrier system for each test article following completion of water hose stream tests (where applicable).

5.2.7 Document the test parameters and provide a formal detailed written report of the test program and test results. 5.2.8 Provide VHS video and 35mm photographic coverage of the test project. 5.2.9 Provide insulation resistance testing of all circuits prior to and following fire endurance test as described in Section 7.11.- O p~s (/ .

r 3( 7  ; O 5.3 t a h e rate rr o u niitr ^ s r ce'o aitirce trei 5.3.1 Verify and document the quality control documentation of the fire barrier system materials used in the test program. 5.3.2 Perform and document inspections of the fire barrier system materials at various points during the installation process. 5.3.3 Verify and document that TU Electric's installation procedures are utilized in the installation of the fire barrier system and penetration seal materials. 5.3.4 Inspect and document the construction and instrumentation of the test articles. 5.3.5 Provide written calibration documentation of all thermocouples, measurement devices and daia hcquisition systems used in this test program. ~ 6.0 SPECIAL PRECAUTIONS 6.1 Precautions For Installation Of The Fire Barrier System Q (> Materials < 6.1.1 Observe specific precautions recommended by Thermal Science, Inc. and other's material safety data sheets. 6.2. Precautions For Conducting The Fire Endurance Test 6.2.1 Proper safety precautions shall be exercised to preclude personnel from direct exposure to the flame environment, hot objects, hazardous gases, and all other related hazards. 7.0 PREREQUISITES 7.1 General Test Configuration Requirements The cable tray, conduit, cables and cable loading used in this test program shall be representative of those configurations used, and shall be specified and designed by TU Electric. 7.2 Traceability Requirements ) To insure that the materials used in this test are representative of , those in actual use at Comanche Peak Steam Electric Station (CPSES), p> l O f, ,eq A Oggyo@ . r rupW fr -- w- y -w-

37 8 O ti nect er trece diiitx shall be applied. reaeirea tv ine 'eter terv o^ rrect => The cables used in this test program shall be traceable to the respective cable manufacturer and shall be supplied by TU Electric with documentation of traceability. All thermocouples used in this test program shall be traceable to the respective thermocouple manufacturer, with calibration certification. 7.3 Dimensioned Drawings All test articles shall conform to the rough draft dimensioned drawings provided by TU Electric during assembly of the test articles. Final, , dimensioned drawings will be prepared by the Laboratory, 7.4 Test Configuration 7.4.1 6 m ty % The test urticles shall be sufliciently secured to the test deck by Laboratory personnel and scaled by TU Electric personnel,in accordance with instructions and drawings. 7.4.2 Cable Tray Test Articles Ten (10) configurations (i.e. " Schemes") of steel ladder back cable trays supplied by TU Electric will be tested,

a. A 36" wide x 4" deep "U" shape configuration with horizontal tee assembly and protruding member (Scheme 1),
b. A 12" wide x 4" deep "U" shape (Scheme 3).
c. A 36" wide x 4" deep straight vertical configuration (Scheme 4).
d. A 30" wide x 4" deep "U" shape configuration with horizontal tee assembly and protruding member (Scheme 5).
e. A 24" wide x 4" deep "U" shape configuration with horizontal tee assembly (Scheme 6).
f. A 30" wide x 4" deep "U" shape (Scheme 8),
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3E 9 O c. ^ 30 wide 4 deen u sa ge <scneme 121>.

h. A 24" wide x 4" deep "U" shape configuration with horizontal tee assembly (Scheme 12 2).
i. A 12" wide x 4" deep "U" shape (Scheme 131).
j. A 30" wide x 4" deep "U" shape configuration with horizontal tee assembly (Schema 141) 7.4.3 Conduit Test Articles Seven (7) configurations (i.e. " Schemes") of rigid steel conduits supplied by TU Electric will be tested,
a. A "U" shape conduit configuration consisting of three (3) individual rigid steel conduits; 3/4" diameter,1" diameter and 5" diameter, mounted to a central 24" x 18" x 8" junction box. This configuration will also contain three (3) protruding members (Scheme 2).
b. A "U" shape conduit configuration consisting of five (5) individual conduits; two 3/4" diameter, one 1-1/2" diameter, one 2" diameter and one 3" d'ameter. Each O conduit will have two (2) lateral bends (Scheme 7).
c. A "U" shape conduit configuration consisting of three (3) individual rigid steel conduits; 3/4" diameter,3" diameter and 5" diameter. Each conduit will have one (1) lateral bend and one (1) radial bend (Scheme 91).
d. A "U" shape conduit configuration consisting of three (3) individual rigid steel conduits; 3/4" diameter,3" diameter and 5" diameter. Each conduit will have one (1) lateral bend and one (1) radial bend (Scheme 9 2).
e. A "U" shape conduit configuration consisting of three (3) individual rigid steel conduits; 3/4" diameter,1-1/2" diameter and 2" diameter. Each conduit will have two (2) lateral bends (Scheme 9 3).
f. A "U" shape conduit configuration consisting of two (2) individual rigid steel conduits, both 3" diameter, mounted to one (1) horizontal 18" x 12" x 6" junction box and one (1) vertical 18" x 12" x 6" junction box. Each conduit will have two (2) lateral bends (Scheme 10-1).

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39 l 10

g. A "U" shape conduit configuration consisting of two (2) individual rigid steel conduits, both 3" diameter, mounted to one (1) horizontal 18" x 12" x 6" junction box and one (1) vertical 18" x 12" x 6" junction box. Each conduit will have two (2) lateral bends (Scheme 10-2).

7.4.4 Air Drop Test Articles One (1) configuration (i.e.

  • Scheme") of steel ladder back cable tray which tr ansitions into four (4) rigid steel conduits supplied by TU Electric will be tested.
a. A "U" shape configuration consisting of a 24" wide x 4" deep cable tray, with 90' sweeping bend, which transitions into three (3) individual rigid steel conduits; 1" diameter, 2" diameter and 3" diameter, through individual
  • air drop 3" and one
  • air drop" of cabling which exits the top of the 24" wide x 4" deep cable tray and enters a vertical 5" diameter rigid steel conduit, widch extends through the test deck (Scheme 11-1).

7.5 Cable Loading Requirements O Cable loading requirements

  • shall be as specified by TU Electric, and V will approximately consist of the following percentage rnix:

CABLE TRAYS AND 1 1/2"- 5" DIAMETER CONDUIT 331/3% 600 volt Power Cables 331/3% 600 volt Instrumentation Cables 331/3% 600 volt Control Cables 3/4"- 1" DIAMETER CONDUIT Either 100% Control or Instrumentation Cable

  • Actual tray and conduit full densities and cable diameters will be documented and included in the final test report.

7.6 Cable Installation An itemized listing of cable types and quantities including density fill to be installed in the test articles will be prepared by the Laboratery and included in the final report. Cable location within the test articles shall he documented and included with data to be evaluated by the testing laboratory.

                                           %)

40 11 7.7 Thermocouple Installation All thermocouales used in this test program shall be provided and installed by the Laboratery, with QC surveillance by Laboratory personnel. The thermocouple wires shall be calibrated (by Lot No.) prior to installation and/or use, and applicable quality control documentation for record purposes generated. All thermocouples will consist of 24 GA, type K, Chromel Alumel (Special Limits of Error: it.1*C) electrically welded thermojunctions. Calibration will consist of manufacturer supplied (and audited) certifications of calibrations at five temperatures of thermocouples taken from both ends of each purchased lot number. All thermocouples shall be located on and within each test article in accordance with the following TU Electric requirements: l NOTE: Thermocouple locations which differ from the following l criteria shall be documented in the final test report.  ;

1) All cable trays shall be instrumented with thermocouples located on the outside, longitudinal centerline of each cable tray rail at 12 inch intervals along the portions of the cable tray that are below the deck and protected by the fire protective envelope. Each thermocouple shall q be attached to the tray rail by the use of a small metal screw. For each V tray rail, the maximum and average temperatures will be documented.
2) All conduits shall be instrumented with thermocouples located on the outside, top surface of the conduit at 12 inch intervals along the portions of the conduit that are below the deck and protected by the fire protective envelope. Each thermocouple shall be attached to the conduit by a double wrap of glass fiber reinforced electrical tape or by electrical welding to the conduit steel. For each conduit, the maximum and average temperatu'.es will be documented.
3) Electrical junction box (Scheme 1) shall be instrumented with a minimum of one thermocouple per 5 square feet of exterior surface, located on the inside surface of the item and attached using a small sheet metal screw or welded directly to the steel surface. A thermocouple shall be placed within one (1) inch of the penetration seal on the inside surface of the junction box.
4) Electrical jumtion boxes (Schemes 101 and 10 2) shall be instrumented with a minimum of one (1) thermocouple centered on the inside surface of each box face and one (1) thermocouple within l' of where each conduit enters the junction box. Thermocouples shall be attached using a small sheet ,netal screw or welded directly to the steel surface. These thermocouples will be grouped with attached conduit D) OA#

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41 12 O thermeceenies and m documented. imnm na ver se iemaer i res -iii se  :

5) Electrical cables (Schemes 1 through 8) shall be randomly selected in each assembly (one of each cable type: Power, Instrumentation and Control) and instrumented with thermocouples located at each 12 inch I

interval along each cable's length inside the exposed area of the test item. If insufficient cables are contained within a test item to I instrument to that degree, a minimum of one cable, of the smallest size in that system, will be instrumented. Systems which contain more 4 than a single layer of cables will have the instrumented cables positioned at the top surface of the cable bundle, Each thermocouple shall be attached to its appropriate cable by placing the thermojunction in direct contact with the outer insulation of the cable for a minimum of 31/2" and covering with a double wrap of glass-fiber reinforced electrical tape, unless otherwise documented in the final test report.

6) Electrical cables (Schemes 91 through 141) shall be randomly selected in each assembly (one of each cable type: Power, Instrumentation and Control) and instrumented with thermocouples located at each 6 inch interval along each cable's length inside the O exposed area of the test item. If insufficient cables are contained V) within a test item to instrument to that degree, a minimum of one cable, of the smallest size in that system, will be instrumented.

Each thermocouple shall be attached to its appropriate cable by placing the thermojunction in direct contact with the outer insulation of the cable for a minimum of 31/2" and covering with a double wrap of glass-fiber reinforced electrical tape, un%ss otherwise documented in the i final test report.

7) Instrumented cables in cable tray Schemes 1, 3, 4 and 5 shall be positioned such that one passes down the longitudinal centerline and the other two shall be positioned between the center cable and the tray rails on each side, as documented in the final test report.
8) Instrumented cables in cable tray in Schemes 6,8,11 1,121,12-2,13-1 and 141 shall be positioned such that one passes down the longitudinal centerline and the other two shall be positioned immediately next to the tray rails on each side, as documented in the final test report. Each line of thermocouples on a cable will be grouped and maximum and average temperatures will be documented.

V oA> n q* N d bho

4E 13

9) Cables in conduits will have one instrumented cable in the center of the bundle, one cable half way to the outside of the bundle and one instrumented cable on the outside of the bundle.
10) For air drop tests, cable Wndles will be instrumented as described in paragraph 9 above, unless otherwise documented in the final test report, and those cables will have thermocouples every six inches through the remainder of the test assembly. Where these cables are located in the cable trays, one of the instrumented cables will be positioned (as described in paragraph 8 above)immediately nort te each tray rail and one along the longitudinal centerline of the tray All remaining thermocoupled cables will be distributed as evenly as possible. Each line of thermocouples on a cable will be grouped and maximum and average temperatures will be documented.

7.8 Installation of the Fire Barrier system to the Test Articles Thermo Lag Fire Barrier System materials shall be installed by TU Electric in accordance with applicable specifications, design drawings and procedures (Ref. 4.1.5,4.1,6 and 4.1.7) such that the test articles are representative of CPSES plant installations except those test articles intended to qualify upgraN TIIERMO LAG installation configurations. Details of the Ther to Lag configurations including fasteners, orientation of structural ribs, etc., shall be documented in O the final test report. 7.9 Fire Seal Installation Upon completion of the fabrication and installation of the fire barrier systems to the test articles (or grior to, depending upon the situation), > all openings in the test articles shall be sealed by TU. Electric in accordance with applicable specifications, design drawings and procedures (Ref. 4.1.8 through 4.1.16). All openings in the test deck and slab assemblies not scaled by TU Electric shall be scaled by the laboratory. Failure of the fire seal shall not necessarily constitute a failure of the protective envelope. The type of fire seal used shall be at the discretion of TU Electric. 7.10 Circuit Integrity Monitoring All cables shall be energized to moniter circuit integrity (as required to check for a circuit failure)in accordance with Reference 4.1.2. Circuit failure is defined as circuit to circuit (conducter to conductor short); open circuit (conductor broken); and, circuit to ground (short circuits, conductors to

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43 14 ground). The cables shall be instrumented for each of the three parameters in accord with the following:

  • All cables of a single type shall be connected in'a a single series circuit, which will allow any circuit failure to be detectod. Cable failures will be identifiable as having been Power, Control or la strumentation cable.
  • Cable circuit integrity will be done by energiuing each circuit with low 1 voltage (5 12 VDC). The data acquisition system will monitor the voltage l across the system and will register any drop in voltage. i
'          NOTE: Circuit integrity with low voltage is based on personal safety            !

concerns and is consistent with standard test practice. 1 The purpose of the circuit integrity measurement is to enable the detection of the occurrence of a short between any two conductors or ground (the tray or conduit steel) or an open circuit. Since the failure of any conductor within the system would result in a failure of the protective envelo pe,it is not important to be able to determine cractly which conductor failed, but merely that it did fail. Consequently, all conductors of each type will be connected together in a single series circuit, with a 1000 resistor between each end. Finally, a 1000n resistor will be installed between this circuit and a 12 volt DC power supply (wet cell battery) to act as a load resistor for the data acquisition system, and C a 1000 resistor will be connected between the end of the circuit and system

  \  ground.

The resultant circuit allows the measurement of a steady state voltage drop across the entire circuit, which will drop accordingly as any combination of the 1000 resistors are removed from the circuit by shorting of any conductors. With the total resistance of the circuit being 20000, and the data acquisition system measuring across 10000 of the 20000, the minimum voltage drop due to a loss of one of the 1000 resistors would be approximately 0.316 volts, a level easily detected. An open anywhere in the circuit would cause the voltage to drop to zero. A typical circuit integrity monitoring design (one which would be used with a limited number of cables, which would be all connected into a single circuit)is shown below: i J O J .A *o, of. 14 i' w

i 44 15 l i I + -

                                                                                                                                                                                  ]g

^ ' 12 VDC Iw Sup W Acquisition l f 10000 System

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                                                                                                                      ........_..P.h_ys.i_ca_lly        ._ . .. o.n..to. p._o.f_the._te..st.d..eck I                                                   color a black                       _

4 1000 4 color = red color = White i  ! ! 1000 j color = blue i . l 1000 Color = gTeen _ 1000 i 1 l .ch d. sround t._. ..._._._. ... ._._._........._._._..._. ._._._._._._._...

                                                                      #                                                               - "DURING FIRETEST' .

i

                                                  /'                                                                                     CIRCUIT IN'IEGRITY CONFIGURATION (Schemes 9 throurb 14) 4                                                              e                                                       " Extension" Cable from top of deck

[ to concrete Door for convenience and speed (unused in this configuration) 4 I i The monitored cables shall be scanned at least once each minute. Monitored . cables shall be energized until the houe stream test is completed, i l NOTE: All conduit and :able trays shall be separately grounded by connection of a , 1/0 copper ground to the Laboratory's electrical chassis ground. Preceding and

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             , _ _ , . _ , _ ,                _         - , , , _ . . . . , _ . . , . . . . _ , , . _ . . . _ . _ _ - . . , . . _ , _ _ . - - - _ , . . - ,                                   - _ . . _ _ . ,               _ . . - - - . ~ . .

i 4f i i 16 i r-jlewing the fire and hose stream tests, the cables will be tested for Insulation i Resistance, with the circulta configured as follows: i j + -

                                                                                                                                                                                            - g
                                                                                                                                                                                                                ~

12 VDC

 ;                                                                                                                                                              IW Sup                                  d-To Data 8"8                               Acquisition f10000                                                                                                                 System i

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                                                                            /                                                      " PRE AND POST FIRE TEST'
                                                            /'                                                                      INSU1ATION RESITTANCE CONFIGURATION (Schemea 9 throuch 14) e                                                " Extension" Cable from top of deck to concrete floor for convenience and speed (for use byinsulation
resistance testing connections) i The Insulation Resistance Test will be performed prior to the fire exposure l

test in accordance with 7,11.1 and the circuit configuration will then be i -. ona o a

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4G 17 O y changed to that necessary for following Circuit Integrity during the fire and hose stream tests. Following the hose stream test the circuit configuration will be returned to that required for the Insulation Resistance Test in accordance with 7.11.1. The insulation resistance test will begin within 30 minutes of completion of the hose stream test. 7.11 Preburn Inspection 7.11.1 The Laboratory shall perform insulation resistance testing of all circuits with a 500 v megohmmeter for instrumentation and 1500 y megohmmeter for power and control cables to establish  ; reasonable assurance that wiring insulation was not damaged i prior to or during installation. This will determine the insulation resistance from all conductor to conductor combinations, and each conductor to ground. Details of this i testing will be discussed in each test report and documented on l

  • Insulation Resistance Testing Data Sheets." The acceptance criteria for each "meggered" cable is based on the following formula:

s (IMO kV + 1)

  • 1000 (ft)

IR Acceptance Value (MG) h Length (ft) O O 7.11.2 Prior to the commencement of the fire endurance test, a thorough check of each test assembly and associated equipment (including data recording equipment) shall be performed and documented by the testing laboratcry. 7.11.3 TU Electdc shall inspect the Thermo-Lag Fire Barrier System for surface defects, etc. prior to test. 7.11.4 Written approval of the construction, assembly, installation and instrumentation will be supplied by TU Electric and the Laboratory prior to performance of each fire exposure test (a sign off sheet for this purpose will be supplied by the Laboratory). 7.11.5 Fire endurance testing of assemblics will not commence until Thermo Lag Fire Barrier Materials attain a moisture meter reading that does not exceed 20% moisture content when using a meter with a scale of 0-100 (with 100 being 20% actual moisture content) such as a Delmhorst Model DP or equivalent.- 8.0 PROCEDURE o^a, o

                                      %/

4 18 0 8.1 Fire Endurance Test 8.1.1. The protected test article shall be exposed to the standard time / temperature curve found in ASTM E119 (88) for one hour. 8.1.2 The testing organization shall adapt their testing procedures to assure the fire test complies with the requirements established in all referenced portions of referenced standards. Any changes, revisions, or deviations required to comply with this requirement shall be documented and properly justified and included as a part of the final test report. 8.2 Insulation Resistance Test 8.2.1 The insulation resistance test shall be conducted in accordance with Section 7.11.1 prior to the fire test and following the hose stream test. 8.3 Water Hose Stream Test 8.3.1 For Schemes 1 through 5, immediately following the fire O endurance test, accessible surfaces of the protected test article shall be subjected to the American Nuclear Insurer's preferred water hose stream test, as specified. The water hose stream shall be applied for a minimum of two and one half (21/2) minutes. Proper safety precautions shall be exercised. Only those personnel required to perform the hose stream test shall be allowed in the immediate area, and only then with appropriate breathing apparati. 8.3.2 For Scheme 7, no hose stream test will be conducted to facilitate post fire test inspection of the test articles. Instead, a nondestructive quench of the articles will be utilized with a garden hose and a gentle spray. 8.3.3 For all remaining schemes, the hose stream test will be applied using a 30' angle spray nozzle with a minimum pressure at the nozzle of 75 psi at a distance of 5 feet, for a 5 minute duration. The minimum flow from the nozzle shall be 75 gpm (in accordance with Ref. 4.1.21.) 8.4 Protective Envelope Inspection oA* __.____J

48 19 O 8.4.1 Feiiewine the water nese stream Test a visuai insvectien wiii be conducted of the outer surface of the protective envelope including all material and seams. The condition of the envelope will be documented, including any locations where there is evidence of burn through or opening of the barrier, on a " Barrier Inspection Data Sheet." 8.5 Cable Inspection 8.5.1 Following the Protective Envelope Inspection and Post Fire Insulation Resistance Test, visual inspection of all cables for each test article shall be performed. The physical condition of all cables shall be detailed on " Cable Inspection Data Sheets"in the final test report and suitably photographed. The criteria utilized for visual inspection of cables shall include but is not necessarily limited to the following: a) jacket swelling / blistering, splitting / cracking, discoloration or melting b) shield exposed c) conductor insulation exposed, degraded or discolored d) bare copper conductor exposed e) jacket hardening 9.0 DATA SYSTEMS 9.1 During the fire exposure period, the thermocouples will be scanned at one minute intervals or less. Data storage for reporting purposes will be at one minute intervals, although the furnace thermocouples will be scanned every 15 seconds, to allow close control of the furnace. A printer output and scanning of all other thermocouple data will also be done at intervals of one minute or less, but will not be included in the test reyrt (however, this record will be filed in the QC document file at the La'aoratory). 9.2 Monitored cables shall be energized during the water hose stream test or nondestructive quench as applicable. 10.0 FIRE TEST REPORT 10.1 The Laboratory will submit a report on the results of the test and thermocouple data. 10.2 The Laboratory will assemble the final test report, containing the collected data and required quality control documentation. O n .A O- _...--i.._......-i.i_..i-i -- iiiiiiii, , iii i a

J AD 20 0 10.3 The test report shall be prepsred in sufficient detail te summarize the j total testing activity. The report shallinclude as a minimum: a) Date of the test b) Location of the test . c) Description of the test furnace and test articles d) Calibration documentation of all thermocouples e) Qualification and certification for test personnel f) Test procedures used g) Acceptance criteria h) Provide quality control records for: 1

  • Test article construction Qualification and certification for installation and ,

inspection personnel t

  • Identification and installation of fire barrier material
  • Thermocouple locations
  • Cables, size, type, and location
  • Actual tray and conduit fill densities i) Computer printout and graphic results of the fire endurance test j) All raw data including circuit integrity monitoring k) 35mm and VHS video photographic coverage of the test project Provide a chronological log (Event Log) of all activities from O 1) m)

receipt of materials through final test report Insulation resistance test methodology aed documentation n) Post test protective anvelope and cable inspection records and results i . Of s ., 04ATO

i Report No.12340 94307h December 10,1992 U Texas Utilities Electric APPENDICES 1 i i 1 i I J i i i I i l i i a 4 Appendix C i

THERMOCOUPLE LOCATIONS I

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APERTUItE CARD

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Also Avallable On Aperture Card TC #92 TC #91

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R OMEGA POINT LABORATORIES, INC. Project No. 12340 94367h R .

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[\ TC #90 TEXAS UTILITES ELECTRIC Fig. 9 Front Tray Rail- 24' Cable Tray Thermocouple Locations 8302160278 - ~ ~ ~

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m. ~m ge WQ, gy  ;-;3w@l Project No.12340 94367h OdAa.e:::gh @. A s~' m4.

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ii., 5 THERMOCOUPLE PLACEMENT LOG - PROJECT NO. 94367 NL This Log is to be u:ed to document the precise location of the thermocouplos located on each test item. The assigned project number for each cf the test assemblics are.

        .acheme #9-1: 94367A                     Scheme #12-2: 9436711                              Project #: 94367h             ~

Scheme #9 2: 94367B Scheme #121: 943671 Scheme #101: 94367C Scheme #D.3: 94367J Scheme #: 12 2 Scheme #10-2: 94367D Schemo #10 3: 94367K Scheme #111: 94367E Scheme #131: 943671, Item:,fgyter Cable Scheme #112: 94367F Scheme #141: 04367h1 Scheme #113: 943670 [C/#6 W-020 TC Number Description of exact physical location F1 Center of cable loop in tee section,2" from firestop. P2 At bottom ofloop,in center of tee section. P3 6" from the tray center, toward the wide radius 90 cibow. _ P4 12" from the tray center, toward the wide radius 90' cibow. P5 18" from the tray center, toward the wide radius 90* elbow. P6 24" from the tray center, toward the wide radius 90* elbow.

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P7 30" from the tray center, toward the wide radius 90 eTbow. P8 36" from the tray center, toward the wide radius 90' elbow. P9 42" from the tray center, toward the wide radina 90' elbow. P10 48" from the tray conter, toward the wide radius 90 elbow. Pil 54" from the tray center, toward the wide radius 90 elbow. P12 60" from the tray center, toward the wide radiun 90 elbow. O P13 66" from the tray center, towardlie wide radius 90' elbow. 72" from the tray center, toward the wide radius 90 cibow. P14 P15 78" from the tray center, toward the wide radius 90 elbow.

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P16 6" from the tray center, toward the zero radius 90 elbow. P17 12" from the tray center, toward the zero radius 90 elbow. P18 18" from the tray center, toward the zero radius 90* elbow. P19 24" from the tray center, toward the zero radius 90 elbow. P20 30" from the tray ce_nter, toward the zero radius 90 elbow. P21 36" from the tray _ center, toward the zero radius 90' cibow. P22 42" from the tray center, toward the zero radius 90 elbow. P23 48" from the tray center, toward the zero radius 90 elbow. P24 54" from the tray center, toward the zero radius 90a cibow. P25 60" from the tray center, toward the zero radius 90* elbow. P26 66" from the tray center, toward the zero radius 90' elbow. P27 72" from the tray center, toward the zero radius 90 cibow. l j i l

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l fdGlE TCs shall be numbered sequentially from 1 upwards for each deck assembly Prefixes shall be added as follows: P l (power cable), C (control cable), I(instrumentation cable) and E (engineering TC), ior !astance P1, Ea5 C40, etc. PLEASE USE THE,BACK OF THIS SHEET FOR DRAWINGS, IF NECESSARY

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l THERMOCOUPLE PLACEMENT LOG - PROJECT NO. 94367 Nol t:; This Log is to be us ed to document the precise location of the thermocouples located on each test item. The assigned project number for each of the test assembhes are: _ cheme #91: 94367A Scheme #12-2: 943671I Project #: 94367h Scheme #9 2: 94367B Scheme #12-1: 94367I Scheme #10-1: 94367C Scheme #9 3: 94367J Scheme #: 12-2 - Scheme #10 2: 94367D Scheme #10-3: 04361K Scheme #111: 94367E Scheme #13-1: 94367L ltem: Control Cable Scheme #112: 94367F Scheme #141: 94367M 5 Scheme #11-3: 943670 7C/#12 W 047 TC Number Description of exact physical location C28 Center of cable loop in tee section, 2" from firestop. C29 At bottom ofloop,in center of tee section. C30 6" from the tray center, toward the wide radius 90 elbow. C31 12" from the tray center, toward the wide radius 90 elbow. C32 18" from the tray conter, toward the wide radius 90 elbow. C33 24" from the tray center, toward the wide radius 90 elbow. C34 30" from the tray center, toward the wide radius 90 elbow. C35 36" from the tray center, toward the wide radius 90' elbew. C36 42" from the tray center, toward the wide radius 90 elbow. C37 48" from the tray center, toward the wide radius 90 elbow. C38 _ 54" from the tray center, toward the wide radius 90 elbow. C39 60' from the tray c ater, toward the wide radius 90 elbow. I I C40 66" from the tray conter, toward the wide radius 90 elbow. C 41 72" from the tray center, toward the wide radius 90 elbow. C42 78" from the tray center, toward the wide radius 90 elbow. C43 6" from the tray center, toward the zero radius 90 elbow. C44 12" from the tray center, to vard the zero radius 90 elbow. C45 18" from the tray center, toward the zero radius 90 elbow. C 46 24" from the tray center, toward the zero radius 90 elbow. C47 30" from the tray center, toward the zero radius 90 elbow. C48 36" from the tray center, toward the zero radius 90 elbow. C49 42" from the tray center, toward the zero radius 90 elbow. C50 48" from the tray center, toward the zero radius 90 elbow. C51 54" from the tray center, toward the zero radius 90 elbow. C52 60" from Se tray center, toward the zero radius 90 elbow. C53 66" from tne tray center, toward the zero radius 90 elbow. C54 72" from the tray center, toward the zero radius 90 elbow. 4 i OTE: TCs shall be numbered sequentially from 1 upwards for each deck assembly. Prefixes shall be added as follows: E (power cable), C (control cable), I (instrumentation cable) and E (engineering TC), for instance P1, E35, C46, etc. PLEASE USE THE EACK OF THIS SHEET FOR DRAWINGS, IF NECESSARY

l THERMOCOUPLE PLACEMENT LOG - PROJECT NO. 94367 NO.E This Log is to be used to document the precise location of the thermocouples located on each test item. The assigned project umber for each of the test assemblies are: cheme #9-1: 94367A Scheme #12-2: 9436711 Project #:_R1367h Scheme #9-2: 94367B Scheme #121: 94367I Scheme #10-1: 94367C Scheme #9-3: 94367J Scheme #: 12-2

Schemo #10-2
94367D Schema #10-3: 94367K Scheme #111: 94367E Schemo #13-1: 04367L Instrumentation Cable Item:

Scheme #11-2: 94367F Scheme #141: 94367M Scheme #11-3: 94367G 5C/#16 W 071 TC Number Description of exact physical location 155 Center of cable loop in tee section,2" from fireitop. 156 At bottom ofloop,in center of tee section. 157 6" from the tray center, toward the wide radius 90' elbow. 158 12" from the tray center, toward the wide radius 90 elbow. 159 18" from the tray center, toward the wide radius 90 elbow. 160 24" from the tray center, toward the wide radius 90 elbow. 161 30" from the tray center, toward the wide radius 90 elbow. I62 36" from the tray canter, toward the wide radius 9C elbow. 163 42" from the tray ent,g toward the wide radius 90 elbow. 164 48" from the tray cmtar, toward the wide radius 90' elbow. 165 54" from the tray center, toward the wide radius 90 clbow.

       .       166            60" from the tray center, toward the wide radius 90 elbow.

g I I67 66" from the tray center, toward the wide radius 90 elbow. 168 72" from the tray center, toward the wide radius 90 elbow. 169 78" from the tray center, toward the wide radius 90 elbow. 170 6" from the tray center, toward the zero radius 90 elbow. 171 12" from the tray center, toward the zero radius 90 elbow. I72 18" from the tray center, toward the zero radius 905 elbow. 173 24" from the tray center, toward the zero radig 90 elbow. 174 30" from the tray center, toward the zero radius 90 elbow. 175 36" from the tray center, toward the zero radius 90 elbow. 176 42" from the tray center, toward the zero radius 90 elbow. 177 48" from the tray center, toward the zero radius 90 elbow. 178 54" from the tray center, toward the zero radius 90 elbow. 179 60" from the tray center, toward the zero radius 90 elbow. 180 66" from the tray center, toward the zero radius 90 elbow. 181 72" from the tray center, toward the zero radius 90 elbow. l I NIE: TCs shall be numbered sequentially from 1 upwards for each dect assemb!y. Prefixes shall be added as follows:13 (power cable), C (control cable), I (instrumentation cable) and E (engineering TC), for instance P1, E35, C46, etc. PLEASE USE THE BACK OF THIS SHEET FOR DRAWINGS, IF NECESSARY

b7 l THERMOCOUPLE PLACEMENT LOG - PROJECT NO. 94367 No1 c: This Log is to be used to document the precise location of the thermocouples located on each test hem. The assigned project number for each of the test assemblies are: i heme #9-1: 94367A Scheme #12 2: 9436711 Project #: 94367m Scheme #9 2: 94367B Scheme #12-1: 943671 Scheme #10-1: 94367C Scheme #9-3: 94367J Scheme #: 12-2 Scheme #10-2: 94367D Scheme #10-3: 94367K Scheme #111: 94367E Scheme #131: 94367L ltem-' Trav Rails ' Scheme #11-2: 94367F Scheme #141: 94367M Scheme #11-3: 94367G TC Number Description of exact physical location E82 On outside vertical and horizontal centerline of tee section of the front tray rail. E83 On outside vertical centerline of the tray rail,12"left of center. E84 On outside vertical centerline of the tray rail,24" left of center. E85 On center of the tray rail connector,39" left of center. E86 On outside vertical centerline of the tray rail,51"left of center. E87 On center of tray rail connector,16" above previous TC. E88 On outside horizontal centerline of the tray rail,12" above previous TC. E89 On outside vertical centerline of the tray rail,12" right of center. E90 On outside vertical centerline of the tray rail,24" right of center. E91 On center of the tray rail L-connector,42" right of center. E92 On outside horizontal centerline of the tray rail,12" above previous TC. E93 On outside horizontal centerline of the tray rail,12" above previous TC. I I E94 On outside vertical centerline of the tray rail,14" left of tee section centerline. E95 On outside vertical centerline of the tray rail,22" left of tee section centerline. E96 On center of the tray rail connector,17" left of previous TC. E97 On outside vertical centerline of the tray rail,12" left of previous TC. E98 On center of the tray rail connector,16" above previous TC. E99 On outside horizontal centerline of the tray rail,12" above previous TC. E100 On outside vertical centerline of the tray rail,14" right of too section centerline. E101 On outside vertical centerline of the tray rail,22" right of tee section centerlina. E102 On center of the tray rail connector,12" right of previous TC. E103 On center of the tray rail L-connector,10" right of previous TC. E104 On horizontal centerline of the tray rail,12" above previous TC. E105 On horizontal centerline of the tray rail,12" above previous TC. t OTE: TCe shau be numbered sequentially from 1 upwards for each deck assembly. Prefixes shall be added as follows: P (power cable), C (control cable), I (instrumentation cable) and E (engineering TC), for instance P1, E35, C46. etc. PLEASE USE THE BACK OF THIS SHEET FOR DRAWINGS, IF NECESSARY

                                                                                           .i Report No.12340-94307h                                               De      '
   ,   Texan Utilities Electric                                                  EN IC 0

O Appendix D

                                  . CIRCUIT: INTEGRITY.- DETAILS--

1

                                                                  .:   ?                 -

O l* @j l o g/

00 TEXAS UTILITIES ELECTRIC PROJECT NO, CIRCUITINTEGRITY CONNECTIONS

                                                                   +           --
                                                                                                          ^

12 VDC PwTSup "( chassis y To Data-E' ""d Acquisition g10000 System o Circuit Integrity _ V= g Y. M b 100 0

                                ;                     color = Red                                                                                    V.100n= 3 5%

100 0 Vr= ** 2# 7 __ color = d 1. c k _ 100 0 p; 4 color = 0 f..y _ a 1000 color = v 1,: A, _ 1000 color = hre,- _ 1000 mm chassis - ground (hn e,,e 1 - ! * *J' Date Instrumenterl: //-/M L SCHEME #: #1 Techmcian: Sur

  • ASSEMBLY #:

ITEM: 2 rr~ ~ /ru CABLE FUNCTION: CONTROL CABLE TYPE: - W-048 CABLE SIZE: 5C/#12 AWG

GO TEXAS UTILITIES ELECTRIC PROJECT NO. CIRCUIT INTEGRIT.* CONNECTIONS O + -

                       ~
                                        - 12 VDC Pwr Sup g              '

cha..is To Data gmnd Acquisition f1000Q System a-CircuitIntegrity

                        <,                                                                             'V i= 4.A03 494.3 100 0                                                                                         V.toon= A. I 65'
                         ~

V r = 7. */ 4 7 1000 color = 1 _ 1000 color = 7 . 100 0 chassis ground (44,,,,,/ 2 ##" Date Instrumente( /N1'h 12 Technician: W1 SCHEME #: ASSEMBLY #: ITEM: zu" Try w/Tir CABLE FUNCTION: POWER-CABLE TYPE: W-020 CABLE SIZE: 3C/#6 AWG

G1 TEXAS UTILITIES ELECTRIC PROJECT NO. CIRCUIT INTEGRITY CONNECTIONS

                                    +

12 VDC - Pwr Sup g " chassis To Data ground Acquisition f1000n System o __ color = 8/ c/

                                                              -1000
              .             color = 6/4 e k                                      CircuitIntegrity Vi
  • C' II f#

1000 color = d /g c 4 Y*' f

                                                                                          '/#

color = vat /c T_ 1000 color = UAch / Black

                                                               -1000 color = Cn       ,

1000 color = t; yr,,, _ 1000 chassis ground (b a .,n r i J "C Date Instrumented: //-/l- f 2 n Technician: "*; SCHEME #: ASSEMBLY #: ITEM: 2#'

  • v N' CABLE FUNCTION: CONTROL CABLE TYPE: W-047 CABLE SIZE: 7C/#12 AWG u

l

G2-TEXAS UTILITIES ELECTRIC PROJECT NO. CIRCUIT INTEGRITY CONNECTIONS G NJ + -- 12 VDC Pwr Sup g

  • chassis To Data ground Acquisition f1000O System 3

CirruitIntegrity V=3

                                                                                                       /M74M 4 016 100n                                                                               V loon =b'I color = /                                  _

2, ggf. 1000 _ color = 7. . 1000 color = ? , 100 0 mn chassis ground (h n .,e 1 4 "e Date Instrumented: // -/ 7- " SCHEME #: 'l Technician: ASSEMBLY #: ITEM: # "" T*' ~ /* CABLE FUNCTION: POWER CABLE TYPE: W-023 CABLE S!ZE: 3C/#8 AWG

G3 TEXAS UTILITIES ELECTRIC PROJECT NO-CIRCUlT INTEGRfiY CONNECTIONS

                                +

pd 12 VDC g Pwr Sup chass.is To Data _ ground Acquisition 10000 System o color = Red 1000 color = R,J ./g/. k l_ CircuitIntegrity 100 0 V*i 5#IM color = 6/4 c k - ~ V-1000 = 3 ' I 5 E color = g/u e Y * >' 3 f 100 0 color = wA;/g color = wA /r y//r.f e, - 1000 color = #rd  %,,, _ J 1000 color = 6ru, 1000 color = /vre. /g/4r k 1000 - chassis

                                /hM2 Date Instrumented:

Technician: #*' -

                                                                   -SCHEME #:           '2 ASSEMBLY #:
                                                                          . ITEM:    "T'*/   "###
 ~

CABLE FUNCTION: CONTROL CABLE TYPE: W-046 (>3 CABLE SIZE: 9/C #12 AWG

O 'I TEXAS UTILITIES ELECTRIC PROJECT NO, CIRCUIT INTEGRITY CONNECTIONS

                                     +

12 VDC Pwr Sup g ' ch..Sia To Data 8"""d Acquisition f1000O Systern

                                                    - . -               o CircultIntegrity o                                                         v i=     4 i

7/I 100 0 V-100n= h

                       ~

Color = k/s/ Vr = 4 709 Color = 8 /4( k _ 100 0 Color = Sva.,e ,o - - 1000 color = Wb+' ( 1000 C010r = (1rrr-to Le : Ga n 5h , vw ( A).,,, / ( p" Date Instrumented: //-//-f 2 87 Technician: u-f SCHEME #: ASSEMBLY #: ITEM: 8" rr., net CABLE FUNCTION: INSTRUMENT CABLE TYPE: W-071 CABLE SIZE: 5C/#16 AWG -

TEXAS UTILITIES ELECTRIC b PROJECT NO. CIRCUlT INTEGRITY CONNECTIONS-O + 12 VDC g $ Pwr Sup chassis TO Data ground 1000 O Acquisition System a Color = /Seg color = Wh.' [( _ 1000 $ color = tI/uk-1 1000 CircuitIntegrity color = w M ht - - v, = c 9 t f 1000 Y.1000 = ' color = $n,u

                                                                                     ~

v r= "~ O _ color = wAl/c . 1000 1000 color = 6 rren _

                                                                                         -       color = w k:fe b

1000 >

                                                                                        ?
                                                                                               , In ,     g.re                          -

(I,, .,, i 7 an Date Instrumented: //-/ M r 82 Technician: u ~.r SCHEME #: 2 ASSEMBLY #: 2"~ ray .us ITEM: CABLE FUNCTION: INSTRUMENT. CABLE TYPE: W.063 CABLE SIZE: 4 Shielded Twisted Pairs

                                                                                                                                                                                              #16 AWG (8 COnd)

Report No.12340-94367h December 16,1992 Texas Utilities Electric APPENDICES [ O o V Appendix E INSULATION RESISTANCE DETAILS l'h V 4^ of,-:,fo, N L

                                                         ' l'
                                                  '+o'42fo#
                     -                                                                        G
                      -        6$44dft llTII;1TY ENGINEEltlNG INC.

ps w. edTERS RO.

  • SM MTONIO. TEMS 78216 * ($12HW32m

( t November 12, 1992 Mr. Deggary N. Priest Omega Point Laboratories, Inc. 6868 Alamo Downs Parkway San Antonio, TX 78238 l

Subject:

Initial MEGGER Reads for Tests 13-1 and 12-2 (20 MEG 001)

Dear Mr. Priest:

On November 11, 1992, when we performed the initial MEGGER reads for test 13-1 and 12-2, the relative humidity was 84%. Since the test mockups were located in A the open bay workshop, that is where they were tested. During the testing we

     'd experienced repeated problems with moisture contamination on the surface of test leads and mockup cables. This caused lower Mega-0hm readings than would normally be expected from new cables. This was especially apparent during the-1500 Volt MEGGER testing. The readings that would normally have been above 150K Mega-0hms, were in the range of 36k Mega-Ohms.             As I stated, this was due to moisture contamination on the surface of all of the exposed wiring. It is anticipated that after the thermo-lag test, if the cables have sustained no damage, the cables should test better than the initial test. This is because the relative humidity will be much lower and the cables will have been dried by the firing.

J If I can be of further assistance to you in this matter, please call me. Sincerely, l ALEXANDER UTILITY ENGINEERING, INC. David K. McMillan, P E. . I Vice President - Electrical Systems Planning l DKM:mgs

t 4 1 oi deggcr Cctlcuier :.c ,,. 6ckctt ; l2,-2 M D-LBM4TH OF LBM6TH OF AGCEPT. ] CA8tg -rCTA L. EWENGlOM M&66Ef. W .') r ' A I 4 '- (9" +((oey/.G") l55;5 Ic.19

i. W - 010 8 14'- // f(4eJ3LG') 108.5 I4.7-I C (4'-(./ -

f[Te230") L l7T.O S.94 W- 047 W-023 D 14'- /o" r( 4 en' &") 108 5 I4.75 Li- C4 0 EE 14'- G" + ( 3 e13'-6)  ! 5. O . lg,il u - 07 l . F l A'- (E +(Ts15'-5) -I99.0 S.% L1 - C&3 6 14'- &" +(3en'-EC f5.0  !!,f2 1 4 O - t 4 l l I I Joepeo PAGE '

ABB -
                                                                                                                                         ~

< - ., .- ... ,,, = = _ 1 l.

TEXAS UTILITIES ELECTRIC This individual cable has CABLE ( INSULATION RESISTANCE MEASUREMENT been labeled with the letter CODE shown in the box to the right, ATA SHEET to simpliry rapid identification.

                                                                                     /S#* I PROJECT NO: DC                                    CABLE LENGTH (FT):
                                                                                     '#' #'I M 4 I

TEST NO: 4 IR ACCEPTANCE VALUE: Re-d in Mega Chms CIRCUIT PRE-TEST POST-TEST IR X3 ACCEPTANCE TESTED IR Y3 Black to Pink >Sok , fr N y . Black to Orance i >50k ,9N 'v Y

                      ~

Black to White l > So X '

                                                                        , /i r / <

Black to Green I > So X / , / A" v Black to Ground I 3o x  ! , 3r R 'v Pink to Orance i > So K i / > 2X E s'r Pinkto White > Se k i ' s 4 /< /v

          ~

Pink to Green i > _ano M / ^- 'e Pink to Ground ' 3oK . h' 5 K 6 Orance to White  ! >SoK  : ',4M

                                                                         /                       &

Orance to Green > So M ' f, o 6 /T (, p Orance to Ground I 30K ' , 7 5 /< 4 d White to Green White to Ground i I 50k

                                                .3 o K I

i

                                                                         / , 4 l<
                                                                          .6k d

6 Green to Ground i 30K i , P /< 4 i

                                                                                              /

i i i , I i i  ! l l t i I I 4 1 i l I Date Pre-Test IRT: nihl 4~1 1 Technician: 0.4 'dA# SCHEME #: Ih A Date Post-Test IRT: // // 3/f a-- ASSEMBLY #: M h */7 Technician: M N ITEM: CONTRdt O c^8'8 euxor10s: CABLE TYPE: CABLE SIZE: W-048 5/C #12 AWG

  • IRT = Insulation Resistance Test ENERGIZE TO: 1500 VDC
        ' Tag hte. T. c.- \\37 Cal b e h b ' 93048)

TEXAS UTILITIES ELECTRIC This individual cable has CABLE CODE

                                                                                                      ,,/ i
INSULATION RESISTANCE MEASUREMENT been labeled with the letter shown in the box to the right, 99ATA SHEET to simpiiry rapid m3 .

identification. . PROJECT NO: NO CABLE LENGTH (FT):

                                                                               ,OS.r N WA TEST NO: 4                          IR ACCEPTANCE VALUE:

k_LIA_r) M MCM dw n CIRCUIT PRE-TEST i POST-TdST IR ' IR X3 ACCEPTANCE TESTED X~A 5 No.1 in No. 2 13 dk V No.1 to No. 3  ! t "AK

4. Ek 0 No. I to Ground I i.SfK  ! JL.fR 4 No. 2 to No. 3  ! 1 AK~ GK 4 No. 2 to Ground i \.TK i A.L. K v No. 3 to Ground  ! AK '

a .to k 4

                                                                                        /

l 1 ~< l i I

                                                            !                    I l

i i  !

i I i t I

i i l i l I I t t I  ! I i l i i  :

I l I Date Pre-Test IRT: H-U~ h gA Technician: w 3kM. SCHEME #:

Date Post-Test IRT: 0- t s-q u ASSEMBLY #: ITEM: g,, ej Technician:" e sd 7_ g 77 p 4 CABLE FUNCTION: POWER

d CABLE TYPE:

CABLE SIZE: W-020 3/C #6 AWG <

  • RT = Insulation Resistance Test gg p ENERGIZE TO: 1500 VDC i 960AA hN 0A@ * '

TEXAS UTILITIES ELECTRIC This individual cable has CABLE y INSULATION RESISTANCE MEASUREMENT been labeled with the letter CODE shown in the box to the right, MATA SHEET to simpiiry rapid identification.

                                                                                                                                                 'M#

PROJECT NO: MM CABLE LENGTH (FTh

                                                                                                                                                 # Nddl TEST NO: 4                                                                                  IR ACCEPTANCE VALUE:

U WDs) w M.JLY 2rA

                                                                                                              ,                                   m CIRCUIT                                                                                    PRE-TEST                       POST-TEST IR      Xg        ACCEPTANCE TESTED                                                                                         IR X~b Rinck to Red                                                                                M E '7K         !                13 k                          V Black to Blue                                                              i                 D O 'l Z~1M i                      nR                            0 Black to White                                                             i                4 4 k$ EK          :                  l~b R                      f Black to White / Black                                                      i               -i . 7 M sk        i L4 k                       9 Black to Orange                                                             !               47 -f-6 Sk   "

8K 9

   -PJ c.i tm C . c._                                                 c.W   <e i                                    i
                                                                                                                                      '4:
  • Black to Green I 9-k 5 K 1 14 k V Black to Ground i 1.8 K isX V Red to Blue i ~1 K  ! cAO K v Red to White I 1K _j;2A k E Red to White / Black I ~'1 K sok 4 p Red to Orance I 1 n< l S K' L d Red to Green i iR '

3OK L Red to Ground i 1. 3 K l RK /, Blue to White i 1k i A1K I v Blue to White / Black I B k' t a.9 k 4 Blue to Oranen i

                                                                                                     \oK               >
                                                                                                                                       .M K                   L Blue to Green                                                                  I                9K                 i               3AK                   /v Blue tn Grannd                                                                  !                l4K               i               15 K                  f White to White / Black                                                           i                7K                 i              ~tS K                J White to Orance                                                                  i               WK'                i             36 K                  9 White to Green                                                                   I               ~7 K__              i            s eK                   L White to Ground                                                                  I                1.to k             i            no K                   V White / Black to Orance                                                           '
                                                                                                       %K '               i            4OK                    /v White /Rinck to Green                                                             !              TK                   i             SSK                   /r White / Black to Ground                                                           i               f7K                 I             .AO R               v7 Orance to Green                                                                    :

9K 1 4A.E I V Orange to Ground I t .fi K i MK v Green to Ground 1 ,? K  ! M u

                                                                                                                                                                /

Date Pre-Test IRT. til u 142  ; Technician $ M O SCHEME #: Date Post-Test IRT: #n 2_ 11-16%)kM ASSEMBLY ITEM: g Technician '" e " G i CABLE FUNCTION: CONTROL V CABLE TYPE: W-047

  • IRT = Insulation Resistance Test CABLE SIZE: 7/C #12 AWG ENERGIZE TO: 1500 VDC CA%O W&W \

4So43 l -t3.h u p h AA W 2. l uw h -

72 TEXAS UTILITIES ELECTRIC This individual cable has CABLE IHSULATION RESISTANCE MEASUREMENT been labeled with the letter CODE shown in the box to the right, I MATA SHEET to simpiiry rapid identification. , PROJECT NO: 9OM CABLE LENGTH (PT): /vB.r

                                                                                        # T' # "4 TEST NO: 4                               IR ACCEPTANCE VALUE:

kA .L VA oydtw CIRCUIT PRE-TEST POST-TEST IR IR X3 ACCEPTANCE TESTED 'AM

  • No.1 in No. 2 1Ak  ! LSE V No. I to No. 3 I IR i 3. S'K 9 No. I to Ground I l.4 K I i3k Y No. 2 to No. 3 I IA 4 I 4.bk v No. 2 to Ground I l.1g  ! A.1 K 4 No 3 to Ground i 1.7< i e3L I K 6 i

i / i i i i 4 O l i l i l l l t i

                                      !                             I I                              i I                              '

I

                                       !                              I i                              i l                             1 1

I I  ! I I I i l Date Pre-Test IRT: Il-ll 4 O SCHEME #: I1 Technician: e 3Rm ASSEMBLY #: A >

                                           "// hs / 9 2_                                       #M ' M/ ' T Date Post-Test IRT:# 'A               1                           ITEM:

Technician: " "" p v CABLE FUNCTION: CABLE TYPE: POWER W-023 CABLE SIZE: 3/C #8 AWG gp

  • IRT = Insulation Resistance Test ENERGIZE TO: 1500 VDC lE-lHt) $dp W 9304xl h4w W N.uit &. . . - . - . . .

7d p%E i e x TEXAS UTILITIES ELECTRIC This individual cable has CABLE INSULATION RESISTANCE MEASUREMENT been labeled with the letter CODE _ shown in the box to the right, ATA mHEET o to simpiiry rapid identification, 94Ob7 CABLE LENGTH (PT): ## PROJECT NO: 'A #2 "A TEST NO: 3 IR ACCEPTANCE VALUE: 9Addlb % 1 CIRCUIT PRE-TEST  ! POST-TEST

                                                                       !                 IR X3           ACCEPTANCE TESTED                                          IR Y3 Black to Whitn                                 > SC M                        f /<                     Y Black to Red                  I                 >SoK         i                 Sk                     'P Black to Blue                I
                                                          > So R
  • fo k 0 Black to Orance I > 50 R  ;

6 /< 0 Black to Green i > 5"OK L 5 /<' /Y Black to White / Black i > Sox #k 6

~ Black to Red / Black i > SO X 4 l< l v

Black to Green / Black i > SU X lo M 4 Black to Ground i > ro X 14 k 4

 ,        _ Red to Blue                   i               ;_> E p x                     3, 9 K                    k Red to Orance                   6              > _s a K                     3,4 X                     4
                                           !              > 5*O X         i            aSk                        (,

ip) RedRedtoto Green White / Black i > So >< l 4k 9 Red to Red / Black i > So K 3. S R 4 Red to Green / Black i > so K 4,1 k 6 Red to Ground i > SC R XL k 6 Blue to Orance +

                                                               /Ch          '

t-4 k b Blue to Green i

                                                               #1 X         '             4K  ~

4 Blue to White 1B1nck i '> SD X i 4 6 /<' 4 Blue to Red / Black I > SO K > FN __ 4 Blue to Green / Black I > SD X i /o,8"X b __ Blue to Ground I > FO K 1 3 /< 4 Orance to Green  ! > sox (a k I, Orande to White / Black I > So X i 7M 4 _Ornnce to Red / Black i >SpM i VN /, - Oranie to Green / Black I > 5*O k  ! 9K. h i Orande to Ground I > foR ' 44 X - Y _j Green to White / Black l > So k  ! 9X D Green to Red / Black i >Sok I /4K  ! (r I (MORE ON NEXT PAGE) Date Pre-Test IRT: //////92. @' Technician: M d4 SCHEME #:

                                                    // // 3 M 2-                      ASSEMBLY #:            L Date Post-Test IRT:                                                                M " tm e i O / r-Technician:           c  M '/WL ITEM:                   '

CABLE FUNCTION: CONTROI pd CABLE TYPE: W-046

  • IRT = Insulation Resistance Test CABLE SIZE: 9/C #12 AWG ENERGlZE TO: 1500 VDC g, g Cal Due bde *. 93D8+6t7
                                                               ;                      fac36 10% b                    .,

l TEXAS UTILITIES ELECTRIC This individual cable has CABLE INSULATION RESISTANCE MEASUREMENT been labeled with the letter CODE shown in the box to the right,

  %ATA SHEET                                                     to simpiiry rapid s

identification. CABLE LENGTH (PT): b' # PROJECT NO: M %7 TEST NO: 4 IR ACCEPTANCE VALUE: - /5. E t er A-

PJLa_d M M y M w CIRCUIT PRE-TEST i POST-TEST ACCEPTANCE TESTED IR >(3 .

IR V 3 Green in Green / Black > SOX IF K v Green to Ground  ! 44 X I '7 K L White / Black to Red / Black 1 JSR t Ib k 4 White / Black to Green /Blacki > $0 R c2 6 < v' White / Black to Ground l 4J o k 'l k #v

                                                   > So k          .

IOK ', Red / Black to Green /Elack i Red / Black to Ground  ! 7.510 K

                                                                                          '7V                 4 Green / Black to Ground       i               3. So M                               Q<                 /,

, W H I TE- To Reb i >Sok I S'M h WHITS To stuE i > .S"O M. lEK 4 to l+ :rs To enANeEi > SD X c2 0 K 9 q tvH tvr w e,namW  ! > SD K c2 FX b V WM tTv in tot +tm/BLM > .s o K 3DK 4 we its Te Rah ALk ! > .s o K t 44- o K 4 40K BLki ulHf 71lr vn s.R > So K f towirs w e nouw b ' 3oX i J20 K 4

                                       !                              i                                    /

4  !

                                       ;                              i 1

l ~ i i i i i i

                                         !                              i i

l i l i Date Pre-Test IRT: u Lniex SCHEME #: IL Technician: aw YJ# ASSEMBLY #: A> Date Post-Test IRT: it i13 4 3 M"h O/T Technician: M ' /]J# ITEM: CONTR0l '

                                                 ~

CABLE FUNCTION: ps) CABLE TYPE: W.046

  • IRT = Insulation Resistance Test CABLE SIZE: 9/C #12 AWG ENERGIZE TO: 1500 VDC Tg Vs .

I c - W1 od,he.bde : 95o427

TEXAS UTILITIES ELECTRIC This individual cable has CABLE 7 CODE INSULATION RESISTANCE MEASUREMENT been labeled with the letter shown in the box to the right, @ATA SHEET to simptity rapid identification. P I M 367 CABLE LENGTH (FT):

                                                                                    /"#

PROJECT NO: #"M TESTNO: 4 IR ACCEPTANCE VALUE: l9D &A ' s'n ' AA D c,cr % CIRCUIT PRE-TEST POST iEST IR IR ACCEPTANCE TESTED 3.4 K v Rinck to Pink @ Black to Orance & Adk 6 Black to White ~ @ A.1 N d Black to Green a 3. 9 K 4 Black te Shield A 1AK 6 Black to Ground cA 1. 4 K /. . Pink to Orance @ 4 bK L Pink to White C:O R*K d Pink to Green @ Sk 'v Pink to Shield _ g A9K 6 Pink to Ground .-p .::2 't KJ G Orance to White @ .3. 9 K -

                                                                                        ^

t Orange to Green # EK -EssN4 @ 0 Orance to Shield I oco A,7 K 6 Orance to Ground @ A.PK 6 E K' 'y White to Green A White to Shield 6 AlK 'v White to Ground e.A. J. FK v Green to Rhield @ 6K ~V Green to Ground W L K, 5- K 'V Shield to Ground o o. # S;* lb- ,./,/2 'v 7 I Date Pre-Test IRT: 11 - I l - 91.- Il Thw SCHEME #: A Technician: #' 16-4 L ASSEMBLY #: Date Post-Test IRT: If Technician: " e #fl% ITEM: #h WT CABLE FUNCTION: INSTRUIIENT (v] CABLE TYPE: CABLE SIZE: W-071 5/C #16 AWG

  • IRT = Insulation Resistance Test l C-lig ggp ENERGIZE TO: 500 VDC 430Ar) mh W M. M S 7'

3

TEXAS UTILITIES ELECTRIC

e. I% A CABLE 7 This individual cable has INSULATION RESISTANCE MEASUREMENT been labeled with the letter CODE shown in the box to the right, kATA SHEET to simpiiry rapid identification.

PROJECT NO: NO CABLE LENGTH (PT): h.o

                                                                                       /L 8 ? 4 TEST NO: 4                            IR ACCEPTANCE VALUE:                                           -

R2_DA S lALL CaA. b~b.w CIRCUIT PRE-TEST POST-TEST IR IR ACCEPTANCE TESTED Red to White (red) c4 dK v _ Red to Black @ _ 3x A K 'u Red to White (black) A 6K 4 Red to Green A SM 6 Red to White (green) em 6. Uk' 'y Red to Orance cA 1m_m_y bK d Red to White (orance) c9 4GEa 6 . 5' k~ /v Red to Shield g war.L m., p K 4 Shield to Ground cA. 9 300 4 cP- 'y White (red) to Black 4k~ White (red) to White (black) em I, K 6 O White (red) (red) to toWhite Green(green) A 6k 'u V White cA (e. Ek 'u White (red) to Orance cA 6K 4 White (red) to White (orance) cA (p . 5'K V White (red) to Shield cm. 3R 'u Black to White (black) e 4.4R 6

     . Black to Green                         - BX op                       4Sid                      t Sk Blnck to White (neen)                      cA                                                  6 Black to Orange                          oc                        @,5K                      6 Black to White (orance)                    c>o                       5.rk                     6 Black to Shield                             cc                        t. 5 K                  G White (black) to Green                     co                         9k                     /v White (black) to White (creen)              ce                        clK                      V White (black) to Orance                      @                         LOK                     V White (black) to White (orance)            e9                          9 k.                 6 4lc
                                    ~

White (black) to Shield dP- 9 Green to White (green) c4 7K 'y Green to Orange A llr 'u

                                                                                                      /

(MORE ON NEXT SHEET) Date Pre-Test IRT: I.1 - H - A l )1 Technician:_1p wm SCHEME #:  ! Date Post-Test IRT: h-t3.q L ASSEMBLY #: Technician ITEM.

                                  '" u   " da a  .

O CABLE FUNCTION: INSTRUMENT U ' CABLE TYPE: W-063 l

  • IRT = Insulation Resistance Test CABLE SIZE: 4 pr #16 AWG ENERGIZE TO: 500 VDC IC. - (140 93c42 7 m nu%p, j 1
                                                                                                                                                                  ')a. g A q A                         -

TEXAS. UTILITIES ELECTRIC This individual cable has CABLE ", CODE INSULATION RESISTANCE MEASUREMENT been labeled with the letter shown in the box to the right,

     &ATA SHEET                                                                                                                                              to situpliry rapid identification.

MEN CABLE LENGTH (FT): 6u PROJECT NO: > # ' t "^ TEST NO: 4 IR ACCEPTANCE VALUE: t 2_1 u ) % % % - CIRCUIT PRE-TEST POST-TEST IR IR ACCEPTANCE TESTED Green tn White (nrance) c'P 9K s, Green to Shield

                                                                                                                             ~

cc 4.C K (, White (creen) to Orance & iwM 4 White (creen) to White (orancel ec tb K 6 White (green) to Shield c,o EK C Orance to White (orance) e,o uK 6 co 7K (, Orance to Shield (, White (orange) to Shield e MM f G V Date Pre-Test IRT: I!-l \ ~ h I1 Technician: ? Wm SCHEME #: ASSEMBLY #: 2> Date Post-Test IRT:it tt-% ITEM: M"h CA~ Technician: "c' #D~

                                                                                                                                           "                    CABLE FUNCTION:          INSTRUIIENT Q                                                                                                                                                                CABLE TYPE:

CABLE SIZE: W-063 4 pr #16 AWG g'--

  • IRT = Insulation Resistance Test ENERGIZE TO: 500 VDC gg @dpm 004W W%

DN D4 3 _---__-

i Report No. 12340-94367h December 10,1992 Texas Utilities Electne APPENDICES I

                                                                        "/ '

1 O l 4 Appendix F GRAPHICAL TEST DATA MAEc yha o(y ekW}5

                                       '*ig};p
  .   . - . . . ~ _ . . . _ _ . . .   . _ _ _ _ _ _ _          . . . . _ . . . . _ . _ _ . _ . . _ . . _ _ . _ _ _ _ _ _ _ _ . _ _ _ . . . ._ _ . . _ _ _ .. _ . . . _ ..                           ._

O O O-Project No. 94367h TU. Electric Furnace Temperatures . 2000 ' ' ' E119 Std (*F) _ i Fumace Avg ( F) _ V - 1500-  ! t A

             '                    LL                                                                                                                                                       -

s ., L - ' ' ,' .o o S%. j&s o g" 1000- i Q Q. E . e 4 f-- i 500- 1  ! i i i i i 0 - i - i - i - i - i - l 0 10 20 30 40 50 00 l r Time (min) , i C

_ _ . _ . . . . _ . _ . _ . _. . . _ . . . _ . . . . _ . . . _ . . _ _ _ _ _ . . . . . _ . _ . . _ _ _ _ . . _ . . . . . _ _ _ _ _ . . _ _ _ _ = _ _ _ _ _ _ . _ . _ . . . _ O O O . i Project No. 94367!: TU Electric Circuit' Integrity #1 - 24" Tray 4.5- ' ' ' Gkt Int #1 (volts) ~

                                                  ' 4.4 -

oo ' %O 4.3 - a- y- >y 4 > . g - g .D cg kg $ 3 , 4 4.2 - l , 4,1 - i' 4 . , . , . ! 'O- 10 20 30 40 50 60 Time (min) 1 i CO O 3

_ .. _ .. _ _ _ _ . . . _ . _ _ _ _ _ . _ _ _ ~ . _ . _ _ _ _ _ . . _ . . _ _ . _ _ . . . . _ . . . _ . . _ . _ ___ O O O , t Project No. 94367h TU E:ectric Circuit integrity #2 - 24" Tray 3.5 ' ' ' Gkt Int #2 (volts). - r 3.3 - nf% o 3.s  ; P ..

 >;             ,J              g o'              ev            m                                                                                                                                               _
        ~
                   %? '        2 9,ts       %$               O                                                                                                --
                              '>                    2.9 -

l l - 2.7 -

l.  ;

s (. - f 2.5 - i - i - i - i - i - ! O 10 20 30 40 50 60 4 l Time (min) i F g I F-* -

O O o i Project No. 94367h TU Electric . Circuit integrity #3 24" Tray -, 5.5 ' ' Okt Int #3. (volts) _ 5.3 - 9 L

   .b M " ?ea  -

5.1 - i

                           ,cn i

5:

   'g           s%*

(13 ~

                                                                                                                                                                  ~

Os *<_ h .

                          >               4,9 --

t - 4,7 _ 4 7 4.5 . i . i i. i . 0 10 20 30 40 50 60 i Time (min) ~ I CO 1 rm

e O O O Project No. 94367h TU Electric Circuit Integrity #4 - 24" Tray 3.5 * - Ckt Int #4 (volts) '

                                                                                                                                                                         ~

3.3 -

                                                                                                                                                                         ~
          *N'
 . :a -                      o  e
  $'.                           CD
  ??        ..,

O 2.9 -

                                                                                                                                                                          ~

2.7 -

                                                  '2.5 l               .

i - i - i 60 0 10 20 30 40 50 Time (min) CO c.O L:_

i i. Project No. 94367h TU Electric Circuit Integrity #5 - 24" Tray

                                          '6 Ckt Int #5 <olts)                                                                                   i, w

l I i 1 s 5.8 - k - gf3 ? te'9 5.6 -

.- ni .

p e ,,

                                                                                                                                                                     ~

3.+p _~ y O

5.4 -  ; .

p _ I i S.2 -  : l . 1 i ! 5 i i i , . - 0 10 20 30 40 50 60 t .s . I Time (min) i i

t t
I e

1 i Project No. 94367h . TU Electric  : t i Circuit Integrity #6 - 24" Tray 5-- - I Ckt Int #6 (volts) - l t I r y 4.9 - t g 4.b - ,

  .4 -            .

CD

     'tg       {+      ~~

4.7 - ! 4.6 -  ; i

                                                                                                                                                                 ~

I j 4.5 . i i  ; 0 10 20 30 40 50 60 1 I ! Time (min) 3 I ! t t CO l i p ,. I t w

O O O Project No. 94367h TU Electric Circuit integrity #7 - 24" Tray 6 Ckt int #7 (volts) 5.96-I -

         ,f e
  • 5.92-
                                                                        ^^ _ _-

3 __ s/ 2 5.88-

                                                                                            ~

5.84-

                                                                                            ~

l i 5.8 . 20 30 40 50 60 0 '10 Time (min) co C1

O O O . Project No. 94367h TU Electric Averages - 24" Tray l ' - ' - ' - ' - ' - 300 - Power Cable Average ( F) ,- _ Control Cable Average ( F) _:- 250- -- - -

                                   - - Instr. Cable Average ('F)                                                                                     ,.
                            ~
                                           - Front Tray Rail Average ('F)                                                                  ,..*

p *^ - 200-a ------- Rear Tray Rail Average (*F) ,..-

     ~g
     .        p             _
                                                                                        ~

4 7,

              *2  _3                                                               ...-

. '4, ,o 150- ,- -

                 .CL        -

E .- e 1- 100- , . - -.- -

                                                                                                                                                                              =

50- - 0 . 0 10 20 30 40 50 60 Time (min) P

                                                                                                                                                                                  =m t

O O O Project No. 94367h i TU Electric W-023 3C/#8 AWG Power Cable - 24" Tray . 300 ' ' Power Cable Average ( F) y 250-TC # 1 ( F) '

                                                                                                                                                             ~
                                                                                                                                                               ~
                                      - - TC # 2 ( F)                                                                                                 -
                                      - - - - TC # 3 ( F)                                                                                 -?

[' -

                                                                                                                     /                                         -

p E 200- /

  • oArp a

w , . Q

  • y d
                   .e                                                                     /
                                                                                               /
               ,3      2                                                                                                                                         -

CA. . ~_.s - o 5 150- / D 3* g / ~

                                  ~

{ /

                     $   100-                                            '                                                                                       -
                                                                       /
                                                       /

50- . 0 . i 0 10 20 30 40 50 60 t Time (min)

,                                                                                                                                                                               CO

O O O i 1 - Project No. 943; 'h . TU Electric J W-023 3C/#8 AWG Power Cable - 24" Tray 4 300 Power Cable Average ( F;  ; 250- TC # 4 ( F) - i

                                         - - TC # 5 ( F)                                                                                                                                                    -
                                           - - - TC # 6 ( F)                                                                                   ..A

[ 200- f" -  : f ' .% . L - w u

                                                                                                                            -                                                                                                 r 4             y 3                                                                                                                                                                                         -
   "+,          o  g          150-                                                                                      -

0

              .j 5                                                                                                  : ,                                                                                                          :

4 e

a. /-

E  ? e I- 100- r -

                                                                           /

i 50-f O . i i . 4 0 10- 20 30 40 50 60 l,

Time (min)

- m i ( _ _ - - _ _ - _ _ _ _ - _ _ - - _ - _ _ _ - _ - - - _ _ _ _

O O O

                                                                                                ~

Project No. 94367h TU Electric W-023 3C/#8 AWG Power Cable - 24" Tray 300- - Power Cable Average ( F) 250. TC # 7 ( F) _

                          - TC # 8 ( F)
                            - TC # 9 ( F)                                          -v i
           ^

g 200-ef' %, L y w e

                                                                     /
                                                                   /                            '

kd I

           $  150-
                                                               /

S 5 a / l O . 4 F- 100- -/

                                     .s 4

' 50-1

                                                                                         ~

i 0 . i . . i 0 10 20 30 40 50 60 Time (min) t C e.

              -. . . -      ..         -_______. _ - _ - -            _=_.       _ . -          . . .       ._.. - . ..               .    - . .                      . .          . _ . ..

O O O i Project No. 94367h TU Electric W-023 3C/#8 AWG Power Cable - 24" Tray 300 Power Cable Average ( F) t 1 250- TC # 10 ( F) _

                               - - TC # 11 ( F)                                                                                           ,-
                                     - TC # 12 ( F)                                                                          M~                                                              ,

E 200-4 jf' %g

          =

L e .- 3_ .* 3 -

    %g 4/   g         150-                                                  ,-

i < E , e - l F 100-

                                                                                                                                                  -                                         i 50-                                                                                                                                                                  .

i 0 . O. 10 20 30 40 50 60 Time (min)  ; 6 W

O O O Project No. 94367h TU Electric W-023 3C/#8 AWG Power Cable - 24" Tray I i i i . i . i . ggg . . . Power Cable Average ( F)

                                                                                                                                                   ~

250- TC # 13 ( F) , .p _

                                       -- - TC # 14 ( F)
                                                         - TC # 15 ( F)
                                                                                                                                   ~
                                                                                                                                         'Q                           :

O. 200-f?~ - ?+, L .-  ;

                                                                                                             /

w go

> G y~
            ^Io" $             150-                                                          ,7                                                     -
                                                                                                                                                                      \

2._& 0 y -/

                                                                                          .-/                                                        -

O. - E / 7

                                                                     ,f l-            100-                                                                                                                                   l 50-                                                                                                                                   ;

I O . .= i .

O 10 20 30 40 50 60 Time (min) l t

LO !

O O O , i I [ Project No. 94367h ' TU Electric W-023 3C/#8 AWG Power Cable - 24" Tray

                                                 ..      i                       i          . i           .           i                      .                                i     .

3g9_ . Power Cable Average ( F) 250-. TC # 16 ( F) p

                                                   - TC # 17 ( F)                                                                                                                       y                _

j

                  ^
                                             - - - - TC # 18 ( F) g           200-                                                                                                    '

o ?L, ,-

     ~ 9&,

! y.  :% g - - d, ,n o ,- g S, 150-

g c)

CL t E - - a> I I- 100- /- - 50-0 -- . i . O 10 20 30 40 50 60 Time (min) to

O O O  ; Project No. 94367h TU Electric l W-023 3C/#8 AWG Power Cable - 24" Tray l 300  ;

                                            --Power Cable Average ( F) 250-                       TC # 19 ('F)                                                                                                             -
                                          - TC # 20 ( F) f
                                   - - - - TC # 21 - ( F)

C 200- - i [ ' %, L

: e -
     -         =2                                                                                                                                                                              '
     . +, -

0 150, . & / - I- 100-

                                                               /                                                                                                             .

l 50- .- t h e O 10 20 30 40 50 60 Time (min) 4

                - . . . _     . - _. _ _ ___ _ - - __ -                 . .   ..                   . . - . - ... ---                                                         . -  .     - - -  -=   -_ -

O O O i Project No. 94367h TU Electric  ! W-023 3C/#8 AWG Power Cable - 24" Tray

                                                             .   .      i     .       i                        .                                 i                   . i   .      i_

3gg . Power Cable Average ( F) TC # 22 ( F) 250-

                                    - - TC # 23 ( F)                                                                                                                ~

t 200- - - - - TC # 24 ( F) c f?-8, e Vi .% e. f* 3 150-N+sf~;/ G w a- ' . E N 100- / -

                             =

50-0 10 20 30 40 50 60 Time (min) en

O O O Project No. 94367h TU Electric W-023 3C/#8 AWG Power Cable - 24" Tray r s n n n . l' ogo . . . . . Power Cable Average ( F) l i TC # 25 ( F) 250- p

                                 - - TC # 26 ( F)                                                                                                                          -
                                 - - - - TC # 27 (aF)
                                                                                      .W                                                                                   __

I E 200-  ! gf e_ i'  ?,?. , e

  .d          Je   s                                                                                                                                                        -
   *+    _,s. po  5   150-                                               -

va g- /

o. - _ r E f h 100- ' -

f

                                           /

50-  : 0 . i 0 10 20 30 40' 50 60 Time (min) co

i ' O O O i 4 9 Project No. 94367h TU Electric  !

i i W-047 7C/#12 AWG Control Cable - 24" Tray
                                           . i    .       i            .         .           .                                     .                 .         i              .

j 399 i Control Cable Average ( F) l ,

                                                                                                                                                                            .-              /     -

l 250- TC # 28 ( F) .

                                                                                                                                                                     ,-           7                         ,
                                  - - TC # 29 ( F)                                                                                                                     /                          -
                                      - - - TC # 30 ( F)

C 200- ~

gf' g e ~

1 it--  %-

               ,    e, g

150- 6 ! %g [ E _ E - o - F- 106- '

                                                      ./
                                                , -/

l 50- - 4 0 .

 ,                              0               10           20                     30                                         40                                  50                           60 Time (min) t 5-i 4-s e   !

O O O Project No. 94367h 1 TU Electric W-047 7C/#12 AWG Control Cable - 24" Tray i i i . i . i . 399 . . . Control Cable Average (*F) i 250- TC # 31 ( F) I '

                                                                                               /                      ~
                           - - TC # 32 ( F)
                       ~

l C 200- . . . - TC # 33 (*F) e  ! i 19 + ' ' i y- :3 , d

         .=   5                                             /                                                                        t S    , o  gm  150-                                    7 2

3+s e , ct - E t e / - t I- 100- , 5 0 -- i - l 1 -l 0 . 0 10 20 30 40 50 60 , l 4 Time (min) . I  !

_ - - . - - . - . . - . . _ . . . = _ - . - - . . - .- . - _ . - _ - _ _ _ . - . - . . - .. O O O  ; Project No. 94367h TU Electric W-047 7C/#12 AWG Control Cable - 24" Tray 300 Control Cable Average ( F) i 250- TC # 34 ( F) l

                            - - TC # 35 ( F)                                                                                        /
                                                                                                                                                -                    I
               ^

200-  ; s S - -

                                            - TC # 36 ( F)                                                 <

gr

        . o+,  -

S 2 / i k' * # i "n hy

          . o      150-
    ~%   s.p                                                                    /

l CL -

                                                                            /                                                                    -

h / i F 100- / -

                                                           /                                                                                                         ,
                                                    ,d                                                                                            -

50-0- ' i - i - i - i i , 0 10 20 30 40 50 60 i l P Time (min) , 4 en

O o o i

                                                                                                                                                  \

4 , Project No. 94367h t

TU Electric  ;

t

W-047 7C/#12 AWG Control Cable - 24" Tray i 300 -

Control Cable Average (*F) i [ 250- TC # 37 ("F)

                                                                                                                 ~

i

- - TC # 38 ( F) ,

C 200-

                                - - - TC # 39 ( F) f f' A      L
                        ~

,t-i e 1 2 .

     "+, - p. g o      150-                                             -                                             -

l m <

                "                                        f E                                                                                                                                 ,

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                                           '                                                                                                      l I

[ 50-

                                                                                                                   ~

. i l' i

                                   '           '                              l           I                                                       !

l 5 i j 0 10 20 30 40 50 60 l Time (min) j i I

~
 !                                                                                                                                          O
                                                                                                                                            ~

i

;           O                                         O                                                                                                   O       I 4

i Project No. 94367h TU Electric W-047 7C/#12 AWG Control Cable - 24" Tray

                                .      .    . i   .      i             .                                            .      .    .         .

3go , Control Cable Average ( F)

~

2s0~ - TC # 40 ( F)

                            - - TC # 41 ( F)                                                                                     -

C 200-

   ,# %,      ?_,-            - - - TC # 42 ('F)                                                        .,
   #        %  e k ,,a po'  $
. 150-s- g a -

E a> - l- 100- i t-

50-0 -

i 0 10 20 30 40 50 60 Time (min) . O W

O O O Project No. 94367h TU Electric W-047 7C/#12 AWG Control Cable - 24" Tray 399_ . Control Cable Average ( F)

                                                                                                                                                                                                '4    -

E 5 0 -- TC # 43 ( F) / ~ (

                                                                                                 - - TC # 44 (*F)                                                 -

C 200- [ ~ %, L - - - TC # 45 ( F; - y  %. e / p5

                                       ,                                             150-                                             /

m - _

                                                                             . ci,
                                                                                                                      /

m - F- 100- /

                                                                                                                /                                                                                       _

b 50-0

                                                                                                       .      ,           ,                i               e              i 0            10          20              30               40            50                            60
Time (min) r o i PO

t O O O , Project No. 94367h TU Electric W-047 7C/#12 AWG Control Cable - 24" Tray 300 Control Cable Average ( F)

                                                                                                                                                            ~

250-  ! TC # 46 ( F) i

                    - - TC # 47 ( F)                                                  '

g 200-gN % 6 --

                          - TC # 48 ( F) y
                 ~

1, e / 1

 -   .s  5                                              -
 "+,  o      150-g
                                                                                                                                                           ~
                                                /

! $ 100-50-0 s s s e s 0 10 20 30 40 50 60 Time (min) , 9

O O O 1 . e 1 Project No. 94367h TU Electric. W-047 7C/#12 AWG Control Cable - 24" Tray l 300 i

                                                                                                                                                                          )

Control Cable Average ( F) 1

                                                                                                                                                              -           t 250-i                                                 TC # 49 ( F)
                                         - - TC # 50 ( F) l C         200-b l   cP -Ig                                . . . . TC # 51 ( F)                                                                                                            i
   >      ,:P    e 3         150-
   $(g /. ' '

e . l o /

                               ~

i E t e / -

                                                                                                                                                                          ~

V 100- , l 50-i r 0 . 0 10 20 30 40 50 60 Time (min)

                                                                                                                                                                    }*    i C !

s i-

O O O i l Project No. 94367h TU Electric W-047 7C/#12 AWG Control Cable - 24" Tray i i . . . i . i . 3g9 . . Control Cable Average ( F) 250- - TC # 52 ( F)

                      - - TC # 53 ( F)
                                                                                      )-

C 200- - i

  ,f[  +,  L                                                 ..

y o

                     - - - - TC # 54 ( F)
       .*  Ei
  $e,   o g  150-                                                                               -

j e . Q. - _ E e F 100- ,- 50- - l 0 . i i 0 10 20 30 40 50 60 k l Time (min)

o

.i

B - . O O O l Project No. 94367h TU Electric L W-071 SC/#16 AWG Instr. Cable - 24" Tray

                                                    .   .      i           .       i         .       .       .

39g Instr. Cable Average ( F) ,-

                                                                                                          ,-     /

250- -- TC # 55 ( F) _

                                                                                                             /
                                                                                           ~

200- - - TC # 56 ( F) - E gy? -%, L -

                                  - TC # 57 ( F) p-          g                                               .-

d v 3

 %,     o         150-                                    .,

_j

  • O. ./

f l-- 100- .V

                                                .Y                                                                   -
                                       ./
                                                                                                                      ~

50-

                                                                            -                          s 0          -

n n s n 20 30 40 50 60 0 10 Time (min)

                                                                                                                          ~

\ O l _

O O O Project No. 94367h TU Electric W-071 5C/#16 AWG Instr. Cable - 24" Tray 300 '

                  ~

Instr. Cable Average ( F) 250-TC # 58 ( F)

                                                                         . d-                                     ,

g

           ^

200- - - TC # 59 ( F) _ L f? ~?% '

       $,   e TC # 60 ( F) s a
 %,     o  g  150-                               f
      ,j E

E

                                            /

d 100- - - I 50-4 0 10 20 30 40 50 60 Time (min) s O _t

O O O Project No. 94367h TU Electric W-071 SC/#16 AWG Instr. Cable - 24" Tray 300-j t Instr. Cable Average ( F) 250- i TC # 61 ( F)

                                                                                                                                                        -.                        '~='

E 200- - - TC # 62 ( F) , l]f e 5. o L 2 --

                                           - TC # 63 ( F)                                                     -
                                                                                                                   ~

a , go o+,.  % 150- , N, 5 5

                                                                                         .~

CL - E - o ' - l-- 100- ,- 50-m 5 5 I I ' 5 0 10 20 30 40 50 60 4 J Time (min) , O

O O O Project No. 94367h TU Electric W-071 5C/#16 AWG instr. Cable - 24" Tray

                          -      '     -    '    -      '    -    L      -      '   -

300-Instr. Cable Average ( F) 250-

                            - TC # 64 ( F)
                                                                                &~

E 200- - - TC # 65 ( F) , gf %,o e n.

  '11  i   $            - - - TC # 66 ( F)                 /
   %,  o   g- 150-g
          -R                                         /                                   _

E - a> - l- 100-50-0 i . 0 10 20 30 40 50 60 i r Time (min) ^ r O I - _- _ -

O O O , Project No. 94367h TU Electric W-071 5C/#16 AWG Instr. Cable - 24" Tray 300  ; Instr. Cable Average (*F) I ' ~ - t + 250- ,- - i TC # 68 ( F) 4 - 1 -

                                                                                                             .-              _c                                   ,
                                                                                                           ~

ir_ 200- - - TC # 69 ( F) ,- - f? n.

   >c
          *y,o   -
                  =>

e. Ao B

                                                    -TC # 70 ( F)                         ./                                                                      t g-M"+[.                     150-                                                    ,f
  • ua - s+s u w .
                                                                                     /
a. .

E . ./ o - - F 100- ~ 50- , i i j 0 . i i

,                                     0                10             20                30            40            50            60 Time (min) e C

1

O O O , i l > Project No. 94367h TU Electric W-071 5C/#16 AWG Instr. Cable - 24" Tray 300 '

                                     ~

Instr. Cable. Average -(*F)

j. -

250- ' TC # 71 ( F) -

                                                                                                                            ,e
                                                                                                         ~~~                   -

3 C 200- - TC # 72 ( F) . L . - l c!? o?+o - . g:

                                         ~                                                                                  -
          .s, o     150'-
                                                                       ^ ,'                                                     -

R E -

                             $ '100-
                                                                                                                                 ~

50-0 . , . 20 30 40 50 60 ' O 10-Time (min) s r~s

                                                                                                                                        >=*

c _ = _ - . .

 . .     . . - .     - .    -.       . - .       . - . -        --.    . . . .     -- -.                .- - -.- . . ~ . .           . . . - . - -   ..

O O O Project No. 94367h i TU Electric W-071 5C/#16 AWG instr. Cable' - 24" Tray 300--- - ' Instr. Cable Average ( F) i 250-- i j TC#74-(F) i - -

                       ^

200-4 4, o S - - TC # 75 ( F) < g . ~. + , -

 ~f            %

g ~ 3

                                                       - TC # 76 ( F) k.#

150-

     %c   %              U e

C1 . E 7 e - I-- 100-50-t t 0 - i i - i - i - i 0 10 20 30 40 50 60 1 i Time (min) W

O O O l Project No. 94367h TU Electric W-071 5C/#16 AWG Instr. Cable - 24" Tray 300

                                                                         . instr. Cable Average ( F) 250-TC # 77 ( F)
                                ^

200-l'- - - TC # 78 ( F) .- sfs o% - g: 2 g ' k jo" 150- - - - TC # 79 ( F) , a ' E - o - - F 100- -

                                                                                        ?

50-0 . i . i . 0 10 20 30 40 50 60 Time - (min) r 4

                                                                                                                                                                                       >6    ,

CJ

 ~. __ - - - - - - - .                _ _ _ _                                                                                                              .

i O o O Project No. 94367h TU Electric W-071 5C/#16 AWG Instr. Cable - 24" Tray i ,

                            -      '     -     i   .      i   .        .

300-instr. Cable Average ( F)

                                                                                       ~

250-m -, TC # 80 ( F) - E 200-gl - + - L e 150- - - TC # 81 ( F) E E e - F -100- //

                                     /
                                                                                        ~

50-g 10 20 30 40 50 60 0 f Time (min) s e h

O O O a

                                              ' Project No. 94367h                                                                                                                                                      ,

TU Electric Front Tray Rail - 24" Tray

                                                           ,    .          i       .            i     .          i     .       i-             .

499 . Front Tray Rail Average (F) _

                                                                                                                                              /        -

300- TC # 82 ( F) _ gf %go $ - - TC # 83 ( F) 250- ,

        ,,c
3. ->.e -
                                                                                                ' ~
        %,g - [
                                                                                                                                                        ~

200~ - hm _

                                                    - TC # 84 ( F)                    -

a . 150- ,' j h <

                                                               '/,

, ~

                                 '00~                        /

50- i-0 , .

                                     .0.                10                20                  30                40            50                    60                                                                 ,

4 (i Time (min) . W ' W6 0

O O O Project No. 94367h TU Electric Front Tray Rail - 24" Tray

                                                                                                          -          '   '           l-- - *     '             '     '          '    '   '

E 400 Front Tray Rail Average ( F) 300_ TC # 85 ( F) _

                           ,of-+3 $g.
                                                                                 #      250-                - TC # 86 ( F)                                                                  -

[ .d 3 '

                        $%                                                 3.+(       5 200-            -
                                                                                                              - TC # 87 ( F)
                                                                                     $           ~

h 150-100- ' i

                                                                                        '50-0-}           .

i i - i , i . i 0- 10 20 30 40 50 60 Time (min) , s-H6 ! m

O O O l l Project No. 94367h L TU Electric Fronh;& ray Rail - 24" Tray

                                                                       -- ' - J                    2-       '             '     '          '        '          'l                  -        --
400-Front Tray Rail Average ( F) -

350- # ,

                                                                                                                                                                                   /
300-. TC # 88 ( F) y ~
                                                                                                                                                                     /
                                                                                                                                                                                                                'I C                                                                                                                                                 /

250~ ' ~

    .[    t#,

e - - TC # 89 ('F) f W .? $ _

                                                                                                                                       /
                                                                                                                                               / ..                                          -
% -o g- -- 200--

-  % #s g _ TC '# 90 ( F) o. E -150- ' - f- 6

                                                                                                                /
                                                           . 100-                                f 50-O                           i       .

i . i . ! O 10 20 30 40 50 60 Time (min) s. p i ______.-..__.-.._____..--____-_m. _ _ _ _ _ ba

n - I' I~ U fr O, O Project No. 94367h . TU Electric Front Tray Rail - 24" Tray 400-

                                               - Front Tray Rail Average ( F)                                            '-

1 350-300- TC # 91 (*F) c 250--

                                                                                                                  '      ~

gf'. +, L - TC # 92 ( F) .- g' 4-71 s ,.

              'f, e

y "

                                                                                                    /                     -
      "f               g   .200-                                                          - j go-     -5          _   - - - - TC # 93 ( F)                              -
                      . a.                                                                                                 -

E - / 150-

  • g ,/
                                                                    .     /                                               -
                                                           , */                                                           --

100-- , l i - 0 -- . . 10- 20 30 40- 50 60 0 -l I Time (min)- s Y _ - _ m

L O O O Project No. 94367h - TU Electric Rear Tray Rail - 24" Tray 400'- ' Rear Tray Rail Average ( F) _ 300- TC # 94 ( F) ,

                                                                                                                                                  /
                                                                                                                                                /
                        '        {

a 250-

                                                                                                                                          /               -

l

                          %~*,   "
                                                   - - TC # 95 ( F)                                                              -                    ,.

g I - y g

                                                                                                                 /      .-
                %, j              e                              - TC # 96 ( F) ,                                   .-
                               ;g          --

E 150-p

                                  *                                                                 /..~                                                    .

100- ,, w 50-O' . , . . 20 30 40 50 60 0- 10 Time - (min) ~ w

O O O Project No. 94367h TU Electric Rear Tray -Rail - 24" Tray

                                                                                                                                             '        '   '           '     '                         t 400-Rear Tray Rail Average ( F)                                                         _

i 350-i 300-- TC # 97 ( F) 1 ~ g i

                                                              "            250-                                                                                   ~~~
  . g#'   %,                                                    --
                                                                                    - -. TC #' 98 ( F)                                               [-                   - -

ll >e .

    +    :

200~

                                                                                                                                                                                    ~
                                                                 &                            - TC # 99 (*F)                         -

g

iso- .

r ,- / 100-p' -- 4

                                                                                                                                                                                     ~

50-I O . 3 i . i j' 0 '10 20 30- 40 50 60 Time (min) 1 W ' EQ 1 m

Report No. 12340 94307h December 16,1992 12 Texas Utilities Electric APPENDICES O Appendix G TABULAR TEST DATA

                                                            )                                                                                                                                                                    Ap o

_7 ,> , Tg *eckh s4, 0 4ATO

122 Texas Utilities Electric Scheme #12 2 November 13, 1992 A Time E119 Std Furnace Avg Ckt Int #1 Ckt Int #2 Ckt Int #3 Ckt Int #4 V (min) (* F) ( F) (volts) (volts) (volts) (volts) 0 68 117 4.266 2.946 5.106 2.864 1 254 172 4.266 2.946 5 106 2.865 2 440 371 4.266 2.947 5.106 2.866 3 627 799 4.266 2.947 5.106 2.866 ' 4 813 1024 4.266 2.947 5.106 2.865 5 1000 1009 4.266 2.947 5.106 2.865 6 1060 961 4.266 2.947 5.106 2.865 7 1120 1044 4.266 2.946 5.106 2.865 8 1180 1298 4.266 2.947 5.106 2.865 9 1240 1424 4.266 2,947 5.106 2.865 10 1300 1410 4.265 2.945 5.105 2.864 11 1327 1459 4.264 2.945 5.105 2.863 12 1346 1301 4.266 2.947 5.106 2.865 13 1364 1291 4.266 2.948 5.106 2.865 14 1380 1391 4.266 2.947 5.106 2.865 15 1395 1528 4.266 2.948 5.106 2.865 16 1410 1582 4.2G6 2.948 5.106 2.865 17 1423 1538 4.264 2.945 5.104 2.862 1B 1436 1494 4.264 2.944 5.104 2.862 19 1448 1471 4.267 2.948 5.107 2.866 20 1459 1435 4.266 2.948 5.107 2.865 , 21 1470 1404 4.266 2.948 5.107 2.865 22 1480 1388 4.263 2.944 5.104 2.862 23 1490 1408 4.264 2.944 5.104 2.862 24 1499 1460 4.266 2.947 5.107 2.865 25 1508 1504 4.266 2.948 5.107 2.865 26 1517 1560 4.267 2.948 5.107 2.865 27 1525 1504 4.264 *2.945 5.105 2.862 28 1533 1548 4.264 2.945 5.105 2.863 29 1541 1576- 4.264 2.945 5.105 2.863 30 1548 1578 4.264 2.945 5.105 2.862 31 1555 1590 4.265 2.945 5.105 2.863 32 1562 1608 4.265- 2.945 5.105 2.863 33 1569 1604 4.265 2.945 5.105 2.863 34 1576 1605 4.265 2.945 5.105 2.863 35 1582 1602 4.266 2.945 5.106 2.863 36 1588 1600 4.266 2.946 5.106 2.863 37 1594 1597 4.266 2.945 5.106 2.864 38 1600 1593 4.269 2.949 5.109 2.866 39 1606 1582 4.269 2.949 5.109 2.867 40 1612 1535 4.266 2.946 5.106 2.863 G f ^ "o r f f n l Og ggo4'

12 Texas Utilities Electric Scheme #12 2 November 13, 1992 Time E119 Std Furnace Avg Ckt int #1 Ckt Int #2 Ckt Int #3 Ckt Int #4 (min) (*F) (*F) (volts) (volts) (volts) (volts) 41 1617 1'574 4.266 2.946 5.107 2.863 42 1622 1597 4.269 2.949 5.108 2.866 43 1627 1614 4.267 2.946 5.107 2.864 44 1633 1629 4.266 2.946 5.107 2.863 45 1638 1647 4.269 2.949 5.109 2.867 46 1642 1718 4.268 2.948 5.108 2.865 47 1647 1656 4.269 2.949 5.109 2.867 48 1652 1624 4.269 2.949 5.109 2.867 49 1656 1656 4.269 2.949 5.109 2.867 50 1661 1674 4.270 2.949 5.109 2.867 51 1665 1683 4.270 2.949 5.109 2.867 52 1669 1684 4.269 2.949 5.109 2.867 53 1674 1682 4.269 2.950 5.109 2.867 54 1678 1679 4.270 2.949 5.109 2.866 55 1682 1675 4.269 2.949 5.109 2.866 56 1686 1680 4.269 2.949 5.109 2.866 57 1690 1695 4.269 2.950 5.109 2.866 56 1693 1700 4.270 2.949 5.109 2.866 59 1697 1694 4.269 2.949 5.109 2.867 60 1701 1685 4.269 2.949 5.109 2.866 61 4.269 2.948 5.108 2.866 62 4.268 2.948 5.108 2.865 63 4.269 2.948 5.108 2.865 64 4.273 2.953 5.113 2.870 65 ' 4.270 2.950 5.111 2.869 66 4.269 2.949 5.110 2.866 67 4.268 2.940 5.109 2.866 68 4.268 2.948 5.109 2.866 69 4.268 2.048 5.108 2.866 70 4.267 2.948 5.108 2.866 71 4.267 2.948 5.108 2.866 72 4.267 2.947 5.107 2.865 MAX lO ,~s O' A 1 t' - k 0 4AT

124 Texas Utilities Electric Scheme #12-2 November 13. 1992 q Power Cable Power Cable control Cable

   ) Time Ckt Int #5 Ckt Int #6 Ckt Int #7             Average        Max       Ave 'a ge

("F) (min) (volts) (volts) (volts) ("F) (' F) 0 5,544 4.704 5.904 1 5.544 4.704 5.904 2 5.545 4.704 5.905 GG GS 67 3 5.545 4.704 5.904 66 68 67 4 5.544 4.704 5.904 67 69 67 5 5.544 4.704 5.904 67 70 67 6 5.544 4.704 5.904 68 71 68 7 5.544 4.704 5.904 69 73 69 8 5.544 4.704 5.904 70 75 70 9 5.544 4.704 5.904 72 78 72 10 5.544 4.702 5.903 73- 60 74 11 5.544 4.702 5.903 75 84 76 12 5.545 4.704 5.904 77 88 79 13 5.545 4.704 5.904 80 93 82 14 5.544 4.704 5.904 82 98 85 15 5.544 4.704 5.904 85 103 89 16 5.545 4.704 5.904 88 108 92 17 5.543 4.702 5,902 91 113 96 4.702 5.902 94 118 100 p) (j, 18 19 5.543 5.546 4.705 5.904 97 123 104 20 5.545 4,705 5.904 100 1c 108 21 5.545 4.705 5.904 104 134- 112 22 5.543 4.702 5.902 107 139 116 23 5.543 4.702 5.902 111 143 119 24 5.544 4.704 5.904 114 146 123 25 5.545 4,705 5.904 118 150 127 26 5.545 4.705 5.904 121 .33 131 27 5.543 4,703 5.903 125 157 135 28 5.543 4.703 5.903 129 160 139 29 5.543 4.704 5.903 133 164 143 30 5.543 4.704 5.903 137 167 147 31 5.543 4,704 5.903 141 170 151 32 5.544 4.704 5.903 145 174 155 33 5.544 4.704 5.903 150 177 160 34 5.544 4.704 5.903 154 181 164 35 5.544 4.705- 5.903 159 184 168 36 5.544 4.705 5.904 163 187 172 37 5.545 4.706 5.904 168 190 176 38 5.547 4.708 5.906 172 194 181 39 5.547 4.708 5.906 176 197 185 l f] 40 5.545 4.706 5.903 181 200 189 v ga to 1 4 T*onago#

12f Texas Utilities Electric Scherne #12-2 November 13, 1992 Power Cable Power Cable Control Cable (p,1 Time Ckt Int #5 Ckt Int #6 Ckt Int #7 Average Max Average (min) (volts) (volts) (volts) ( F) ( F) (*F) 41 5.545 4.706 5.904 186 203 192 42 5.547 4.709 5.906 190 207 196 43 5.545 4.706 5.904 194 210 199 44 5.544 4.706 5.904 198 212 201 45 5.547 4.709 5,906 201 213 204 ) 46 5.546 4,708 5.905 203 213 206 47 5.547 4.709 5.906 205 213 208 48 5.547 4.709 5.906 207 216 209 49 5.547 4.709 5.906 208 220 211 50 5.547 4.709 5.906 209 224 212 51 5.547 4.709 5.906 211 230 213 236 214 52 5.547 4.709 5.906 212 53 5.547 4.709 5.906 213 24? 215 54 5.547 4.709 5.906 214 247 217 55 5.547 4.709 5.906 216 251 218 56 5.547 4.709 5.906 218 256 220 57 5.547 4.709 5.906 220 260 221 58 5.547 4.709 5.905 222 265 224 59 5.547 4.709 5.906 225 269 226 60 5.547 4.709 5.905 227 274 229 61 5.546 4.709 5.905 62 5.545 4.709 5.904 63 5.545 4.709 5.904 64 5.550 4.713 5.910 65 5.548 4.712 5.908 66 5.547 4.710 5.907 67 5.545 4.710 5.906 68 5,545 4.709 5.905 69 5.544 4.709 5.905 70 5.544 4.709 5.905 71 5.544 4.709 5.905 72 5.544 4.709 5.905 MAX 227 274 229 (} p O o A *o A 04ATO

! 126  : Texas- Utilities Electric Schemo #12 2 Nov6mber 13,1992 l. L Control Cable; lnstr Cable Instr. Cable _ Front Tray Front Tray Time Max Average- Max Rail Average Rall Max (min) (*F) (*F)~ .'F). ( (*F) -('F) ., 0 ~ 2- 68 67 6 8~ 67 67 I 3 .69 67 68 67 68-4 63 67 -69 67 68 ' 5 70 67 70 68 .69 6 72 68- 72 69 70 { 7 73 69 74- 70- 72 l L 8 75 70 75- 72- 76 '- 9 77 72 .77 '75 80-t 10 79 74 -81 78 85 !'g 11 82 76 85 82 91 - . 12 80 79 .90 86 97 ' 103 13 '90 81 94' -9 0. i 14 95 85 98' 95 109 i 15 99 88 103 '100

                                                                                                                .                          115 16                          103                           92             108:                    105~                     121 17                          106                           95             112                     110                   ~127 j

^ 18 110 .99 117 115_ 132 3 19 115 103 121 119 136- ! 20 120 107 125 124 -141 l 21 124- ill 129 129- .145 22 128' 115- 133 134 '150 23 132 - 1.18 _136 138 159 24 135 122 -140 143 .168 25 138 126- =143 '148 ;176 26 142: 130 146' 152 -184' 27 146 134- 149 157 -189 28 -150 138 152 161 194:: 29 154 142 155- 166 -198. ] 159 146 '202 30 158-. _170 31 -163 150- '161 1'74- '205~ l

                '32                          167-                         154-            166                      179-                  -208                                   1 33-                          172-                     .159               171-                     184:                 -210 34                        J176 -                         163             174                     -190                  L212 35                           178                         167           '178                       1.94                   '220 182                         171-            182                  .199'                       228-
                .37'                          186                         175.        '186 203'                    234 3 Si                         189                         179             191                      207:                  .237-                                  i
                '3 9 -                        191                      '183-195'                 '210                        237.

_195- 187 200 213 242 O -- a(p~

                                                                               +.           i .,

dk O

Texas Utilities Electric Scheme #12 2 November 13, 1992 l'o I Control Cable Instr. Cable Instr, Cable Front Tray Front Tray

 'p y/ Time            Max       Average            Max Rail Average     Rail Max (min)          (*F)            (' F)         ('F)         ( F)         ('F) 41           202             192          206           216         246 42           207             196          210           220         252 43           212             199          214           224         256 44           217            202           218           227         261 45           220            205           221           230         266 46           224            207           225           233         270 47           228            209           228           235         274 48           232            210           232           239         280 49           236            212           236           242         286 50           240            213           239           246         292 51           244            214           242           249         299 52           248            215           246           253         305 53           252            216           249           257         311 54           256            217           253           261         318 55           259            218           257           265         324 56           263            220           262           269         330 57           266            221           266           273         336 58           269            223           271           278.        342 O     59           273            225           276           283         348

( 60 61 276 227 280 287 353 62 63 64 65 66 67 68 69 70 71 72 MAX 276 227 280 287 353

 *)                                         lo_A 8 %
                                            %J

12 l Texas Utilitics Electric Scheme #12 2 November 13, 1992 l m Rear Tray Roar Tray ( Time Rail Average Rail Max TC # 1 TC # 2 TC # 3 TC # 4 TC # 5 TC # 6 (min) (' F) (*F) ('F) (*F) ( F) ('F) (*F) (*F) 0 1 2 67 67 66 66 66 66 66 66 3 67 67 66 66 66 66 66 66 4 67 68 66 66 66 66 66 66 5 68 70 66 67 66 66 66 66 6 69 73 67 69 67 66 66 66 7 70 77 68 70 68 67 66 66 8 72 82 69 73 69 68 67 67 9 75 88 71 76 71 69 68 67 10 78 96 73 80 73 70 68 68 11 82 103 75 84 75 71 69 69 12 86 110 78 88 77 73 71 70 13 90 117 81 93 80 75 72 71 14 95 124 84 98 83 77 -73 72 15 100 128 87 103 85 79 75 74 16 104 129 91 108 88 82 77 75 17 109 132 95 113 91 84 79 77 18 114 137 99 118 94 87 81 79 y 19 20 119 124 142 146 103 107 123 129 97 101 89 92 84 86 82 84 21 128 150 112 134 104 95 89 87 22 133 154 116 139 107 98 92 90 23 137 158 120 143 111 101 95 92 24 142 161 124 146 114 105 98 96 25 146 165 128 150 117 108 101 99

         -26           151          168       131         153  121   11 T1   105  103 27           156          172       135         157  124   115     108  106 28           161          175       139         160  128   118     112  110 29           166          181       143         164  131   122     116  114 30           171          188       147         167  135   126     121  118 31           176          194       152         170  139   130     126  122 32           181          202       156         174  144   134     131  127 4          33           185          209       161         177  148   139     136  132 34           189          208       166         181  152   143     142  137 35           194          213       170         184  157   148     147  142 36           198.         220       177         187  161   153     153  148 37           201          223       182         190  165   158     158  153 38           205          225       188         194  169 -163      163  159 1

39 209 235 192 197 173 169 168 165

   -      40           214          247       196         200  177   174     174  171 A

0#,0

                                              -           s.,

0 4ATO v + < r

Texas Utilities Electric scheme #12-2 Novembe 13, 1992 '{ Of e Rear Tray Rear Tray ( Time Rail Averago Rail Max TC#1 TC # 2 TC # 3 TC # 4 TC # 5 TC # 6 (min) (*F) (*F) ('F) (*F) ("F) ('F) ( F) (*F) 41 218 248 199 203 182 180 178 177 42 220 245 202 207 186 185 184 183 43 223 252 204 210 190 190 189 189 44 225 258 206 212 193 196 192 194 45 228 264 207 213 197 199 195 197 46 230 270 208 213 201 202 198 201 47 233 276 209 213 205 203 200 203 48 236 281 210 214 209 204 201 205 49 239 287 210 215 213 204 202 206 50 24i 291 210 217 217 205 203 207 51 244 295 210 223 220 205 205 207 52 248 299 210 231 223 206 206 208 53 251 304 211 237 227 206 207 208 54 255 307 213 243 231 207 208 209 55 258 312 ?16 249 235 207 208 209 56 262 316 218 254 239 208 208 209 57 266 320 220 25V 243 209 208 209 58 269 324 223 264 247 211 208 209 59 273 328 227 269 251 212 208 209 60 277 332 230 274 254 213 208 209 ( 61 62 63 64 65 66 67 68 69 70 71 72 MAX 277 332 230 274 254 213 208 209

                                               %)

113C Texas Utilities Electric Scheme #12 2 November 13, 1992 Time TC # 7 TC # 8 TC-# 9 TC # 10 TC # 11 TC # 12 -TC # 13 TC #:14 (min) -('F) (*F) -('F) (*F) -(*F) _(*F) (*F) (*F) 0 1 2 66 66 66 66 66 66 66 67. 3 66 66 66 66 66- 66 67 67 4 66 66 -66 66 66 67' .67~ 67 5 67 66 67- 67 67 68 68 68 6 68 66 67 68 67 68 69 69 7 69 67 68 68 68- 70 70 71 8 70 67 69 70 69 71 72 73 9 71 -68 70 71- -71 73 73 74-10 73 69 71 -72 72 75 75 17 7

    -11         75       -70        73           74         74      -77       78       79 12         76        7,1       74           76         75.      79       80.      82 13         79        72-       76           78         78       82       83       84-14         81        74        78          '80         80'     -84       85       88 16         83        76        80            83-       82       87       88      =90 16-        85'       78        83            86        85       90        92     -94 17          88       80        85            88-       88      -94        95-     9 '7 18          90        82        88           92        91.        97      98     101

() 19 20 93 96 84 87

                                   -90 93
                                                 -95 98 94 97 100
                                                                   -104 102
                                                                           -106-105 108 21          99        90        96         101       100       107      109-     112 22-       102         92      100          105       104       111     =113      116 23        105         95      103          109'      107       115      116      12C 24        108        H9 9     106          112        111      118"     120-     123 25        112       102       110           116       115      122L     124      1271 26        116       105+      114=          120       119      126     -128-     131 2 7 .. 119       109       1181          124       122      131       131     135-28        123      '113'      121           129     -126       134     :135     -139 29       127       116-       126-         133      '130       138      140.   -143i 30       131       120        130-        -137       .134      142-     143-. 147-31-       135      124-       134          141     :138        147      147'     151 32        140       128     -139~       '146
                                                         --14 3 -    151      151    :155' 33-     -144        132-     .143'        .150-       147. 155-. 156    '160-34        14W       137-      148          155     J151        159      160~     164'-

35 153- 142- 153 :160. 156 1164 164- 168 36- 158 148- 158; -164- 160. 167 168 172?

     '37        163      -153     -163          1169        164'     172     '172      175 38        1681      159       167          173        168      176-     176'     179-39       '174-      165       172           17-7      173      180     -179     -1821 40        179       174       179           181-      177     -184:      184-    185'
                                                  'o     1     .-

Q?"  ;

_ - Texas Utilities Electric Scheme- #12 2' November 13, 1992 131 , Time TC # 7- TC # 8 TC # 9 TC # 10 TC # 11 TC # 12 TC # 13 TC # 14 - , (min) (*F) (* F) (*F) (' F) (*F) ("F) (*F) (*F) 1

l. 41 -185 183 -188 187 181 188 190 193 42 190 188 193 192 187 192- 194- 196 43 195 =193 196 197 192 196 198 199 44 200 198 200 200 197 .

199 202- 204 !; 45 204 202 '203 204 202- 204 205 208 46 :206 204 206- 207 205 206 207 211 l 47 207 205 208 209 207 207 209 211 48 208 -206 -209. 210 209 209 210 211- -;

49 208 207 210- '211 211 210- 211 212

, 50 209 207= 211 212- 212 '211 212 -212

'51- 209- -208- 211: 213 ~213 212 213~ 215 l 52 :209- 208 211 J213: 214' -213 214 217 53 200- 209 '212 214 214 214 215 219:

54 210' 209 -212 214 215 215 -215 221 i '55 210 209' 212 -215 216. 216' 216 226 56 210 209 212 216' '217 219 217' 231 57 210' 209 213- = 217 - .217 224 219 236 58 211 209 213 219 218 230 221 242 59 211 209 213 222 218 236-- 225' 247

  -()           60 61 213          209    213         226-          219       240     :229   252 62 63 64 65
               -6F
j. 67 68 69 70 71 72 MAX 213- 209 213' 226- 219- 240 229 252
                                                             ^

pq

                                                        '*off[o#           -

3L 1

                                             - Texas Utilities Electric Schemo #12 2 November 13, 1992                                                                                                                )

Time TC #- 15 TC :# 16 TC - # .17 --TC # TC # 19 - TC # 20 - TC # 21 TC # 22 _ ( mi n) -- (*F) (*F). (*F) ("F) (*F) -(*F) (*F) (* F) 0-l 1 2 67 66. 66_ 66 66 66 66 66 3 67 66 -- 6 6 - 66 66 66 66 67 4 68 GU 67 66 66 66 66 67-i 5 69 66- 67 67 67. 67 67 67.' i 6 70 67 69 67. .67 68 67 68-68 69. '

7 72 .67 70 G B. 68 I

8 '74 68- 71 60 -69 70 68- 70-72 69 71-9 77 69- -73 71 70 10 79- 70: 76- 73- 72 74 70- -72 L 11 82 72_ .78 75 -7 3 - 76- 72 74 12 84 74 80 77 75 79 -73 76 l -1 3 88: 76. 83 79 77 ' 8 2 -- 75- 78-14 91- 78 86 82 80 84- 77- 80

                       - 15 =            -94                81                   89                      84                            82                             87-         80             83 l-                        16                97-              84                   92-                     87-                           841                          -90           83             85-l                         17            100 87                   95                      90                            8 7 '.                         93        -85                                    18            104                  90                   98                      93                             90-                           96          89             91
19. 107 93 102 95 93 100 92 94-20 111 97 -105 98 96 105 95 97 l 21 115- 100 108 101 100 ~108 98 101 L- 22 118 103 111: 104 -103 111 102 104.

l 23 122 106 .114 1061 :107 '114 10G = -108-h 24 126- 109: 117 110 110- 117- 109 111-l' 25 -130 113 121. 114 114- 119 113 115-

- 26 ' 13_4 . 116 12 5 = 117.- 1_18 -123- 117 119 8
27. 138 120 128 121 :L121 . 126 120 123

!- 28' 142 123. 131 125 125l 129~ 124 127

29 146 127- 135 -128- 129 -132 _128 131

' 30- .- 15 0 - 132- 139 .132. 134-- 136 132 136 31- 1154 137 143 -136 L138 -140 137 ,141-32 157 143 -147 140 143 144' 141 1145 + 33 161 :148- 152 .144' 147.- 148 c146- 150 1 34 165- -153' -115 6 L .149 152__ 151" -151- 1155 g i 35- 170= 158 160 153 156- 156- 155 160) l 36 -174 163 _163 158 -161 161 160 165 37- 178 = 168 - 167 '162-- -166 165 165: .169 f!

                       -38               181               174                171                      166-                          170                            169        -170-         173

? 39- 184- 179 -175- __171 175. 174 174. -178

E .

40- 188 184~ 179 -176. 179 178- 178 -183: I- . po A *o, y

                                                                                                                   ' {.

. .e2 1 - ,

                                                                                           .& Oggy ~.                        .

j 1 '

       , .       ,          .,,_-_-m   .

_, , . . _ , , , , . _ - ~ _ . _ , . _ , _ , _ . . - - _ _ , _ . . . . _ . , . . , _ - . . . , . . . ;-, .

13 > Texas Utilities Electric Scheme #12-2 November 13, 1992 , 1 x) Time TC # 15 TC # 16 TC # 17 TC # 18 TC # 19 TC # 20 TC # 21 TC # 22 (min) (*F) (*F) ('F) (=F) ('F) ('F) ('F) ('F) 41 191 186 184 181 133 182 182 186 42 196 190 189 185 188 187 186 190 43 200 193 193 189 191 191 190 193 44 204 196 196 192 195 196 193 196 45 208 198 199 195 198 199 196 198 46 211 201 201 198 201 202 199 200 47 213 202 203 199 203 204 201 202 48 216 204 204 201 205 206 203 204 4 49 220 205 207 203 207 207 205 205 4 50 224 206 209 204 208 208 206 206 51 230 207 212 205 208 208 207 206 52 236 207 215 206 209 209 208 207 53 242 208 218 207 21C 209 208 208 54 247 208 221 208 210 209 208 208 SE 251 210 226 208 211 210 209 208 56 256 213 231 209 213 211 208 209 57 260 215 236 210 215 213 208 211 58 265 215 241 211 217 213 208 212 59 269 216 246 212 220 214 209 212 4 O 60 61 274 220 250 214 223 214 209 213 62 63 64 65 66 67 68 69 70 71 72 MAX 274 220 250 214 223 214 209 213 O A O RATO

_ . . . _ _ _ _ _ . _ .___ __ . - - . _ _ _ _ _ _ . . . . _ _ _ . . _ . ~ . _ _ _ _ _ _ . . _ . _ _ _ _ . . _ _

13c Texas - Utilities Electric Scheme #12 2 Nover eber 13, 1992 Time TC- # 23 TC # 24 TC # 25 TC # 26 TC # 27 TC # 28 TC # 29 TC # 30 _.

(min) (*F) ('F) (*F) --(' F) (' F) (' F) ('F) -(*F)- 0 1 2 67 67 67 67 68 66 66 66 3 67 67 67 G8 68 66 66 67 4 67- 67 67 68 69 66 67 67 5 68 67 68 69 70- 67 67 67 6 69 68 09 71. 71 69 68 -69 7 70 68 70 73 73 70 69 70-8 71 69 72 75 75 72 71 72 9 72 70 7 4 -- 78 77 73 74 75: 10 74 -72 76 80 - 79 75 76 79 11 76 73- 78 82 82 77 80 82 12 78 75 80 84 84 80 83 86 13 80- 77 83 87 87 84 87 90 14 83 8-0 86 90 90 88 91 95 15 85- 82 88 93- 92 93 95 99 16 88 85 91 96 95 97 100 103-17 91 87 94 -99 98 102- 104 106 18 93 90- 98 102 101 107 107 110 19 97 93 101 106 105 112 111 114 20 100 96- 104 109 108 116 115 -118 21 103 100 108 112 111 120 118 -121 22 107 104 111 115 115 125 -121 124-23 110 107 114 119 118 129 125 128 24 1114 111 118 122 122- 133 128 131 25 118 114- 122 126- 125 137 131 134 26 121 -118 126 129 129 140 - 134 137 27 125~ 122 129 133 132 143 137 140 28 129 126 133 136 135 147 141 143 29 -134 130 137 140 139 150 144 147 3 0 -- -138- 134 141 144- 142 --153 148- -150 31 142. -138 -145 148 -147 157 151. -

                                                                                                                                                                               -154 32-               147         143                          149           -152-                       150         160             155              1157 33               1152-        147                          153             156                       155         163             159              -161 34                156         152                          157             160                       159         166             163-               165 35                160         156                          162             165                       163         170             168                168 36                165:        161'                         166             168-                      167         173             172              ,172 37                169-        165                          170             172.                      171       .176.             175                176 38                173 -       170                          174             176                       17S        .180             179.               182 39                177          174                       '178-             180                       179         183             183                189 40-               181          178                         181             184                       183-        187             187;               195 f.y e.
                                                                                                  -1 4

OMAT

      . - - ,               ,        _ . - - .       - - - - _ . _. . . . - _ . . . . . . . .                  _ _ , _ , . . _ . . _ .           . . . . , .    . _ . _ . . ,    . . . . .. , ;   ,_;.a . _

Texas Utilities Electric Scheme #12 2 November 13, 1992 Time TC # 33 TC # 24 TC # 25 TC # 26 TC # 27 TC # 28 TC # 29 TC # 30 (min) (* F) (*F) ( F) ( F) ( F) ( F) (-F) (*F) 41 185 183 185 187 186 191 191 201 42 188 187 188 190 189 194 195 206 43 192 190 192 193 193 196 198 212 44 195 193 195 196 196 198 200 217 45 198 196 198 198 198 201 203 220 46 201 198 200 201 200 203 205 224 47 203 201 202 203 202 204 207 228 4 48 204 202 204 205 203 206 209 232 49 206 204 205 206 205 207 211 236 50 207 205 206 208 206 209 214 240 51 208 206 207 209 206 211 217 244 52 209 207 208 211 207 213 220 248 53 210 207 208 213 208 215 226 252 54 211 207 209 215 208 217 232 256 55 213 208 209 218 209 219 239 259 56 214 208 210 224 211 223 246 263 57 215 210 211 231 213 227 251 266 58 218 211 213 237 215 231 255 269 59 223 212 214 242 220 234 259 273 O 60 61 "ef 212 217 247 226 237 263 276 62 63 64 65 66 67 68 69 70  ; 71 72

MAX- 228 212 217 247 226 237 263 276 !

1 4 O ,

                                              ,~.,,

s.Ogggo/ l 1 l

136-Texas Utilitiec Electric- Scheme - #12-2 November 13,_.1992-j

                        . Time TC # 31 - TC # 32 TC # 33 Tc # 'J4 TC # 35 TC # 36- Tc # 37 TC # 38 (min)                 (*F)                               -(* F)         ("F)                                                                     ("F)-           -- (
  • F) :
((F)- (*F) -(*F);

O 1 2 66 66L 66 66 66 66- 66- 66' 3 66 66 66 68 ~66 ~66 06 66 4 66 66 .66 66 66: 66 66 - 67 5 67 66 -67 67 -66 66 66: 67 6 67 67- 67 67 67 67 67- 67.

                                -7                    68.                             -67            68.                                                                          68             67           67           67               68 8                     69                           -68              69                                                                            69            68           68            68           ;  69 9                     71.                                       7-1                                                                          70            6 9 _-       68            69-             70-10                      73                                  72      ' 7 3 --                                                                        72            69          -69          --7 0             72 11-                - _7 6                                   74-     -75                                                                            -74            71-         :70          -71                74 12                      79                             -78             78:                                                                          77          -72           -72            73-            :76 81            74           74            75           : 78 13                      82                                   81         81 14                       86                                   86        84                                                                          85-         -76            76          -77                81-15                       90-                                  90.       87                                                                          90           '78           78            79-     -        84'-

16 94 95~ 91- 9 4 -- 80 81 82- 87-

                             -17                        98                            100:              95                                                                         97            83           83            85-              90-18               .102.                                 105          -99                                                                       -1001               86:           86           89             .94' 19                  106                                109         103-                                                                          104             .90-           90           92               98.

20 110 113 107- -107 93 93 102. 21- 114 116 112 110' 97 97 100' 106 22 118 119- 116 - 114 102- 101 '104 ~ 110 23 122 123 120 -117 '106 105' :107 114' 24 '125~ 127- 125 121- .110 109 til -119. 25 128' 130 129 .125 114 113- 115- 123 26 132 136. 133_ 129 L118. 117i 120 127-

                             .27-                    135                            :
                                                                                      .141         137                                                                         1133            122-          122           124-             132
                              '28                   139-                               146         141                                                                            136-          126-         127         -128               136
29 142 152 145. .141, 130' 131- 132- '1401
                              -. 3 0                 145                              .156          149-                                                                          145.          135i          136-         137'             145
 -                              31                   149                                 161        153                                                                           150-        ;140.           140:         142              149.

32 L 153 - 164 157: 154 145- 145 146. 155 33= 157 168 161- 158. -151- 150 151 150 3 4 .- -161- 172-- 165- 163- 155 155; 156 . 163, 35 165; 176- 169 167: 159- 159 160 - 16 7-'

36 :169' .180 174 171 1651 1 6 4 --- 165- - 171 37 1731 -184 177- 176- -169: L170.- 169 .176 38' .177 188 1181' 182 173 175  : 17 4 -- - 182 39 --180 101 -184J .188 .>179 181 179 188~

40 183- 195 188 1934 184. 186 :184- 195-f #? ! fig-o: w OkAT

   'l
                          ..       . _ _ . _ _                                  .      _______      .__-____.__._______._.-_______._____.-______-__._m____.___m____._.__._m_m._                         -                                                _m

Texas Utilities Electric Schemo #12 2 November 13, 1992 Time TC # 31 TC # 32 TC # 33 TC # 34 TC # 35 TC # 36 TC # 37 TC # 38 (min) ('F) (*F) ( F) ( F) (' F) ( F) (' F) ('F) 41 187 198 191 197 189 192 189 202 42 100 199 195 200 193 197 194 207 43 194 201 197 202 198 202 198 210 44 197 203 200 205 201 204 202 212 45 199 205 202 207 203 206 204 214 46 201 206 203 209 206 207 206 216 47 203 208 205 211 206 208 208 216 48 206 209 206 212 208 209 210 217 49 208 209 206 212 208 210 211 217 50 210 210 207 213 208 210 212 217 51 212 212 209 213 208 210 212 217 52 213 213 210 215 208 209 211 217 53 213 214 212 215 208 209 211 217 54 213 216 213 215 208 210 211 216 55 213 217 214 216 208 210 211 216 56 214 217 216 216 208 209 211 217 57 219 218 218 217 209 209 211 216 58 226 222 221 219 209 209 211 217 g 59 233 232 225 222 200 208 211 217 60 239 236 229 226 209 208 212 217 Q 61 62 63 64 65 66 67 68 69 70 1

71 72 MAX 239 236 229 226 209 210 212 217

+ J sO kP, o I o ^ i ta es 04ATO J

___.-.~..--m_.3. S - l-

                             ~ Texas Utilities- Electric Scheme #12 2 November 13, 1992 3

4

         ' Time TC # 39. TC # 40 TC # 41- TC # 42 TC # 43 TC # .44 TC # 45 TC #_46                                                    l (min) '       (*F)                ('F)   (*F)                (?F)             ( F)      (*F)-    (* F)   ('F)               '

g 0 . 2 66 67 67 68 67 :67 '67 67 3 67 67 68 68 67 67 67 4 67 67 68 68 67 67 67 67 b 5 67 67 69 69- 68 68 67- 67~ 6 68 68 70 70 70 , 69 68 68' i 7 68 68 70- 70- 71 -71 69 69 - 8 '69 69 72 '/ 2. 73 73 70 7_1

9 71 '71 73 -73 l75 76 _73 73 10 72' 72 75 7.8 79 75 76.

i '11

                          '74                  74    77                   77              80           82     78-    79-j                 12        76                  76    80-                  80              83        "85       81     83 3

13 178 -78 82 83- 86 89 -85 87 14 81 -- 81 86 85 90- 93- 89- l 1 5'- '83 84 89 89- 94 97 93 96= , 16 86 87 9 3'- 92 -98 101 297 101 3.- 17 90 90 97 -95 102- 105 102 106 j' 18 94 94' 100- 99- 106 -109 106 110 j 19 97 98 104 102 :110 113 110- 115 20 101 -102 107 106 --114 =117 115' -120 21 .105 106- 111 109 1171 --12 0 : 119 124 3 22 109 110 115 113- 121 124 -122 128-23 114 114 119 117 - 125- n127: 126 - .132 l: 24 118' 118 123 121 '128 1131 129 L135 p 25 122 122- 127 125- 132- 135 132- -138-26 126- 127 131 129 136 139- 136 142- [ 27- 131 131 135- 132 139 142- =139 146 [z -28 135- 135 138- 136; 142 146- 143 150 l 29 138' 139 142 140 146 150 147 :154 30 -143 143 146 143 150- 154 151 159-i 31 147 148- 150 148 153 .157 156 1163 [ 32: 151 152: 155 152-- -157- 162-- :161 167 ! '33 155-- 159 159 156; 160'- 167- 166~ 172 34 160' 164 5164 1161 -165 171 171- 176

35
'165- =168 171 168 -169 .173 1174 178J 36 169 -173- 175 173. 172 _176' -178 -182:

173' 186'

37; 1177 180. .181 .176 -181. -182 F 38 177 182 185 '186' 180 184 186 189
R 39 182 187- 189 '189- 183 186:- 189- 191 40 186 :189 192 192 186 -189 191 194:

i 0 g*:og

                                                               .< -             y (Y               ? Op Oggy[

13 Texas Uiilitios Electri Scheme #12 2 November 13, 1992 Time TC # 39 TC # 40 TC # 41 TC # 42 TC # 43 TC # 44 TC # 45 TC # 46 (min) (*F) (*F) ('F) ( F) ('F) ( F) ('F) (*F) 41 109 192 195 194 190 193 193 196 42 193 195 198 197 193 197 196 198 43 196 200 201 200 196 201 198 200 44 200 204 204 203 199 204 200 201 45 203 206 205 200 201 207 202 202 46 206 200 209 209 203 210 204 204 47 208 209 210 212 205 213 206 205 48 209 209 212 214 206 216 207 207 49 211 209 213 215 207 219 209 200 50 212 210 215 215 209 222 212 209 51 212 210 215 216 214 225 215 210 52 213 210 217 217 21' 228 218 210 53 212 211 218 217 219 232 222 210 54 213 211 219 217 224 236 230 211 55 213 212 219 217 230 241 237 213 56 213 212 220 217 238 240 243 214 57 213 212 222 217 244 250 248 215 58 214 213 224 217 250 255 253 216 ' 69 214 214 227 218 254 261 258 221 60 215 214 230 218 259 266 264 230 61 62 63 64 65 66 67 68 69 70 71 72 MAX 215 214 230 218 259 266 264 230

                                                                 **D e

. N.,/

14 Texas Utilities Electric Scheme #12 2 November 13, 1992 1 Time TC # 47 TC # 48 TC#49 TC # 50 TC # 51 TC # 52 TC # 5;' TC # 54 (min) ('F) (* F) ('F) ( F) ("F) ('F) ('F) ("F) 4 0 1 2 67 67 67 G7 08 G8 68 68 i 3 67 67 G7 G7 G8 68 68 69 4 67 67 6/ G7 08 GB 69 69 6 67 67 67 G8 G8 G8 69 70 i 6 G8 67 08 68 09 69 70 72 7 GB 68 09 69 70 70 71 73 8 69 09 70 70 71 71 72 75 9 71 70 71 71 73 73 73 77 10 72 72 72 73 75 75 75 79 11 74 74 75 75 77 77 78 82 12 77 76 77 77 79 80 80 84 13 80 79 80 79 G2 82 83 87 14 84 83 84 82 85 85 80 90 i 15 88 87 89 85 88 88 90 93 16 93 90 93 88 91 92 93 97 17 98 94 98 91 94 95 96 100 18 103 99 103 94 97 98 100 103 19 108 103 107 97 101 102 104 107 v 105 100 107 110 20 113 107 112 101

         *21   117       112         116        105      109      109      111    113 22    122       116         120        109      112      113      115    117 23    12G       120         124        113      116      117      119    120 24    131       124         128        117      120      121      122    124 25    135       128         132        121      124      125      12G    128 26    139       132         13G        125      128-     129      130    131 27    143       136         140        129 132      133      134    135 28    148       140         143        134      136      13G      137    138 29    152       144         147        138      140      140      141    142

, 30 156 148 150 143 144 144- 145 14G 31 160 152 154 147 149 149 149 150 32 163 156 158 152 153 153 153 154 33 166 159 162 156 157 158 157 159 . 34 169 163 165 160 161 162 161 163 35 173 167 171 165 166 167 160 167 36 176 171 175 169 171 171 170 171 37 180 175 178 173 175 175 174 174 38 183 179 182 178 179 179 178 178 39 186 183 185 182 182 182 182 182 40 188 186 187 185 186 186 186 187 v o^ ao, 5+o../

                                                 - _ . - . - - ~                              .-- - - - - - - _                                         - _~.-. ._

i Texas Utilities Electne Scheme #12 2 November i3.1992 141 i Time TC # 47 TC # 48 TC # 49 TC#50 TC # 51 TC # 52 TC#53 TC # 54 l (min) (*F) ('F) (*F) ('F) (+F) (' F) (' F) (*F) 1 41 191= 189 191 190 190 190 190 190 l 42 193 191 193 193 193 194 194 193 l

43 195 193 195 196 190 198 197 190 1 44 196 195 198 198 199 200 199 199-45 198 197 200 200 201 202 202 201 l~

46 200 200 202 202 203 204 204 203 47 202 202 204 204 205 206-. 200 205 ] j 48 203 203 205 205 207- 208 208 -207 _ 49- 205 205 207 207 208 209 209 200 j

j. 50 200 206 208 207 208 210 210- 210' '

8 Si 207 207 -208 208 209 210 211 211- l

52 207 207 209 209 210 '211 211 212 53 207 200 210 209 211 211 212 212
54 208 208 210 210 212- 211 212 212 -

j 55 206 208 210 210 213 211 212 213 ' j 56 206 209 211 211 214 211 214 213 57 206 209 211 213- 215 213 216 213.- l '

j. 58 209 210 211 214 216 214 218 213 59 212 210 211 215 220 216 220 214

{ !- 60 216 211 212 21G 225 219 224 215 l 61 l 62 ll 63 1 64 l 65 i 66 ' l 67 l- .68 69 L 70 i 71 i 72-i MAX 216 211- -212 216 225- 219 224:- 215 L , l 5 O g. q 4 0)t45

             .,..-.m_.           _          _          ._ _ . _ _ _ . . _ _ _ _ _ _ _ _ _                              . . _ . _        _
                                                                                                                                          . _, _ _ - .:.=.       ;-mc

Texas Utilities Electric Scheme #12 2 November 13, 1992 3 . Time TC # 55 TC # 56 TC # 57 TC # 58 TC#59 TC # 60 TC # G1 TC # 62 j (min) (*F) (*F) (*F) (' F) ('F) -('F) ('F) (* F) i l- 0 i i 1 l 2 60 67 GG GG GG 66 60 GG i 3 OG 67 67 GG GG 66 GG GG 4 68 07 67 G7 G7 G7 GG 60 $ 5 69 07 67 67 G7 G7 66 GG 6 72 08 09 67 G8 G7 GG GG. - { 7 74 69 70 G8 09 68 67 G7 l 8 75 71 73 69 70- 69 G7 G7 , j 9 77 73 77 70 72 70 68 69' 10 78 70 81 72 74 72 70 70 l{ 11 12 80 82 80 85 85 90 74-78 70 79-73 76 72' 74 72 15 79 77 78

13 84 89 94 81 BP 14 87 94 98 85 85 81 81 81 l 15 91 98 103 89 89 84 85 85-
16 96 103 108 94 94 88 89 89 l 17 100 107 112 98 99 92 94 94 l 18 105 111 117 103 104 96 99 99 l 19 109 115 121 107 109 99- 104 103 j 20- 113 119 125 111- 113 104-- 109 108 f j 21 117 123 129 115 117 107- - 114- 113 .

i 22 121 126 133 119 122 110 118 117- i i 23 124 129 130 123 120 114 123 122 - 24 128 132 140 127 130 119- 127 120 ! 25 132 136 143- 131 134 .122 131 131 . I 26 135 138 146 134 138 -128 '136 136 [ 27 138 141- 149 138 141 131 140 140 ! 28 141 144 152 141- 149 136~ 144 144 4 29 144 -147 155 144 152 .140 148 148 j 30 149 150 158 147 .153 146- 153_ -151' , i 3 1.- 153 153- 161 150- 155 -150 156: 155 ' I 32 156 157 163 154 160 154 100 159 ! 33 158 160 1GG 157 171 158- 165 '163 l [ 162 164 :169 161' .174 -163 169 167 -

35 166 169 '173 165 177 167 173 171

$ 36 169. 172 177 169' 176 172- 176 175 37 -173 175. 179 173 181 -176 .182- 179 . 38 177 179 183 177= 183 179- 186 182~ 39 181 184 180 183 185 183- 189- 180 40 185 188 -192 189 188 188- '193 189 {--- 0 go" fo, o; ; y El ,. f e -. _ :; l 79,> - e 0445

              .;..,_-,.w,,,,,,_.,,,--                        ...-_..,_,.,a..___,_,_...,_.____.,.          -_._.,_...;_,_,____,...,...._._._.~.,
    . .   . .            .     . . - _ - _ ~      _    . - - . _ _ - _ -     _     .    . - - - - .                  _- .      . . . .

143 Texas Utilities Electric Scheme #12 2 November 13, 1992 Timo TC # 55 TC # 56 TC # 57 TC # 58 TC # 59 TC # 60 TC # 61 TC # 62 l (min) ('F) (*F) ('F) (-F) ('F) ( F) ('F) (*F) . 41 189 193 196 193 193 193 196 194 42 194 198 201 197 197 197 199 198 43 198 203 208 201 201 202 202 201 44 201 207 214 204 205 '04 205 203 45 204 209 218 207 207 205 205 204 2 46 205 210 223 208 208 206 207 206 47 207 210 227 209 210 206 208 207 48 209 211 231 208 211 207 209 207 l 49 210 212 236 208 212 208 210 208 50 212 214 239 208 213 209 211 209 51 214 216 242 208 214 210 212 210 52 215 217 246 209 214 211 212 211 53 218 218 249 209 215 212 213 211 54 219 222 253 211 216 213 213 212

55 221 227 256 212 217 214 213 212 1

56 225 233 259 213 217 214 214 213 4 57 229 239 263 216 219 214 214 213 58 234 244 266 220 221 215 214 213 59 238 248 269 224 227 215 215 213 l 4 O 60 61 241 251 272 229 235 216 216 213 j 62 . 63 4 64 4 65 66 67 68 i 69 70 71 72 MAX 241 251 272 229 235 216 216 213 l 1 l O' A 04ATO u .

r. . - _ ,_ __ . _ _ _ _ , , _ . ~ . .. , 0

14 Texas Utilities Electric Scheme #12 2 Novunber 13. 1992 O h Time TC # 63 TC # 64 TC # 65 TC # G6 TC # 68 TC # 69 TC # 70 TC # 71 (min) ('F) (* F) ("F) ('F) ('F) ('F) (*F) (*F) 0 1 2 60 G6 66 G6 67 67 06 66 3 66 66 66 67 G7 G7 66 66 4 60 66 GG 67 G7 G8 60 06 4 5 66 66 67 G7 G8 68 67 67 6 66 07 67 67 69 69 68 09  ; I 7 67 G7 68 08 70 70 69 70 4 8 67 08 68 69 71 71 72 73 1 9 68 69 70 70 73 73 75 75 l 10 69 70 71 71 74 75 79 79 11 70 72 73 73 77 77 82 82  : 12 71 74 74 75 79 80 86 86  ! l 13 73 76 77 77 82 82 90 89 I 14 75 78 79 80 85 85 94 93 15 78 81 82 82 88 88 97 97 16 81 84 85 85 91 91 100 100 17 84 88 88 88 94 93 104 104

- 18 87 91 92 91 98 96 107 108 19 91 94 95 95 101 100 110 113 20 95 98 99 99 105 103 115 117 21 98 102 103 103 109 106 118 121 22 102 100 107 100 113 110 122 124 1

23 106 110 111 111 117 114 127 128 24 110 114 115 115 121 118 132 132 25 114 118 119 119 125 122 13G 130 26 119 122 123 124 129 126 140 140 , 27 123 126 128 128 133 130 144 143 28 127 131 133 132 137 134 149 147 29 131 136 13'1 137 141 138 153 150 30 135 140 142 141 145 142 157 155 31 140 145 147 146 149 146 161 158 32 144 149 151 150 153 150 165 162 33 148 155 155 156 158 155 169 166

34 153 159 160 1G1 1G2 159 173 .171 35 158 163 164 165 166 164 178 175 38 162 167 108 169 169 168 182 179 37 167 171 171 173 173 172 186 183 38 171 175 175 177 177 176 191 188 39 176 180 179 181 181 180 195 192 g 40 102 184 182 185 186 185 200 197 V Sb *of
                                              '%wof

_ . . . _ - - . ~ . . . -. . . _ _ - . _ . - - 14: Texas Utilities Electric Scheme #12 2 November 13, 1992 i ~ Time TC # 63 TC # 64 TC # 65 TC # 66 TC # 68 TC a 69 TC # 70 TC # 71 ) (min) ('F) (* F) ( F) ( F) (*F) ( F) ("F) ("F) i 206 202 ~ 41 186 189 188 191 189 191 42 190 195 192 196 192 193 210 206 - 43 194 200 196 202 194 194 214 210 44 198 205 201 206 197 196 218 213 45 202 209 205 208 199 199 221 217 46 205 210 208 211 201 202 225 220  ; 47 207 211 211 212 203 206 228 224 i 48 209 212 213 211 206 208 232 227 l l 49 210 212 215 211 207 210 236 231

50 211 213 214 210 209 211 239 234 51 212 213 215 210 211 212 242 237 i 52 212 213 214 210 212 213 246 240 53 212 213 214 210 213 213 249 243 54 212 213 214 211 215 214 253 247 I 55 212 213 214 211 216 215 257 252 56 211 213 214 212 217 215 262 257 57 210 213 215 212 218 215 266 261 58 210 214 215 213 220 216 271 266 59 210 215 216 214 222 216 276 270 y 60 210 215 216 214 225 218 280 275 4 61 62 4

63 64 65 66

67 68 69

.. 70 71 72 MAX 212 215 216 214 225 218 280 275 oA D , e% s.%Ato/

146 Texas Utilities Electric Scheme #12 2 November 13, 1992 Time TC # 72 TC # 73 TC # 74 TC # 75 TC # 76 TC # 77 TC # 78 TC # 79 (min) ('F) (*F) (*F) (*F) (*F) ('F) (*F) ('F) 0 1 2' 66- 66 66 67 66 67 67 67 3 66 66 66 67 66= 67 67 67 4 66 66 66 67 66 07 67 67 6 67 66 66 67 67 68 68 67 6 07 67 67 68 67 68- 68 68 7 -68 68 67 70 68 69 69 =69 8 69 69 68 71 69 70 71 69 - 9 71 7 0 -- 7 3 -- 71 72 73 71 10 72 72 70 75 73 73 75 72 11 74 74 '72 77- 76 75 77 -- 7 4 12 77 _76 74 79 79: '78 80= 77 13- 79 79 76 82 82 80 82 79 14 82 82 79- 85 86 83 85 82 is 85 86 82- 88 90 86 88 84 16 88 89 86- 91 94 '89 91 87 17 93 93 89- 95 98 92 94 90 18 97 97 93 98 - 102 95 98 94 0 19 20 101 105 101 105 97 101 102 105 106 110 103 99' 102

                                                                                          .105-97 101 21      109          109        105        109         114            107        109-       104.

22 112 113 109 113 118 110 113 108-23 116 116 113 117 '121 114 117 111~ 24 120 120 117 121 125 118 121 -115 25 123 123 120 125 129 122 ~124 119

         '26-     127          127        125        129          133              i26      128       123 27     131          131        128        133          137             130       132       126 28     13 5 ~       135       '132        137          141             134'      136       130 29     139          139        136        142-        -145.            1 39      141       134 30     143          144         141        146         149             143       145-      138
         =31      148          150         145        150        -154          - 148        149        142 32     153          156         149        154         158              153      154-       147-33      158         162         154.       159         162              157      158        151
          '34      164         167-        159      -163          166-             161-     162        155 35-     169          172-       164        167-        170          -166 166-       160 36'     172          176-        169     L171          174              170      170        164 37      176-         179-     '174        -175.-        177              173     173        168-38      180        --18 2 -      178       179-         181         :177         177~       172 39-     184          185         182       183.         184'             181-     180-      176
          '40     .188          190        .187       186        -L 18 8 '        .185     '184        181 O                                           _a f;*?y?O, s

i: T i

                                                     ~i :      =        , _ .

0 8tATO

147 Texas Utilities Electric Scheme #12 2 November 13, 1992 i Time TC # 72 TC # 73 TC # 74 TC # 75 TC # 76 TC # 77 TC #78 TC # 79 (min) (*F) ('F) (=F) ( F) ('F) (' F) ( F) (*F)

41 193 192 191 189 193 188 188 185 42 198 195 194 193 196 192 191 189 43 202 19G 197 196 199 195 194 193 44 205 198 200 199 202 197 197 195 45 209 200 202 202 204 200 199 198 4

46 212 202 203 203 205 202 201 200 47 214 204 205 204 206 203 203 202

!           48       215            206    205          200     207          205          204              204 49       215            207     206         207     208          206          205              205 50       215            208     200         208     209          207          206              206 51       210            209     207         209     209          207          207              207 52       217            210     207         209     209          208          208              207 53       220            210     208         209     210          208          209              207 1            54       223            212     209         210     210          209          209              '07 55       226            214     210         210     210          210          210              t07 56       228            215     212         211     211          211          210              207 57        231           217     214         212     211          211          211              207 l

58 234 219 216 212 212 212 212 207 59 238 223 218 213 212 212 213 207 O 60 61 241 229 221 214 213 213 16 208 62 63 64 65

66 67 68 4

69 4 70 71 72 MAX 241 229 221 214 213 213 216 208 1

                                                   %)

10 ) Texas Utilities Electric Scheme #12 2 November 13, 1992 h , 4 (Q Time TC # 80 TC # 81 TC # 82 TC # 83 TC # 84 TC # 85 TC # 86 TC#87 ("F) ('F) (*F)

                                                                                      )

, (min) (*F) (* F) ('F) ( F) (~F) ) 0 1 2 67 08 67 67 G7 G7 67 67 j 3 67 68 67 67 G7 07 67 G7 4 G8 69 67 07 G7 G7 07 67 5 68 70 08 07 G7 G7 67 G7 4 6 69 71 70 69 G8 G7 06 G8 7 70 73 72 70 09 G8 69 G8 1 8 71 74 7G 73 72 69 71 69 9 72 76 80 77 74 70 73 70 10 74 79 85 81 78 72 75 72 11 76 81 91 80 82 74 78 74 12 78 83 97 92 87 7G 81 76 13 81 86 103 98 92 79 84 79 14 83 89 109 104 97 83 88 83 < 15 86 92 115 111 104 87 92 87 16 89 96 121 117 110 91 96 91 17 92 99 127 123 116 96 100 96 r"N 18 96 102 132 128 122 101 104 101 h 19 20 99 103 106 109 136 141 133 138 129 135 106 111 108 113 106 til 2 21 106 112 145 142 142 116 117 116 22 110 115 148 146 150 121 122 120 23 113 118 153 151 159 126 127 125 24 117 122 150 155 168 131 131 129 25 121 125 160 160 176 135 136 133 26 124 128 105 .04 184 140 140 137 27 128 132 170 108 189 144 144 141 28 131 136 170 172 194 148 148 145 29 130 139 182 176 198 152 153 149 30 140 142 186 183 202 156 155 153 31 144 147 191 190 205 159 158 158 32 148 151 198 196 208 164 163 162 33 152 155 204 203 210 169 171 167 34 156 159 210 207 212 174 177 174 35 160 163 215 214 214 178 181 180 36 165 168 220 219 217 182 187 180 37 169 172 225 225 219 185 102 190 38 173 176 230 232 221 189 197 194 39 179 181 235 237 222 193 200 197 (m, 40 183 184 240 242 221 197 202 202 V O A *o, a nno l

141 Texas Utilities Electuc Scheme #12 2 November 13. 1992 Time TC # 80 TC # 81 TC # 82 TC 6 83 TC # 84 TC # 85 TC # 86 TC # 87 (min) ('F) ('F) ('F) ( F) ('F) (-F) ('F) (*F) 41 187 188 244 246 218 201 205 206 42 190 191 249 252 219 206 208 212 43 194 194 253 256 221 210 211 215 44 197 197 257 261 222 212 212 217 45 200 199 263 266 224 213 214 219  ; 4 46 202 202 268 270 228 215 217 220 l 47 203 204 273 274 231 - 214 220 222 48 205 205 279 280 235 215 223 223 49 206 207 286 286 240 216 226 224 50 207 208 291 292 242 217 228 223 51 208 209 298 299 246 219 231 222 j 52 208 210 303 305 251 222 233 222 53 208 211 309 311 255 222 236 222 54 209 211 314 318 260 225 238 223 j 55 209 211 319 324 265 227 240 224 56 209 212 325 330 271 230 243 225 57 209 212 332 336 276 232 247 227 I ' 236 250 229 58 210 212 338 342 281

                      ~,    59       211       213         343           348  287     239                  254  233 2

60 212 213 349 353 293 241 258 236 61 62 63 64 65 66 67 68 69 70 71 72 MAX 212 213 349 353 293 241 258 236 pO" # 0/ O Ogggod

_ . . . . . .__._._.._ _ _ ___ _ _ ._ __.__ ___.____ _..__ .-m.__,_ _ 1: , Texas Utilities Electric Scheme #12 2 November 13, 1992 a . l l 4 Time TC # 88 TC # 89 TC # 90 TC # 91 TC # 92 TC # 93 TC # 94 TC # 95 j (min) ('F) (*F) ('F) (*F) (' F) ('F) ( F) (* F) 4 j 0 I I 2 67 67 67 67 67 67 66 66 .{ i 3 68 67 67 67 67 68- 67- 66 ! 4 68 67 67- 67 67 68 68 -67 5 68 68- 68 67 68 69 70 67 6 69 69 69 68 69 70 73 68 f 77 69

7 ~ 71 72 70 68 70 72 8 73 75 73 69 72 75 82 71

! 9 76 79 76 70 74 78- 88 74 I  : 10 79- -83 80 71- 77 82 96 77 l' 11 83 88 -85 73- 80- 87 103 81  ! ! -12 87 93 90- 75 84 92 110 86 ! 13 ~91- 98 95 .78 87 97, 117 91 l' 14 96- 103 100 80 -91 102- 124 97 ! 15 102 --108 105 83 96 108- 128 103 l 16 109- 113 111 87 100 113- '129 109 * ! 17 114 118 116 90 104' 118- 132 115 , l 18 119 123 121 95 108 123 137 120 { 19 124 127 125 99 113 127 142 126-20 128 132 129 103- 117 .132 146 131 , 21 133 -136 133 108 121 137 150 135

22 137- 140 136- 113 126 142 154 140 3 23 .142 145 140 ~118 130 -146, 158 145
- 24 146 150 144 123 135 149' 161 149 I 25 151. 155 148 128 139 153 165 154 [
26 156' 160 151 133 _143 '156 168- 158  :

! 27 161 163 --156 -138 - 14'8 ' 160: 172 165  ! l- 28 166 168 160 142 152 163 -175- 173 I 29 173- 172 166 147-- 156 166- 179 181 I 30 180-- 177 170- 151 160- 170 182- 188 31 183 183 175 155 164 172 185' -194 !' '32 188- .188. 179 :159 168 --175 189- 199- ' 33 199 194 183 163 172-- 178; -192 203 ' 210 200 187 11 6'7 - -176 1811 197 208 -, ! - 35: 220 205 :191 :171. 179 1184- 202 211 l 36- 228 211~ 195 -175 183 (187 --207 213 . ! 37 234' 215 199 179- ~ 187L -190 212 211-38 237 -221: 1202 183: :191 -193 217 212 i 39- 226: 225. 205 187. 195 :196 225 215 I 40 225 231- 207 191 199 .199 -231 220

                                                                                  .Q e-T i._ '

4OhhY --

  ~ . .        ,          , a . . ..                   - . - . - . . - - .          ...-.._-:--.-a.                   . - .:- . . . . . - x . :.z

151 . Texas Utilities Electric Scheme #12 2 November 13, 1992 , Time TC # 88 TC # 89 TC # 90 TC A 91 TC # 92 TC # 93 TC # 94 TC # 95 { (min) ('F) ('F) ( F) ( F) ('F) ('F) ('F) (*F) ! 41 228 236 210 195 203 204 237 222 42 231 241 213 199 207 207 245 224 4 43 233 247 216 202 211 212 252 227 , 44 233 251 218 205 215 216 258 229 45 233 256 222 207 219 219 264 233 46 232 262 226 208 222 223 270 236 47 231 267 230 209 226 227 276 239 48 232 274 234 210 230 230 281 244 49 235 279 238 211 234 234 287 248 50 2 ? ft 285 243 212 238 238 291 251 51 241 291 247 214 242 242 295 256 52 244 297 251 216 246 246 299 261

53 248 303 256 218 250 251 304 266 54 251 309 260 220 254 255 307 270 i 55 254 316 265 222 258 260 312 275 5

56 259 323 270 225 262 265 316 279 4 57 264 327 275 228 266 270 320 284 58 269 333 280 231 270 275 324 288 i p 59 274 339 285 234 274 281 328 294 ( 60 280 346 290 238 278 285 332 299 61 62 63 64 65 t 66 , 67 68 69 70 l 71 72 5 MAX 280 346 290 238 278 285 332 299 D \ (d  ? 40AA

                                                                                                                                           \
            .             ~.._ ___                        _ _     _   ._.      . . . . _ . __
152 Texas Utilities Electric Scheme #12 2 November 13, 1992 Time TC # 96 TC # 97 TC # 98 TC # 99 TC # 100 TC # 101 TC # 102 (min) (* F) ('F) (
F) ( F) ('F) ('F) (*F) 0 1

, 2 66 66 67 67 66 66 67 t 3 66 67 67 67 66 67 67  ! 4 66 67 67 68 66 67 67 1 5 67 67 67 68 67 68 67 6 67 68 68 69 68 69 08 7 67 69 68 71 69 71 69  ; 8 68 71 69 73 71 74 71 9 69 74 71 76 74 76 73 10 70 77 73 79 77 80 77 11 72 80 75 83 82 84 81 12 74 84 78 87 87 88 86 13 77 88 81 90 93 93 91 , 14 80 92 84 94 99 99 96 15 84 96 89 98 104 104 102

16 88 101 93 102 110 110 109 17 92 106 98 105 116 115 115 18 97 111 103 109 121 121 121

() 19 20 103 109 115 119 108 113 113 117 126 130 126 130 127 132 21 114 123 118 121 135 136 137 22 120 127 123 125 138 140 141 23 126 132 129 129 142 144 146 ! 24 132 137 135 134 146 150 150 25 138 141 142 138 149 155 154 26 144 146 149 143 154 160 158 27 149 151 156 147 158 167 162 28 154 156 160 159 163 172 166 29 159 163 163 168 166 177 170 30 164 169 166 180 170 184 173 31 168 176 169 188 173- 188 177 32 173 184 172 202 177 192 180 33 177 193 178 209 180 196 183 34 182 203 183 206 185 199 186 35 187 213 187 208 188 201 189 36 192 220 193 215 193 204 192 37 197 223 198 217 197 206 196 38 201 223 203 225 200 208 199 39 205 235 208 227 204 212 202 7- 40 207 247 216 229 210 213 205 ( o, t.0A "of A 04ATO

153 Texas Utilities Electric Scheme #12 2 November 13, 1992 Time TC # 96 TC # 97 TC # 98 TC # 90 TC # 100 TC # 101 TC # 102 (min) ('F) (*F) ('F) ( F) ('F) (=F) (~F) 41 209 248 220 231 218 217 208 42 209 243 221 233 222 219 212 43 208 243 224 236 226 222 215 44 208 243 225 241 229 225 217 45 210 242 223 242 233 228 220 46 211 245 225 240 237 231 223 47 211 248 225 243 241 235 225 48 213 250 226 243 245 239 228 49 212 253 226 246 249 245 231 50 211 255 220 250 253 249 235 51 212 258 226 253 258 254 239 52 212 200 227 258 263 259 243 53 212 265 227 202 207 204 247 54 214 207 227 2G0 272 209 250 55 215 271 229 2G9 276 274 254 56 217 274 231 273 281 280 258 57 2*7 278 233 276 285 285 262 58 218 281 23G 280 289 291 260 rs 59 220 284 238 284 294 246 270 60 221 288 241 288 298 302 274 61 62 63 64 65 66 S7 68 69 70 71 72 MAX 221 288 241 288 298 302 274

                                                $*           %g

(,/

I 4= !- Teras Utilities Electric Scheme #12 2 November 13. 1992 .L D . j 4 2 Time TC # 103 TC # 104 TC

  • 105 Ambient Furnaco # 1 Furnace # 2 i j (min) ('F) -('F) ("F) (*F) (' F) (*F) 7 i 0 G7 66 07 l 1 67 103 129  ;

! 2 67 67 67 GB 193 511 j 3 67 67 67 G8 455 1039

4 07 08 68 69~ 739 1119 f l 5 -67 -68 68 G9 800 1057-  !

[ 6 67 70 69 69 799 985 i 7 68 71 70 00 847 1074 > l 8 69 .73 73 69 1030 -1352 9 70 70 -75 G8 1196 1443 l 1 10 71 79 70 GB 1227 1453 11 -73 82 83 69- 1193 1404- } i 12 75 88 08 1143 1341 13 '77 90 94 69 1134 1315-l

  • i 14- 80 93 101 68 1234- 1387 i

15 83 97 108 69 1307 1512 i !' 16 86 102 115 09. 1432 1568 i 17 90 106 120 69 1415' O , 18 94 110 125 69 1374 0 () 19 20 102 98 115 119

                                                                                                           '131 135 G9-69-1331 1294 1507 1477 1                                        21                          107                           123        140          G8-             1265            11442                                       :

1 22 111 127 144 69 1260- 0 ! 23 116 132 149. 68 '1277 0 I- 24 121- 136 153 68 1317 1454- [ 25 126 140- 157 69 1361 1492 ! 26 131 143 1G0 G8 1412 1535-

                                       -27                          136                           147        163-         09'             1462                   0 28                         141                           151        166          68-             1504                   0 29                         146                         -155         109          69              1532                   0 i                                         30                         151                            159       171          69              1550~                  0 69

. 31 155 163 173 ~1563 0 4 32- 160 -167 175 H6 9 1573' 0 i 33- 164- 172 178- 69 1578 0

-- 34- 169 176
'180 _6 9: 1578 .0 35 173 -180 184 69 1576 0-  :

36 177 185 187- 69- . 1576- :0: 3 71 181. 188. 190- 69 1572 O' jy 38- 185 192-- 193 69 1567-: 0-39 189'- :197- -195- 169- -.1564

                                                                                                                                                           -1536_                                    :!
h. 1 '40 192 -201 --198- 69 - 15 G 1 : 0 J q S_.'

Ogggo .  ; i-

    , - - , - :-                                   .               . :,                            , - . ,    ~     ,          ..w.,..              . , ,     --,...:..- .. . . - , , , - . -

155 Texas Utilities Electric Schemo #12 2 November 13, 1992 Time TC # 103 TC # 104 TC # 105 Ambient Furnaco # 1 Fe .e#2 (mln) (*F) ('F) ( F) ( F) ( F) ( F) 41 195 205 201 G9 1501 0 42 198 209 203 G8 1568 0 43 200 213 206 69 1580 0 44 203 217 207 69 1591 0 45 205 221 209 69 1602 1G96 46 207 225 211 69 1612 2264 47 208 229 213 09 1018 0 48 210 233 215 09 1625 1712 49 211 238 217 09 1631 1715 50 212 242 219 09 1038 1720 r 51 214 246 222 69 1642 1725 52 216 250 225 69 1642 1729 53 218 255 229 09 1640 1726 54 220 259 233 69 1636 1722 55 222 2E3 238 69 1632 1718 56 224 268 243 G8 1630 1719 57 227 273 248 G8 1649 1727 58 229 278 253 68 1655 1735 59 232 283 258 68 1650 1733 () 60 61 235 288 203 65 1644 1727 62 63 64 65 66 67 68 69 70 71 72 i MAX 235 288 2G3 1 [ (j} OAP, o l onato 4 l

Texas Utilities Electric _ Schomo #12 2 November 13._1992 15G Time Furnace # 3 Furnace # 4 Furnaco # 5 Furnace # 6 Furnace # 7 (min) (*F) (*F) PF) ('F) PF) 0 66- 66 579 66 64 1 145 151 603 105 157 , 2 621 400 300 303 420 3 1242 986 672 785 886 4 1215 1092 1388 1053 1003 5 1081 1027 1492 1032 953 6 989 959 1482 969- 904 7 1131 1001 1532 1040 1021 8 1543 1335 1739 1302 1297 9 1575 1464 1866 1436 1418

      -10       1464                   0        1888        1428          1365 11-      1351            2358       -- 1883          1391          1279 12       1263            1275            1906        1330           1192-13       1269                   0        1904        1294          1157 14       1444                   0        1990        1372           1252 15       1615                   0       -2099        1516           1398 16       1640                   0       -2146        1554           1454 17       1547                   0        2078        1514           1409 18       1483                   0        2073        1471           1348 19                                       2178        1433           1289

([ 20 1434 1394 0 0 W170 1396 1238 21 1359 0 2165 1358 1193 22 1365 0 2003 1342 1181 23 1389 0 2130 1347 1199 24 1442 0 2243 1378 1244 25 1507 'O 2227 1423 1306 26 -1567 0 2305 1478 1360 27 1609 0 0 1524 1414 28 1644 0 0 1563 1468 29 1669- 0 0 1589 1502 30 0 0- -0 1603 1522 31 1684 1483 0 1616 :1535' 32 1687 1563 0 .1625 -1547' 33 0 1597 0 1625: 1553 34 0 1612 0- 1626' '1552'- 35 0 1614- 0- 1620- 1549-36 0 1614 0- 1620 1547 37- O. 1611 0- 1613 1547J 38 0 1609 0 :1607 1545 39 0 1605 0 1602' 1543' 40 1183' 1601; O 1601 1538 O gg 6 p 1

                                                                       - _ _ _ . - -          - --        _. _ _                            _ ..m            ~ . _ _ _ _. _

J Texas Utilitios Electric Scheme #12 2 November 13, 1992 1 ,

,                                                                                                                                                                                     l 4

Time Furnace # 3 Furnace # 4 Furnace # 5 Furnace # 6 Furnace # 7 i (min) ('F) (' F) (*F) (*F) (*F) I , ! 41 1494 1604 0 1601 1537 l j 42 1607 1618 0 1610 1551 i j 43 1653 1636 0 - 1624 1565 44 1679 1650 0 1640 1582 } 45 1693 1663 0 1651 1596 i 46 1703 1671 0 1657- 1605 l- 47- 1709- 1675 -0 1661 1617_ l 48 1715 1681 -1227 1669 - 1623 i i 49 1719 1690 1486 1681 1626 1 j 50 1724 1695 1614 1687 1633 j 51 - 1726 1695 '1673- 1689 1640 , ! 52 1723 1690- 1696  : 1684 1641 l 53 1722 1687 1706 1680 1638- ! - 54 - 1714- 1682 1710 1675 1632 { 55 1713- 1678. -1707 1671 1626 ] 56 - 1719 1690 1709 1681 1631 57 1733 1710 1724 1698 1648  ; l

58 1737' 1713 1728 1699 1654 j 59 1729 1703 1723 1688 1649 60 1716 1683- 1718 1676' 1647 -$

! 61

l. 62 l 63

! 64 l-_ 65 l i- 66 i 67 , 68 j 69 i -. . 70 71 72. i -; MAX , u 3

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OkAT O

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Texas Utilitios Electric Scheme #12 2 November 13, 1992 15l Time Furnace # 8 Furnace # 9 Furnace # 10 - i (min) ('F) (+F) (*F) 1 0 66 GS 66 j 1 110 97 118 2 301 206 399 i 3 659 433 840 4 900 638 1091 6 891 670 1075

l 6 852 671 1003 4 7 937 757 1039 l 8 1167 968 1251
9 1288 1130 1421
;        10         1267            1123            1478
11 1211 1069 1447 12 1152 1008 1396 l 13 1165 1021 1357 l 14 1276 1150 1415 15- 1382 1321 1542 3

16 . 1446 1366 1633 l 17 -1408- 1315= 1618 ! 18 1372 1265 1565 i 19 1339 1210 1518 20 1309 1160 1478 21 1289 1124 1437 22 1311 1140 1413-l 23 1339 1171 1411 24 1387 1228 1443 ! 26 1435 1293 1493

26 1487 1348 1548
27. 1535 1389 1598

' 28 1576 1435' 1645 29 1602 1469 1671 i 30 1617 1491 1687 31 1635 1506 1699

j. 32 1642- 1518 1706
        .33         1644            1523             1708-34         1642           ~1522             1703-f-        35         1637            1519             1698 36         1636           -1517             1694

$ 37 - 1630 1516- 1688 l 38 - 1628- 1515 1681

        .39         1622:          -1512             1673-p    40         1619            1510             1669 lu                                             por ,,4 p -

ct

                                             'Aq ..i 8
                                                         &n --

Texas Utilities Electric Scheme #12 2 November 13, 1992 159 Time Furnace # 8 Furnace # 9 Furnace # 10 (rnin) ('F) (*F) ('F) 41 1618 1513 1666 42 1627 1524 1674. 43 1634 1536 1686 44 1644 1548 1699 g' 45 1654 1560 1709 46 1662 1570 1716' 47 1667 1580 1719 48 1672 1588 1726 49 1680 1594 1736 50 1687 1600 1743 51 1690- 1604 1743 52 1688 1604 1739 53 1688 1601 1736 54 1687 1597 1732 55 1681 1593 1729 56' 1684 1602 1731 57 1697. 1618 1746 58 1702 .1622 1754 59 1698 1617 1747 () 60 61 1695 1610 1734 62 63 64 65

                   -66 67 68 69 70 71 72-
                 . MAX
                                                        **?O
                                                     .(; e     ,

t + f

i i lleport No.12340-94307h Decemler 10,1992 ]C( j Texas Utilities Electric APPENDICES i l i 4 O i i i i i i 2 i j i i  ! 1 i ! Appendix H 1 } QUALITY ASSURANCE i 1 E 1 1 1 (Oggtbi-/0 n.,,, ...-...n,,,..,.w-g, ,-.,m-ne.,.,,

               ~--             ,, -     - - - . - - - - . - -                     - , . - . - , - . , , ,   ,,-r,-,.,,, ..,--,.-n.,-7,,., , , ,

Report No. 12340-943G7h December 10,1992 1b1 , Texas Utilities Electric APPENDICES O V Quality Assurance Statement Omega Point Laboratories, Inc. is an independent, wholly owned company incorporated in the state of Texas, devoted to engineering, inspection, quality assurance and testing of building materials, products and assemblies. The company has developed and implemented a Quality Assurance Program designed to provide its clients with a planned procedure of order and document processing for inspection and testing services it provides to assure conformity to requirements, codes, standards and specincations. The Program is designed to meet the intent of ANSI 45.2 Quality Assurance Program Requirements for Nuclear Power Plants, and complies with the requirements of the ASME Code, SPPE, Military Standards and other less stringent programs. It is the Laboratory's intention to adhere strictly to this Program, to assure that the services offered to its clients remains of the highest quality and accuracy possible. The overall responsibility of the supervision, operation and coordination of this Quality Assurance Program is that of the Quality Assurance Manager, a person not involved with the performance of the inspection or testing services, and who is under the full time employ of the Laboratory. This individual is responsible for implementing and enforcing all procedures presented in the Quality Assurance O V Manual and the Procedures Manual. All personnel involved with activities which fall under the scope of this Program are required to cooperate with the letter and intent of this Program. All QA Surveillance documents remain on file at the Laboratory, and are available for inspection by authorized personnel in the performance of an on-site QA Audit. All materials, services and supplies used herein were obtained with appropriate QA Certincations of Compliance, which may be found in the following pages. O h OAA

                                                &O 1
                                                %d

Report No.1?.34494307h December 10,19921 C 2 Texas Utilities Electric APPENDICES O 'f i O Acceptability Documentation l A

                                                    %,po,.A.

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1

10: O ACCEPTABILITY DOCUMENTATION SCIIEME # 12 2: PROJECTNO.Si367II The following rJgnatures attest to the review and acceptance of each attribute listed regarding the above noted test article: I. CABLE TRAY / CONDUrr ASSEMBLY O Odiegr(Pointp oratories,Inc. 9hcr/ea Da(e

                         @i m M           "

M8 Date

                                                                              'l Z TU Electric fPSES)

II. ELECTRICAL CABLE INSTALLATION Gine(a M i Laborateries, Inc. ghohn Date

                         <32     ss                                 9-3o-92 IU Electhe(CPSRS)                               Date III. THEILMOCOUPLE INSTALLATION Ome(a Poi        boratories, Inc.

Joh/9x Date '

                           <.9.-   f                                 Ia -I~9 }

TU Ele'etrid (CPSEST Date

                                                        %h/
              . Ace:ptability Documsntation                                                                            Project 9436711
                                                                                                                                                             ~

1Gtj Scheme #12 2 Page 2 cf 2 O IV. FIRE PROTECTIONBARRIER

                     -f                                                                                  /0lC/91 Dmegiii Point                      boratories, Inc.                                      Date '
                                                #                                                        /B-C-9 2 TU EI5ctridCPSEST                                                                        Date V.                  FINAL PRE BURNINSPECTION Omeghoi aboraton%, Inc.
                                                                                                         /I f /3/1   '

L Date' q ( A- 4 //~/3-97. V TUTJectr)'c (CPSE$) Date 4 o e. 4ATO __ _ _ _ _ . . . _ _ . _ __. .- - _ - . _ . . - ~ . . - _ ,

Decemler 10,1992 105 Iteport No. 12340 94307h 4 Texas Utilities Electric APPENDICES

O 1

4 4 i i i O Event Log h 9 4 1 d O - OA A yn ~e

                                        ,l ,n-           .

et( t,0 4AT ,, r

10 0 EVENT LCG PROJECT NO. 94367 TU ELECTRIC O OMEGA POINT LABORATORIES, INC. 6868 Alamo Downs Parkway San Antonio, Texas 78238 1-800-966-5253 f O

 ^                                                                                                                                                          ~

1G7

            /                                                                   EVENT LOG                                                                      3 PROJECT NO. 94367 W                                                                     TU ELECTRIC i

NOTE: This Log is to be used to document the date and item for each step during the completion of the above-referenced test project. The assigned project numbers for each of the eleven test I assemblies are: Scheme #91: 94367 A Scheme #113: 94367 G i Scheme #9-2: 94367 B Scheme #12-2: 94367 H i Scheme #10-1: 94367C Scheme #12-1: 94367I Scheme #10-2: 94367 D Scheme #9-3: 94537 J

     ,                  Scheme #:11 1: 94367 E                                                                  =Sch:me #134: 043G7 K- on, l                   Scheme #:11-2: 94367 F                                                             - -

All events of any importance should be noted in this Log. Page No. l ITEM DATE INITIALS I c O %6LL_mn~W  %~n& % d em bnTuEdwh 9h' y/9 z &M-A& %-r '

                       ,   MRw All                                                                                    ~     *

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                                                                              -                               /

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1G ( EVENTLOG 3 PROJECT NO. 94367

  $                                               TU ELECTRIC NOTE:
This Log is to be used to document the date and item for each step during the completion of the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are:  !

Scheme #9-1: 94367 A Scheme #11-3: 94367 G i l Scheme #9-2: 94367 B Scheme #12 2: 94367 H Scheme #10-1: 94367 C Scheme #12-1: 94367 I Scheme #10-2: 94367 D Scheme #9-3: 94367 J Scheme #:11-1: 94367 E - iheme#103. 943G7 K c d Scheme #:11-2: 94367 F All events of any importance should be noted in this Log. Page No.2. ITEM DATE INITIALS cd'h ut / W ( M *e c A-l4 4 # A . 9A,/n @ .' -2.X s&&% JA.- h/au /o -/ ' ' a 4 /6 ~L w h v' de-u d a -n k Ao l /EI N d41 T/NbA% &W WEGA /SNEW . ~ __dfy A .d  % 4 4 &2~n1xj '~

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        ' 22esA- encai&&, Am laut 9J/ F- 66                                           .

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                                                                                                   }

10L ( EVENT LOG 3 PROJECT NO. 94367 i TU ELECTRIC J NOTE: This Log is to be used to document the date and item for each etep during the completion 'of the above referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #9-1: 94367 A Scheme #11-3: 94367 G Scheme #9-2: 94367B Scheme #12 2: 94367 H Schame #10-1: 94367C Scheme #12-1: 94367I

                        - Scheme #10-2: 94367 D                                                                                                             Scheme #9-3:                              94367 J Scheme #:11-1: 94367 E                                                                                                          S2;;T4 #10 3, 5436PK-CW Scheme #:11-2: 94367 F All events of any importance should be noted in this Log.                                                                                                                                                     Page No.3 ITEM                                                                                                                                                                                             DATE INITIALS
                                       .__t...-*~,                                             .t.            u.tf.              it.L .g;t' /T,                            - 4 /2 /.                              &l2 1.     ,3 L/

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( 1 s (- EVENTLOG 3 O PROJECT NO. 94367 V TU ELECTRIC NOTE: 1 the above-referenced test project. The assigned assemblies are: est pro Scheme #9-1: 94367 A Scheme #9 2: 943678 Scheme #113: 94367 G Scheme #10-1: 94367 C Scheme #12 2: 94367 H Scheme #10-2: 94367 D Scheme #121: 94367I Scheme #:11-1: 94367 E Scheme #9 3: 94367 J

                                                   ~ Scheme #:11-2: 94367 F                                                                                                                            Scherre iiiG-1 -94367 K' d A All events of any importance should be noted in this Log.

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i i ( 17 EVENTLOG l 3 PROJECT NO. 94367 O, i TU ELECTRIC V NOTE: This Log is to be used to document the date and item for each step the above-referenced assemblies are: test project. The assignedo eproject completion numbers of for Scheme #91: 94367 A e eleven test Scheme #9-2: 94367 B Scheme #113: 94367 G Scheme #10-1: 94367 C Scheme #12 2: 94367 H Scheme #10-2: 94367 D Scheme #12-1: 94367 I Scheme #:11 1: 94367 E Scheme #9-3: 94367 J Scheme #:11-2: 94367 F C t.e m e M O.3. 94367 K d# Cc hew

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6 EVENT LOG PROJECT NO. 94367

             $                                                                                                                            TU ELECTRIC
                  . NOTE:

This Log is to be used to document the date and item for each step during the completion of the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are: Schems #9-1: 94367 A - Scheme #11-3: 94367 G Scheme #9-2: 94367B Scheme #12-2: 94367 H y Scheme #10-1: 94367 C Scheme #12-1: 94367 I J Scheme #10-2: 94367 D - Scheme #9 3: 94367 J l Scheme #:11-1: 94367 E S20 e #10 3; 3436Ptt d #  ! Scheme #:11-2: 94367 F Scheme #13-1: 94367 L 1 Scheme #14-1: 94367 M j All even:s of any importance should be noted in this Log. Page No. 6 ITEM DATE INITIALS J . . . , 6 :- x.sw'v,s~ <7 W& JMs-t 9,'MML 'L/.f'

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173 PROJECT NO. 94367

 $                                                          TU ELECTRIC NOTE:

This Log is to be used to document the date and item for each step during the comaletion of the above-referenced test projoct. The assigned project numbers for each of the eleven test assemblies are: Scheme #91: 94367 A Scheme #11-3: 94367 G Scheme #9-2: 94367B Scheme #12-2: 94367 H Scheme #10-1: 94367 C Scheme #12-1: 94367 I Scheme #10-2: 94367 D Scheme #9-3: 94367 J Scheme #;11-1: 94367 E - Scheme #13-3. 34367 K- 6tY Scheme #:11-2: S4367 F Scheme #131: 94367 L Scheme #14-1: 94367 M _ All wents of any importance should be noted in this Log. Page No. 7 ITEM DATE INITIALS T

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                                                                                                                                                                 )

f EVENT LOG I PROJECT NO. 94367

                $                                                                                                      TU ELECTRIC NOTE:

This Log is to be used to document the date and item for each step during the completion of the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #9-1: 94367 A Scheme #113: 94367 G Scheme #9-2: 94367 B Scheme #12 2: 94367 H Scheme #10-1: 94367 C Scheme #121: 94367 I Scheme #10-2: 94367 D Scheme #9-3: 94367 J Scheme #:11-1: 94367 E thenm #10-3. 94367 K dW Scheme #:11 2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M All events of any importance should be noted in this Log. Page No. 7 ITEM DATE INITIALS O A w Abb; v, a i" % s M tobla> w e AL _ o LJ M:uv kn>& Asiw.c ~

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17 EVENTLOG 3 PROJECT NO. 94367 TU ELECTRIC NOTE: This Log is to be used to document the dato and item for each step durina the completion of the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #9-1: 94367 A Scheme #11-3: 94367 G Scheme #9-2: 94367 B Scheme #12-2: 94367 H Scheme #10-1: 94367 C Scheme #121: 94367 I Scheme #10 2: 94367 D Scheme #9-3: 94367 J Scheme #:11-1: 94367 E - Scheme #10-3. 9436TM-o # Scheme #:11-2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M All events of any importance should be noted in this Log. Page No.

                                                                                                                 #l ITEM                                                                  DATE                INITIALS k /t.t A t u _. /:'-  /    ns-T'     rz.>1 M 6-do d/Wh.2 , A2/7/sz SH l'A44 /Ldt-= x            '
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1 f 17L EVENTLOG T PROJECT NO. 94367 Q NOTE: TU ELECTRIC This Log is to be used to document the date and item for each step du the above-referenced test project. The assigned project numbers for assemblies are: Scheme #9-1: 94367 A Scheme #9-2: 94367 B - Scheme #11-3: 94367 G Scheme #101: 94367C- Scheme #12 2: 94367 H Scheme #10 2: 94367D Scheme #12-1: 94367I Scheme #:11-1: 94367 E Scheme #9 3: 94367J Scheme #:11-2: 94367 F - Or.Nme "iO-o. s*567 K4 # Scheme #13-1: 94367 L All events of any importc.1ce should be noted in this Log. M 94367 ' Scheme #14-1: ITEM Page No. /o

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I EVENT LO(3 l PROJECT NO. 94367 l TU ELECTRIC NOTE: l i This Log is to be used to document the date and item for each step during the completion of ' the above-referenced test project. The assigned project numbers for each of the eleven test l assemblies are: ' Scheme #91: 94367 A Scheme #113: S4367 G i Scheme #9-2: 94367B Schems #12 2: 94367 H l Scheme #10-1: 94367 C Scheme #121: 94367 I Scheme #10-2: 94367 D Scheme #9-3: 94367 J Scheme #:11-1: 94367 E -f.d: .: #10 0: 9496PK d * - Scheme #:11-2: 94367 F Scheme #13-1: 94367 L

Scheme #14-1: 94367 M l All events of any importance should be noted in this Log. Page No. / /

! ITEM DATE INITIALS I A6ft/sw //-I ,Nsum fn Mits /b/N/4)- C-{ '

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l 178 l EVENT LOG D PROJECT NO. 94367 TU ELECTRIC l NOTE: l This Log is to be used to document the date and item for each step during the completion of the above-referenced test project. The assigned projed numbers for each of the eleven test assemblies are: Scheme #91: 94367 A Scheme #11-3: 94367 G Scheme #9-2: 94367B Scheme #12-2: 94367 H i Scheme #10-1: 94367 C Scheme #12-1: 94367 I Scheme #10-2: 94367 D Scheme #9-3: 94367 J Scheme #:11-1: 94367 E Schsmo #130; 34367 K-4 t/ Scheme #:11-2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M _All events of any importance should be noted in this Log. Page No./g FCEM DATE INITIALS A C4 % 1.t- //-A rjdi7Lwal /dkL d' AS/16l% W

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1 71 i L[ EVENTLOG 3 PROJECT NO. 94367 TU ELECTRIC NOTE: This Log is to be used to document the date and item for each step duhng the completion of b the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #9-1: 94367 A ( Scheme #9-2: 94367B Scheme #10-1: 94367 C Scheme #11-3t 94367 G Scheme #12-2: Scheme #12-1: 94367 H 94367 I Scheme #10-2: 94367 D Scheme #9-3: 94367 J Scheme #:11-1: 94367 E dcheme #134. 943G7 K cM tj; Scheme #:11-2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M All events of any importance should be noted in this Log. Page No.j 3 ITEM DATE INITIALS

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100 EVENTLOG D PROJECT NO. 94367 TU ELECTRIC NOTE: This Log is to be used to document the dato and item for each step during the completion of h the above-rcierenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #9-1: 943S7 A Scheme #11-3: 94367 G 94367B (I Scheme #9-2: Scheme #10-1: 94367C Scheme #12 2: Scheme #12-1: 94367 H 94367 I Scheme #10-2: 94367 D Scheme #9-3: 94367 J n Scheme #:11-1: 94367 E - 03eme #10-3. 94367 Wd # LJ Scheme #:11-2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M All events of any importance should be noted in this Log. Page No/h L ITEM DATE INITIALS

  .<       NNiimu 04A a d y "A 5 V! & % h / % D l k ~h /. /C/,:w/o                                    66f-

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        '/ A Ie saf/ 7I d / Tf 7t t ,,eA-/s M A                                       '

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L 181 ( EVENT LOG 3 PROJECT NO. 94367 TU ELECTRIC NOTE: This Log is to be used to document the date and item for each step during the completion of b the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #91: 94367 A Scheme #11-3: 94367 G Scheme #9-2: 94367B Scheme #12 2: 94367 H Scheme #10-1: 94367 C Scheme #12-1: 94367 I Scheme #10-2: 94367 D Scheme #9-3: 94367 J .

   ]                Scheme #:11-1: 94367 E                      - Sch .ma #10-3. 34567 K ^ff u                Scheme #:11-2: 94367 F                        Scheme #13-1: 94367 L Scheme #141: 94367 M e

A!! events of any importance should be noted in this Log. Page No. /5 L ITEM. DATE INITIALS W ~fDv M #dAdd.idA%., s/ '22i, B/uk?. Cd/ Y' emuJHi2 i&W/14e/wJil<L 01 '

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IJ 1m ( EVENT LOG 3 PROJECT NO. 94367 TU ELECTRIC 5 - NOTE: 1 This Log is to be used to document the date and item for each step durin the com;)letion of lm the above referenced test project. The assigned project numbers for eac of the eleven test assemblies are: Scheme #91: 94367 A Scheme #113: 94367 G h Scheme #9 2: 94367 B Scheme #10-1: 94367 C Scheme #12-2: Scheme #12-1: 94367 H 94367 I Scheme #10 2: 94367 D Scheme #9- 3: 94367 J 1i Scheme #:11-1: 94367 E -Schemr#iG-3; 04367 K- d# U Scheme #:11-2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 943S7 M 1 Ali events of any importance should be noted in this Log. Page No./d

'      Sul ITEM                                                                       DATE    INITIALS i

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  ,                                                                                                 183 l 6                                        EVENTLOG                                             3 4

g PROJECT NO. 94367 TU ELECTRIC NOTE: This Log is to be used to document the date and item for each step during the completion of the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #91: 94367 A Scheme #11-3: 94367 G Scheme #9-2: 94367B Scheme #12-2: 94367 H Scheme #10-1: 94367 C Schame #12-1: 94367 I Scheme #10-2: 94367 D Scheme #9 3: 94367 J Scheme #:11-1: 94367 E Scheme #10-3: 94367 K

Scheme #:11-2: 94367 F Scheme #13-1: 94367 L 4

Scheme #14-1: 94367 M All events of any importance should be noted in this Log. Page No./ 7 ITEM DATE INITIALS

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    \               '9"A/ L+., 6%de.A                         *       
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l 184 Li T EVENTLOG 3 PROJECT NO. 94367 TU ELECTRIC NOTE: This Log is to be used to document the date and item for each step during the completion of bl the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #91: 94367 A Scheme #11-3: 94367 G I' Scheme #9 2: 94367 B Scheme #12 2: 94367 H

     "                                                                                                                         Scheme #121:

Scheme #10-1: 94367 C 94367 I Scheme #10-2: 94367 D Scheme #9-3: 94367 J Scheme #:11-1: 94367 E -Scheme #10 3. 54367 K- C tt U Scheme #:11-2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M Alt events of any importance should be noted in this Log. Page No./[( Lj ITEM DATE INITIALS

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N, 185 ( EVENT LOG PROJECT NO. 94367 TU ELECTRIC d NOTE: This Log is to be used to document the date and item for each step during the com:)letion of the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #9-1: 94367 A Scheme #113: 94367 G Scheme #9 2: 943678 Scheme #12 2: 94367 H Scheme #10-1: 94367C Scheme #121: 94367 I Scheme #10-2: 94367 D Scheme #9 3: 94367 J Scheme #:11-1: 94367 E -.-Sche rrw-# 10-3. 94307T CM bl Scheme #:11-2: 94367 F Scheme #131: 94367 L Scheme #141: 94367 M

  ,          All events of any importance should be noted in this Log.                                    Page No. / j i he.

ITEM DATE INITIALS

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186 I I EVENTLOG 3
PROJECT NO. 94367 pd TU ELECTRIC

! di ' NOTE: This Log is to be used to document the date and item for each step during the completion of the above-referenced test project. The assigned project numbers for each of the eleven test i assemblies are: Scheme #91: 94367 A Scheme #11-3: 94367 G Scheme #9 2: 943678 Scheme #12 2: 94367 H l Scheme #101: 94367 C Scheme #121: 94367 I ' Scheme #10-2: 94367D Scheme #9-3: 94367 J

         @         Scheme #:11-1: 94367 E                         -Sch = e #10-0; 343C7 K cn aJ            Scheme #:11-2: 94367 F                           Scheme #131: 94367 L i

Scheme #141: 94367 M i . All events of any importance should be noted in this Log. Page No.JO ITEM DATE INITIALS l 2eA6uu /d-/ ..60 e>.A-c&s <fia' sc-1c Ns ///5~47A Af-O A* kmz u- mti s'd/ nflw%kA. ezrt 4s-tuusB 99 i b b dA/ 664-0 f/L A & H K u ADM. U I O /'Y V /i % n m M /E s p h ' fa _.

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  • 9 )

187 L[ g EVENTLOG 3 PROJECT NO. 94367 TU ELECTRIC NOTE: bl This Log is to be used the above-referenced toproject. test document The the assigned date and item project for each numbers forstep eac durin%the completion of the eleven test of assemblies are: Scheme #91; 94367 A Scheme #113: 94367 G

                             .             Scheme #9-2:       94367 B                                                                                                                                      Scheme #12-2:        94367 H Scheme #10-1: 94367 C                                                                                                                                           Scheme #121:         94367 I Scheme #10-2: 94367 D                                                                                                                                            Scheme #9 3:        94367 J 5             Scheme #:11-1: 94367 E                                                                                                                                         -Sche >=0 #10 0.      943G7 % a M U                            Scheme #:11-2: 94367 F                                                                                                                                           Scheme #131:        94367 L Scheme #141:       94367 M All events of any importance should be noted in this Log.                                                                                                                                               Page No.oj/

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g isa EVENT LOG 3 PROJECT NO. 94367 TU ELECTRIC

 .       NOTE:

This Log is to be used to document the date and item for each step during the completion of b} the above-referenced test project. The assigned project numbers for each of the e!evon test assemblies are: ( Scheme #91: 94367 A Scheme #9-2: Scheme #10-1: 94367C Scheme #10 2: 94367 D 94367B Scheme #11-3: 94367 G Scheme #12-2: Scheme #121: Scheme #9 3: 94367 H 94367 I 94367 J y! Scheme #:11-1: 94367 E Sch0= #10-3. 343G7 K-c W U Scheme #:11 2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M All events of any importance should be noted in this Log Page No.cqR k; ITEM DATE INITIALS M M&setl, Ms/ ids ///S~/9 kf Au,am Wn M ud& M

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b 189 d( EVENTLOG PROJECT NO. 94367 3

  ,                                              TU ELECTRIC NOTE:

This Log is to be used to document the date and item for each step during the completion of the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #91: 94367 A Scheme #11-3: 94367 G Scheme #9-2: 943678 Scheme #12-2: 94367 H Scheme #10-1: 94367C Scheme #12-1: 94367 I Scheme #10-2: 94367 D Scheme #9-3: 94367 J ,Ii Scheme #:11-1: 94367 E *hame ** C 3; 34357 K (PtT' U Scheme #:11-2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M All events of any importance should be noted in this Log. Page nom ITEM DATE INITIALS

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EVENT LOG 3 PROJECT NO. 94367 p) ( TU ELECTRIC i l NOTE: l

This Log is to be used to document the date and item for each step during the completion of

! the above referenced test project. The assigned project numbers for each of the eleven test . assemblies are: i Scheme #9-1: 94367 A Scheme #11-3: 94367 G '

;                        Scheme #9 2:      94367 B                             Scheme #12-2:       94367 H j                         Scheme #101: 94367 C                                  Scheme #12-1:       94367 I Scheme #10-2: 94367 D                                 Scheme #9-3:        94367 J Scheme #:11-1: 94367 E                               -Sch=0 #10 3. 543G7 K W Scheme #:112: 94367 F                                 Scheme #13-1: 94367 L Scheme #14-1: 94367 M-All events of any importance shou'.d be noted in this Log.                                         Page No.k

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4 191 EVENT LOG 3 PROJECT NO. 94367 TU ELECTRIC NOTE: This Log is to be used to document the date and item for each step during the completion of the above referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #9-1: 94367 A Scheme #11-3: 94367 G Scheme #9-2: 943678 Scheme #12-2: 94367 H Scheme #10-1: 94367 C Scheme #12-1: 94367 I Scheme #*.0-2: 94367 D Scheme #9-3: 94367 J Scheme #:11-1: 94367 E - Sch::me #f04; 343G7 K d# Scheme #:11-2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M All events of any importance should be noted in this Log. Page No. R 7 2 ITEM DATE INITIALS truiwW i6Msb L N//W9+ L 1f n% m MJ

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192 I EVENT LOG D PROJECT NO. 94367 h TU ELECTRIC NOTE: This Log is to be used to document the date and item for each step during the completion of the above referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #9-1: 94367 A Scheme #11-3: 94367 G Scheme #9-2: 94367B Scheme #12 2: 94367 H Scheme #10-1: 94367 C Scheme #12-1: 94367 I Scheme #10-2: 94367 D Scheme #9-3: 94367 J Scheme #:11 1: 94367 E -%5 cme "10 3: 949A7 K- N Scheme #:11-2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M All events of any importance should be noted in this Log. Page No. J7[ ITEM - DATE INITIALS AGo-L Mt- A lk'</d & -l1 A E $ b%% /// B A a 641 aktb /q h a m " ,. k^~ WOW hl&W /-%WM (w a s % A uted ~ ~- - ( $_ (.fW h ,Vh L { /i

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193 ( EVENT LOG 3 PROJECT NO. 94367 9- TU ELECTRIC NOTE: This Log is to be used to document the date and item for each step during the completion of the above-referenced test project. The assigned project numbers for each of the wen test assemblies are: ! Scheme #9-1: 94367 A Scheme #11-3: 94367 G Scheme #9-2: 94367 B Scheme #12-2: 94367 H Scheme #10-1: 94367C Scheme #12-1: 94367 I Scheme #10-2: 94367 D Scheme #9 3: 94367 J Scheme #:11-1: 94367 E T,chema # :0-4; 3436/ K Scheme #:11-2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M All events of any importance should be noted in this Log. Page No. c27 ITEM DATE INITIALS i iA evi~ & A P L ou 5' M MAi&cl ul ia> }9 2- CN 9t's & V7M M&~-A AAshtzty '

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194 ( EVENT LOG 3 C, PR JECT NO. 94367 i TU ELECTRIC l NOTE: This Log is to be used to document the date and item for each step during the completion of the above referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #9-1: 94367 A Scheme #11-3: 94367 G Scheme #9-2: 94367 B Scheme #12 2: 94367 H Scheme #10-1: 94367 C Scheme #12-1: 94367 I Scheme #10-2: 94367 D Scheme #9 3: 94367 J Scheme #:11-1: 94367 E G e o.o. W10-3. 34567 K M Scheme #:11-2: 94367 F Scheme #13-1: 94367 L Scheme #14-1: 94367 M All events of any importance should be noted in thic Log. Page No.g& ITEM DATE INITIALS

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195 I EVENT LOG 3 PROJECT NO. 94367 9 TU ELECTRIC NOTE: This Log is to be used to document the date and item for each step during the completion of a the above referenced test project. The assigned project numbers for each of the eleven test "- assemblies are: Scheme #91: 94367 A Scheme #113: 94367 G Scheme #9 2: 94367 B Scheme #12 2: 94367 H Scheme #101: 94367C Scheme #121: 94367 I

  • Scheme #10 2: 94367 D Scheme #9 3: 94367 J Scheme #:11 1: 94367 E Sch;me #10-3; 34567 K ON.

Scheme #:112: 94367 F Scheme #131: 94367 L Scheme #141: 94367 M All events of any importance should be noted in this Log. Page No.A c/ ITEM . -a , DATE INITIALS 0I?dA 1227& d'the.a l%1.c+Xs.As '

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19G I EVENT LOG ) a PROJECT NO. 94367 O - TU ELECTRIC j' NOTE: ! This Log is to be used to document the date and item for each step during the completion of the above referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #91: 94367 A Scheme #11-3: 94367 G Scheme #9 2: 943678 Scheme #12 2: 94367 H e Scheme #10-1: 94367 C Scheme #121: 94367 I ! Scheme #10 2: 94367 D Scheme #9 3: 94367 J

Scheme #
11 1: 94367 E Sobeme #10 o. S4567-K- CM Scheme #131: 94367 L Scheme #:11-2: 94367 F i Scheme #141: 94367 M All events of any importance should be noted in this Log. Page No. 3D ITEM DATE INITIALS PArtl&C &ktskelst a i&c4 /w "

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J 19 I EVENT LOG 3 1 4 . PROJECT NO. 94367 i TU ELECTRIC ?  ! ! NOTE:  : f This Log is to be used to document the date and item for each step during the completion of . j the above referenced test project. The assigned project numbers for each of the eleven test i 1 assemblies are: i Scheme #91: 94367 A Scheme #113: 94367 G Scheme #9 2: 94367B Scheme #12 2: 94367 H Scheme #101: 94367 C Scheme #121: 94367 I -

                                   - Scheme #10 2: 94367 D                                                               Scheme #9 3:         94367 J                                                            !

i Scheme #:11 1: 94367 E iS A n = #10-3. 5 667 K C#f'- . ! Scheme #:112: 94367 F Scheme #131: 94367 L .

Scheme #141
94367 M 1 All events of any importance should be noted in this Log. Page No. 3 l  ;

3 x~. ITEM . DATE INITIALS A Chuec6 mica dk.<,a.edovutdatiLe , /1 /L ' { W T + p 4 cci1.t- - ._ n_ *

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M 198 EVENT LOG 3 l 1 l PROJECT NO. 94367 , TU ELECTRIC l NOTE: . This Log is to be used to document the date and item for each step during the completion of the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #91: 94367 A Scheme #113: 94367 G Scheme #9 2: 94367 B Scheme #12 2: 94367 H Scheme #10-1: 94367 C Scheme #121: 94367I Scheme #10-2: 94367 D Scheme #9 3: 94367 J Scheme #:11 1: 94367 E Sdem: 810-3: 3-;367M Scheme #:11-2: 94367 F Scheme #131: 94367 L Scheme #141: 94367 M All events of any importance should be noted in this Log. Page No. 3 2 ITEM DATE INITIALS ' Ai &M 1auuze.r- - / W -t/ aria - ~ _gpblFi&le,& wj-vafv ad 1 4 ,'.& % - 2sti h%di&~ asdomi&. , , bd65G'f" Q U 860$td E,.1 W O 4/ f+ ////f/f;L-6 $@~~

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l 200

EVENTLOG 3

^ PROJECT NO. 94367 TU ELECTRIC 1 NOTE: i This Log is to be used to document the date and item for each step during the completion of the above referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #91: 94367 A Scheme #113: 94367 G Scheme #9 2: 94367B Scheme #12 2: 94367 H Scheme #101: 94367 C Scheme #12-1: 9436'7I , Scheme #10-2: 94367 D Scheme #9 3: 94367 J

!                Scheme #:11-1: 94367 E                                      - S@ e=" M 04t-94367Pd Scheme #:11 2: 94367 F                                       Scheme #131: 94367 L Scheme #141: 94367 M                                                           /

All events of any importance should be noted in this Log. Page No. 3 (f-e ITEM DATE INITIALS A.A *w . J. M n r. s w G".1.-T , / R /i/e > Q Ll l* 'h'If nL /v'~ / .& W /c:& >s~ d0y

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201 ( EVENT LOG 3 9 PROJECT NO. 94367 TU ELECTRIC NOTE: This Log is to be used to document the date and item for each step during the completion of the above-referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #91: 94367 A Scheme #113: 94367 G Scheme #9 2: 94367B Scheme #12-2: 94367 H Scheme #10-1: 94367 C Scheme #121: 94367 I Scheme #10 2: 94367 D Scheme #9 3: 94367 J Scheme #:11 1: 94367 E Scheme #104: 0'367-K - c4 Scheme #:11 2: 94367 F Scheme #131: 94367 L Scheme #141: 94367 M All events of any importance should be noted in this Log. Page No. 3.g-ITEM - DATE INITIALS J-OrJ .Thue A A/> AsuuA /ddfuad .Luft . "A G f'E s t? A. LY& hr el' &!A' Yl9 Y S . /, . 3 J '~cde-> ux.&Z~j & 7 Lv sy s~-> a.,J i-t!' _; /+8%u '/ h f4 Am Mar - pJ _2# sz.s.e~ i% pw% ma e et

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       .I                                                                                                                                                                                3
EVENT LOG
.                                                                                          PROJECT NO. 94367 j       O.                                                                                     Tu etscraic i

NOTE: This Log is to be used to document the date and item for each step during the completion of

the above referenced test project. The assigned project numbers for each of the eleven test l l assemblies are: )

4 Scheme #9-1: 94367 A Scheme #113: 94367 G Scheme #9-2: 94367 B Scheme #12 2: 94367 H j Scheme #101: 94367C Scheme #121: 94367I Sr. heme #10 2: 943S7 O Scheme #9 3: 94367 J , i Scheme #:11-1: 94367 E L t ; m: M O-3; 94367-K c$

!                                      Scheme #:112: 94367 F                                                       Schemo                #131:         94367              L i                                                                                                                   Scheme #141: 94367 M                                                        l

! All events of cny importance should be noted in this Log. Page No.34 l l

ITEM DATE INITIALS I n DL' 1 1 rs%. h 2hY M.' .
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203 I EVENT LOG 3 i n W PROJECT NO. 94367 TU ELECTRIC i l NOTE: l This Log is to be used to document the date and item for each step during the completion of  ! the above referenced test project. The assigned project numbers for each of the eleven test assemblies are: Scheme #91: 94367 A Scheme #113: 94367 G ~ Scheme #9 2: 94367 B Scheme #12 2: 94367 H Scheme #10-1: 94367 C Scheme #121: 94367 I Scheme #10 2: 94367 D Scheme #9 3: 94367 J. S: heme #:11 1: 94367 E Schemer *t04:--94357K i Scheme #:112: 94367 F Scheme #131: 94367 L Scheme #141: 94367 M All events of any importance should be noted in this Log. Page No. ITEM DATE INITIALS n "J K - E',:17 jidaYr?lmr A64WA od/ /M8/f- L. C Cf

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20-O MOISTURE CONTFWF LOG SCHEME #12, ASSEMBLY 2: PROJECT NO. W107H Position #1 Center of front horizontal cable tray on the vertical edge surface. Position #2 Center of nght sharp radius vertical outside surface. Position #3 Center of bottom horizontal surface on left side of cable tray. Position #4 Center ofleft radius on outsido curved stubce. Position #5 Center ofleft radius on outsido vertical surface. sal Date Date _ Date Date Date Date Date Date Y> % h 2 Yh li kj #b) l$ph Y2V Position #1 Ile ig ih C i Position #2 E!eni$ /DC+@l00+ /00F f 3 7 3r 3 -- Position #3 Re ing  ! ^ Position #4 ed Position #5 j eyg

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Report No. 12340-94307h twember 10,1992 2QT) Texas Utilities Electric APPENDICES O V Peak Seals Installation Data i i

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CWD No. TL-//M-7'sST-h74t2'- El SYSTEM '

2-69CO DRAVINC/REV. . ] ] QC APPLICABLE X YES NO BIEC/EI.EV/ ROOM <sE < rep 4~ CArrr7' DOCUMENTS /REV. ' q PREPARED BY MM Sesw7f M/ COMP 3NENT #1 ace-t/P-LI f'rA* c 4*r,ME # 11-7. I i 1 I e I f 1738 INSFECTim N INSF W INSTALLAfl0p INSF. REM IIr!F. IIISPECTUR CTsutt IID. ATTRIBUTES REF- me. / GAFT STATUS CRAFT STATUS IWSPECTrontaCrtFTasICE I i j sect. tre. TTer A staus a ente U ston a ante s y sing a ente ms0CasesT a REv.

1. serrece to eteen. d.ry and tree trem s.4.2.2 QCM N N '

f M  ! eent re.t .d - o_t.le.ne

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For. .e.g.are. .d..e

                                                                                         -    .1_ r          V D        slightly boosted and eat tosee meteriet                                           r resseed                                                                                                                                      jr [ 7_C  A
2. Rece-ey evetece to f ree free any 5.4.2.3 gret 87
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forelan enterlate. t e_ , , j 3. oot.t.d

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t.Mo Id n tes..,.or.enti ee f te..etten 6.4.2.8, 000 / i . . . o. ten., 4.2. m /c f i S. Tremotable - t/2 Get, of water to 3 Ge t , of met er i e t . 6.4.2.3 QtM V /"' [ ,M*/M [# " l C. Betcle f en contenner and 6.4.2.7 QGt l ehest tafe not in estees of 6 monthe. enIese motherired by V C # I Eneeneereas. 4 /- 3.y]s/ '

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  • l Recomey hee been reteneed by the FFIR 5.4.3.36 0 09 V i i 8. and l e li st ed en M2
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                                                                                        /O-J T     V y*'y                                             f                                                       '

, greater than 6* f rem betted jointe

           < beth .ide.I and not er..t., th.n 24-en tenter betweeve Jelnte                                                                                                                       /* 7             f.

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                                                                                                                                                                                                                  >-- I CQP-CV-107                                                                                                     PROCEDURE REV. : O                  CD  ;
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                                                                                                                                                                                                                                                                         't IrJMIF 7_2 THFRem-t AG 330-1 APPLICATIfW (W CABI F Alm RACFuaY rMFeri IST                                                                                                                         .._                          rHFCKI TST tif .TL- Z-l            cun nO. TL- fmf-YfsT-hlbrP- il 313e                              laspectim                          reocament             insea             testAI.I.Af ttar       spSr.              esmaar a
m. ATTRItefts EEFenesurw last. ResencTtm Ofsta me. / (3 AFT STaftfa (Barf sTaftes IN$ RECTI (*1attstrasics serv. f ses. TTre a stas a mart s y ese a mart a y sras a enre eocu eer a arv.

saa v g Tse ietro testellettee roe sett S.4.4.S.s 00s ( [-- ((

                    ----- Vertteet Susie (All Dett Jetets)                                                                                        f
                    ----- autoestal tiene imett- rossi. omi,,                                                                                          /                                    7j               f -y,.

i

3. Beteo dealled am 3* eentere tees.)

thesesh bettee passte. Soested such ', ) to enseee et e etetese 3 otteeds of y t etrees sein esteriet het est leested g5 4 (' .forther

                                .et. then 1-1f3* ammoy free hatt
2. Isotell tie weree t.hreesh adjetades i l
                                                                                                                                                  /

S.4.4.8.3 OGO

                                                                                                                                                                                                'g/,

t , /  ! remote s.4.3.I prebutter V' and testatt the jetotsepoe ymmnet ender # side of tror settle . / 4M92

                                                                                                                                                  /
3. Tlebtese t8e weree efter besetag to S.4.4.6.3 5 30 y '

ta g emed mal e eteemme of ele ( *h. * ,

;                         395* tetste               apply 338-8 otte                                                        j                                                                         j /

emmt . I .7;, - 123 Add additiesnet Strese m in To S.4.4.S.A 4GE - ' tes.itedse.1 .ieses. es r.11ees: [ f /t j I. Apply settle 1 coot of 330-3 tresset V ~

 .                      stede appres. 3138* theek over em                                                                                                                                                   /

J esee to elles strees atte to everley

  • 4*

each eAde of the h&et he $* eaa. / , } ]

2. I stroes stan ever the telttel
                                - tressi stede layer. .ap each S.4.4.S.A           EIGt                                     Y                                                 N')
J.est h, s ees. and norm sete ,  ;
330-8 meterset. AJ 7
3. Secees strees ehte by messe 1/2* S.4.4.8.A 0 39 j etaples officed et 1* ele to 2*
                                                                                                                                                 /

i f g 'i see, free edge of strees ekte. Steploe shoote be 3" (s 1") se f[,. I senters. Adettteestly strees atto e' 6 I' shall be seeered with t$e wir=2 f whicIn eagese et loest 2 etrando of j strose sale and spaced e mee. of S* '* f q em center esed a ene. of 2* f ree the 'j * ' send of t3ne stroes skin ptoce. # s fig tenate 8 stem.ed met tt.o 2.e ele. of sie te (n. 180'..

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                       %y et.to.                    cover coet) appree.        S.4.4.S.4           000                                      g
  ,                                44 . coot.e. (t. es.or t n.                                                                                                                  j steeles med the stresa ette.                                                                      Y'[                                                     .           [b
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)* CQP-CV-107 PROCEDURE REV. : 0

                                                                                                                                     . FORM NO. CQP-CV-107-2 REV. O Pere 77 . t or
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_ _ _ . ._ _ . _ _ . . _. . . . _ _ . . _ _ . _ _ _ . . . _ _ __ _ _ _ _ ~ _ . _ _ . . . _ _ ..___ r a - i i

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Tr.mE 7_2 THFI29W-LAG 330-1 APPt TCATIDM DN CARI F **'"I RArnlAY DiFrKI IST CHFrrt TST MG5L- 7. i I

i Cuo no. n- Act-nc-swr- 21 , l 1795 IESFSCTICII FS N teSF W INSTAI.1ATIM INSF. name w INSF. INSFECTUR OTWER f 4 i 50. ATTRISirTES N WG. 1 CRAFT STATUS (2 AFT STATUS INSFSC1105/agI2FTaEE j SKT. f fW . YYFE A SIGIf & OAft 3 g Sles a Daft 3 V SIEW & OATE _ Sousesrr a mv. - l 12C. Add addettemet Strese h an to tutt lS.4.4.8.C QCPI bW # Jetste (Circeferentist terop) jpg g. - ,  ;

1. Apply tattel cost of 338-3 tremot i /  ;

Grade eyytes. 311S* thark over en f eram to alles otrese ekte to everley oach side of the jetot by S* ene.

                                                                                                                                                                      / 7 ((    ,

[

2. terep e elette paese (or molttele S.4.4.6.C OGt I f

! yemees seeered teSottner weth Lie 4 i wereal of 339-99 etrose ekte / l etreemferentietly areuend the jetnt V f e , i euch that a ede. es S* of strose

                                                                                                                                                                                ~.s d, I-j V              ekte leye seek side of the          lot.

p L work the strees skin into tesuel arede estertel. ,

3. tenere the tuo ende of the S.4.4.5 C OEM
                                                                                                                                                                                   ~
                                                                                                                                                                                                                                                                 'l straumferentiel streme skin weep                                                                      "
                                                                                                                                                                               ,g}

t overley one emother, seeere t%e eteses ekte am glace with the wiree /

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                                                                                                                                                                                       #/                                                             ay a* 3" men. to S eos, centere. Yle                                                                                                                                                                                                              p
                    ..r.e eh.it he Smet.it.e : .is. t.                                                                                                                           gb      '

U- r i 2" one. from seek edSe of the j , evertes.  ; 1

4. Seewee Lane strees ek te meterial to S.4.4.4.C OCPI / g g

the prefabricoted pomete- f moint etaptos et a distence of I" V // 8 min. - 2* mee. from the ed Se of the - // { strees skin. Steylee should be 3" g/ 4"r  ! is 1") en contese. l , / /

s. 7tSente. ti. wire. int . .la. .f S.4.4.5.C om W2fdN^ 1 [ / l' sie 198* twiste and eyply 3)S-1 otte .

coat to folly cover tie wires and /8Yb -h, /; ,* etrees ekte esen cose. For Ladder Seek fee Sectione en Cable 12D. S.4.4.8.E 0 05 ' Troye needer Then 24 Secere Time Betteen /f/ Penet to the Cohte Troy Bente se V, ) ' ,, l Fotome: n*4- ,

                                                                                                /                        #y                                                       )                                                                                {
 !              3. Orl!! holes throuSh time bottom                                            V t

panels to acessedets tue (2) evenly / opeced tie wires to be Snetelled t

 '                 ever every other tray runs startint et the fleet runa from e butt jetzt                                            ,                                                                     w                 a    M                                                                  [
2. Ie.atell tie wires ever tray rente and threemah the panel.

6.4.4.5.E QOf v

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i I i 2 -. TO  ! { PROCEDURE REV.: 0 lO

 ,                                                                CQP-CV-107 FORM NO. CQP-CV-lO7-2 REV. O                                                     Pane 7.2 - 4 OF 9 lC( (0 1                                                                                                                                                                                                                                                                  !
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TIGifRE 7.2 THERMO-LAG 330 APPLICATION ON CABLE AND RACrJAY CHECKlTST CHECKLIST NO. TI.- 2 cud no. n- Fixe - res7*- m JcA'- 2.1 1 TEM IrSPECTIon FoottouR2 tan a InSTAtt_Afton ' test. REmptE tusr. I!rsrECrost oTnER ist. ATTRIBtffES FEFEPJtKE GIO . / CRAff STATUS C3tAf f STATUS INSFECTI0st/ ACCEPTANCE SECT./PUU. TTFE A SIGN & DATE Stral & DATE y SIC 5 & DATE DoctsfJrf & RE7 l ,,, 3. En..r. . ,otnt. .r. p . tt.r.d Can't with 330-3 trowel grade and butt joint tie wires are in poelttee for

                                                                       . . . . . . . , l Qet y

ww fg. M a-S

                                                                                                                                  ', /

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                                                                                                                                                                      /

pp I tiahtening. Instatt the betten penet k' and secure in tece with benn;a . m g, Artsr bending a tightened and state *( ./ ! / era edequately butted together, tighten . O i n. the rung and intt jetnt tie wires using i I

                                                                                                        /                     =

i l e ein of ele 180 tert 8 e te . l / , C.4 4.6.6 QOf e/ O - i 4 Flotten the tie wires

              ..rf... -       .,p,, . .t.. ..

trowel arede e*,er tie wires.

                                                 .to tanet,,.-,
                                                       .E                                            ,,,M ,                g          .,
                                                                                                                                     /f                                               ,.,,,1
                                                                                                                                                                                       -j 12E    D rede For 2 Die. s tPnder condelt                  ,    8.4.4.A 3 - (EH (NotettettenofSpectet1/4" Thick
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Conduit Sectional rf)

t. For couytteige, verify that for
                                                                                                     '/                                                                            '-
                                                                                                                                                                                                                                    )

condelt stoes 3f 4" - 2' that voto / A #

                                                                                                                                                                                           ,                                        I between compting meetton and                                                                                       j'f                                               /                                            j coepting to it led with 330-1 trowel                                                                                                                          g; 7ed7'- l grade seteriet and shalt overlep                                                                                                                                  /                                               1 I

ante the conduit by 3/e" on each elde. Y

2. Verify ees s.os,.etene-en ting of lalletsiinu (Itene g & 9 abowel prior te jointe o.,

and 8.4.4.A.2 (X39 s A, f p'

                                                                                                                                                                              .p/ .7/ ,'     e inste!!ina lle" condott section':.

6 4.4.A 2 Q01 j

                                                                                                     /                                                                                                                              .

j

3. Special conduit sections leistelled over previevely installet 2* Ot e. & /\/ /1- -q'gj 1 2
                                                                                                                                                                                       //     f 1

under conduit, f j v/ 4 Verify th S.4.4.A.2 006 i

                    .. .,t,at Speclet ionsit.Cond,u!L din. .r.d
                 . relate en the first coctione 3/4' Sectione 1.t.rei                                                         ,1 f

g fr

                                                                                                                                                                                      / /

e t nisease . , /v/1/ # S. Verify that. all semes cad jointe are 4.4.4.A.2 QCM

 ;              prece=16ed (battered) with appree.

(/ h [ 8 l I/4" to 1/2 of Thermo-Les 330-1 /,;,,./ /y'< tsowel arede metertal. l / /g . j Condust Radial Bende 6.4.4.A,4 001 y h /

1. Thereo-Les,y ee .eese sectione should to pieced to e.,s.r. con u ~ e g coverose on the bend. Mettog eurf aces on adjointing pieces should i
me ..tered .e n.c.ooery to .no.s. ,fy&

tight fit vp of the pieces and to estatein 1/2 min. thickness for standard 1/2* thtch sectione end 1/4" ein. thlenness for overleving ,

   ,              ecu.ne.                                                                                                  , .                 ,

l TO l 80 CQP-CV-107 PROCEDURE REV. : 0 - g ITil N P-CV-107-12 REV. O Page 7.2 - 5 or o ID7

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                                                                                                                                                                                                         /
             "Ir.'mF '7L2 THFmul-LAG 330-1 APPI TCATION DN CABLE AMn RACFWAY CHErra IST                                                                                                CHFert TST RK)_ n- z.

cun No. n- nxr-rest-mper t I stan Insrectsm reocases asera teoreaurra s ose.- asisaus smer. Insrectost erura

50. ATTRIBUTES- REF1mmerT me. / CRAFT STATUS CRAFT . $1Afg5 ISISrECTimfACCE,faEE I sect.ffes. rTre A patfor a narr s y snow a natt s e sigy a enft, - , accesert a arv.

1; l .., con *t

n. ,r... . u.s! -ii ,i.c.. ......A.. . / /

p g Ml1f42N jr

                                                                                                      /
                                                                                                                                                                        // '
3. sein. of one festener thematas or cae ./ 4 8.4...A.4
                                                                                                                               /9     &,                                      lj wi.ro) a__-__. ehell be tuotetted en eeeti 138   Conduit Letoret Sehd Fitting Encleoere                  8.. 4.A.S.A OG6
1. Isete11 ciremferenittet wrap of . , [-

330-69 etrose skin eroemd the

                          !estelde of the eenduit sectione                                         v uhere entert          lateret band
                                                                                                                                                                           *{/f         1
   --(-                     emeleseres. '- stand strees skin 1-3p2* mia,. freus the ebutting surface of the bee incleomrs ente p*     e
                                                                                                                                                                              /[f'-
                          ,eenduit sectsen. Strees skin mer be eentied over egletina fastenere.

s.4...A.S.A 0 00

2. secur.e eeut str.ees. t.,ski.n e in.to ee,nduit.
                                                            . en. --                               .
                                                                                                                                                                          //2 feetener and eterles as              p                                                                                                                                                          .

f,

                         . eneer.             f a .f str res   e aired in toto                                                      .,
  • sendoit soetten. Tie wire 11 be

escw ed with a mim. eis I twista. / G.4.4.A.e.A got k

                     ). -S.e.es.f.h.uin..-l tress thin ohell everleyr.ee by 3-l/2* nin. enn all four eldes.

the ou,ter g, p 4 T., i -

                                                                                                                                                                                                                       ')
4. so .r. .tr... . in to .ncle r. witm e.4.4.A.s.A coi .
                                                                                                                                                                                  /

eteptos e,ed min. ene f estener - - I p' . we circunferentially around the ene oeere for enug fit between : F # 4' / ,f/ /,_ _, strose skin and pene!'sc*fece, , S, Instell e 45' trowel stede f allet ' O.4.4.A.S.A 009 /- 1 (' around the conduit e mettenfoncleeste #l/ < kp interface to ensure e 112* DFT. f

                                                                                                                                                                              ,c/. ??

S. polmforce the heet of the encleewee ; S.4.4.A.S.A 008 b' . .-- with e I-Is2* min. strees skin ' y 4 ~.

                       - overlap en ell' eidos # - The strees h,

skin any be applied over esteting festenere. Secure strees skin with .,f4,i

                       ' staples all sides to essere e anus                                                                                                            d[h fit.                                                                            /                                                             s rede                   6,4.'4.A.O.A (XPt                                                                        !^

F.,iderk inie 3301 en str tremel e - fn er.meterial

o. - c-=

eli etaples and festenere within the v p/ g

                                                                                                                                                                ~j strees skin beusedery. The strees -

skin layer shoold not be readily - / gL , s etelble fattowins cure. I R-TO go ' CQP-CV-107 ' PROCEDURE REV. : O y

                                                                                                                        .FURff NO. CQP-CV- 107-2 REV.' O                                  Pne. 7 . 7. 6 (*
  • I O p ..
                                                                                                                                         -                                 ..                         =

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                                \,,                                                                                                                                                      f TimmF- 7.2 THFRf40-LAG 330-1 APPIICATION ON f 181                              w E ANG RACFWAY CHFfTI TST                                                      CHFfTI IST ND_ 7't.- Z cuc NO, 72- far- fr<2' inacK- 21 IfDs                     llCPECTICII                FROCEDIRE   INSF If INSTAI.t.A7!Olt      . IPSP        RDduRK     INSP.             IRSPECTOR                          OTWER WD.                     ATTRIBUTES                  REFERENCE  ORfs. /        CRt.FT           STATUS      CRAFT     STATUS                                     IIISPECTION/AT EFTAfECE SECT./FW . TYPE A SIOR & DATE             S       U SICR & DATE 'S     U          SICW & DATE                   DOC 1sENT & REY.

125 Jumetten Ben. Full Dos, and Other toelooeres Per All Longitudinal and 8.4.4.A.G.3 004 ' Ih Sutt Jetete.  ! [

1. Overley strees skin to adjecent penet outreces by 1-1/2" ein, y Basepeten: tenere stroes skin evariep to / /[ ((

not poselble et jetets on emelesere mounting surfaces er laterferences, [ A

                                                                                                                           / 

estead the strees akin se for es poselble and etiltre a 43* (ret.) L tremel grade fillet er build my to meet l . gepe between the enclosere esed l' L etructure, seppert eteel et.e, Stro,e . V etin not be applied ever esisting ' ' festeners. 2.- Secure the strees skin with stoploe 6.4.4.A.S.B 001 to ensure a song fit between streec V ekin ese4 penet siwrf acee. Staples f shall not oveeed 3 en centers. Addittenal festenere she11 be added [ 07# f, n by wressies arouss-f the enclosure. / g4*

                                                                                                 /
3. Install circumferentist etress skin wrap for 1 112 ntn. ento eli L4.4.A.S.B 0 04 /

p p,

p. .

eenduit sectione entering the enclosure. N 4)

4. $ecure strese skin to conduit t.4.4.A.S.A Oral
                                                                                                                                                          /

fI ' sectiene using a nin. of one i festoner end steples se resputred to y g ensure anus fit est strese skin to i

                                                                                                                           /.

eendent section. fiewireshagtbe escured with a min. of ein ISO 7 /*-> twists, m 2, a S. Work 330-1 trowel 6. '*e meteriet into all strese skin erees and cover et t stories and feeteners within the 6.4.4.A.S.9 OCM b

                                                                                                                                                   !                  [    /        i i
          ,                       stress skin boundary. The streen skin layer should not b3 readily
                                                                                                                 'N' [f1i. '
                                                                                                                           /                              /# [                 $*

U wisible folloutes cure. IO CQP-CV-107 PROCEDURE REV. : 0 f I ~i FORM NO..CQP-CV-107-2 REV. O Pmea 7 7 ' 7 M OIO' ~~

[% '

                                                                                                                                    \
                                                                                                                                                                                                                ,     #;[

j , b /\ rirJenF 7_2 THFRMD-LAG 330-1 APPLICATION DN CARIFfND RArrWAY CHErrtIST CHFrri IST NO. TL- 2. Cus no. n- nor- mr- m m 21 tree InsreCrson rooCEsent 2NSF W INSTALt.ATION INSP. REERK INSP.  !#3PFC7tst Ofent 30 . AT!)IBUTES . REFERFECE G00. / CRAFT STATUS CRAFT STATUS INSPECTICW/ACCEFfalICE

j. SECT. /fW. TYPE A 3801. & DATE 3 g SIGN & DA?E 3 g SI44 & OATE, 90CleENT & RET.

13 Terify continuity of the motorial S.F.1 QCV (A) l; applicotten se followst * - / '

                      ,4, Continuity.- The syp!Ied meterial                                                           /0 ,M y                                                /

echiew e si,ee.e,e e contiwsous et ti.e eenwetepe

                                                                               - and thewith
                                                                                                                                               /

b-' 1ongiteelmel jotat9 are seated, O. Tieue! Datects - v '

1. ilo boles er creeks wider then g e.as- .

t f f 2.11o helse er erecke entending

                              -through the meterial to the strees skin.                                                                                                                                                                              -

3,. No vielble machenleal denego

                    '          ti.e. sensee. treams. teore.                                                                                                                                  .

y, etc.) 4 '8'

          ~_                                                                                                                                       /                                        A      _n                            %

i.. Terify that r reeered ,e, l's,et.redi"I itens e - rei.. hsve been- S . 7. 2 - QCV

g. .'p ' y s Jg ei IS ri,eni.ei f .teners u ..h .re ,eedii, visible and accessible eshibit no s.7.3 oc, F4fo. _ / ' g /

eb f4 leocenese een enemined by hand and era opeted as follows:

                                                                                                                                                                                 /M I

A. Festaaer specing for prefabricated per..) med ronduit sectlen theit be N M $f-12 Inrh meslease c= eentere end 2 inch moeinun from receway ende end butt jointe as messered frem the outside of the fire berrier meterial to the renteritme of the first-t..t.n.r . y het 330 Topeost has been "6.7.7 QCV V j t IF Commovitty Cleerence 6.5.4 FEV OI IS Piemy , S.I.18.3 QCM ' A. Cleanlinese

9. Air Supply - Verify free of oil, 6.1.38.3 OCM 05 esoter and foreign matter by placing a e ste cloth in front of the air.

_ sudsply for opprox. 30 esconde. CO CQP-CV-107. PRCCEDURE REV. : 0 - .. FORM

                                                                                                                                         .NO CQP..CV ...107-7. R.EV.3 Page 7.2 -- 8 0F 9 l82           g3

o o p v-O CHECKLIST NO TL- Z l IGilRE 7.2 THERMO-LAG 330-1 APPLICATION ON CABLE AND RACEWAY CHECKLTST CUD NO. TL- ftW- 9sf- h1drA'- El *" REMARKS (DESCRIBE UNSAT. ITEMS (S)/ INITIAL /DATE) i i i l f I i ( ACTIVITY COMPLETION INSTAL 1ATION IS COMFLETE IN ACCORDANCE WITil THIS Cl!ECKLIST. CRAFT SUPERINTENDENT /b v-M(1 N DATE N d b~ l

       ' ACTIVITY COMPLETION                                                                     ACTIVITY COMPLETION
   ;""        CE SIGN /DATE e o/6 t6 C2     f           8                /0[4[f8 OC SIGN/DATE         -

I CO 30 CQP-CV-107 PROCEDURE REV.: 0 4 FDPR No. CQP-CV-107-2 REV.I Par,e 7.2 - 9 0F 9 l0g

i. -

p . MER 3 FTEPF STOP TMSTAI>ATION- CHFrKITST T E CWE NO.' n-/ Terr-7s'*ET Aut#- 2/ SYSTEM- 2 .8 90 DRAWING /REV. QC' APPLICABLE- M 'YES NO BtEC/ELEV/ ROOM $#tr StacC SA/EW DOCUMENTS /REV. PREPARED BY MrAl St#NT/rA1 COMPONENT Merf-OF - 2/ - Amr .Segasrr#i z-Z

                                                                                                                                                                                                                              .l
                                                                                                                                                                                                                              .I i

l - i trise seseectica ruocesena mese a vastaa.a.mtses asse. feaa . tase. tusen.tna crusa i mm. arranevres asresence ans. i mart sunres marr status asseertsemimocurrasca j seer. free. trer a sras a ante s a suas a ents a y stes a sarL -, socesamt a arv. t

1. rare ste ,smotetted at seestsene e.r.3 ocv [- [
                        .a.a.ever theree-tes eeverese ete ,e e e               s.s.:         1                             Jt/                                     .

reeeney or.at first eyentas in a esmedmit. - f [ _ y [f f A [, [ t 7 Cable att drepe esitans protected 9.$.3.s SCT s I/ # If.- i ! recomere have Fire Step (e) laste!!ad.' / j

                 '3. Fire stage oro eemstructed moles                    .S.3.4.4   OCT                                                                                        -

themse-Leg 330-1 er 330-6s0 tremot /  ;

                                                                                                /

tredenotetteteendmefellemer'

                          ,1 store desstrt to reystred, dietence                             ,                                                                                  ,                                               !

from demustes to pant of eeverese / 'j teenteetten to 4 ela..'S' ser. WDet: samsmeeg meteriet afseetten tes5 be frem 1981 or . [i*//[ ff  ; i

                                        -Ht032.                                                   /                                                                      n I

1

s. Cablee e.te.t esper.at.ed
e. . to the moetenen.

S.S.4.B QCT F k

  • f, t
                                                                                                /                                                                      [j -                                                     ;

C. rhesne-Les motoriet ee'ap:letelF S.S.4.C OCT v Af j A ogsett fille 4 + the ersetFire stop bols /" .- t 18 bet of take rerseer. " I

3. tenere doentes to met" ragstred - . .
                                                                           . S.S.4.s   GCT        /                                 .
. verify tire stay depth (4" mim.. ' S" / . - ./ .i t
                           ' mes.) prior te anetettlag                                      V                              /*                                           fg                                                      f i                            yteinbeteated genets or Fleet'                                                                                                                                                                      i
                            -91eedtet esterset.                                                  /

'. t . O.

                        -. e ressared m see ee.t. .        t.t       e. .      . .. ,.,  OC. e                            ye                                         t ro,8y,
                                                                                                                                                                         /
                                                                                                                                                                         /                                                      ?

L f I- l 4 J J c 1

                                                                                                                                                                                                                        . A l-                                                                                                                                                                                                                         ,

! -CQP-CV-107 PROCEDURE REV. : 0 , FORM No. CQP-CV-107-'3 REV.0 Page 7.3 - 1 0F 2 g .i l J i RECORD TYPE CODE 6A.110 i. IQ  ;

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    *=r i or 6                                         UNIT 2                                                                     !

j gd.u{ccurosente.so.TUEVALUATION "g, FORMj

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                                               's m ausu -         Asua sac a m a i _ BEE SELDLO                           Z-8105 /2-FMA nousus                      e        -

N/A 3.J sus.zet or Tur In A.TEEIAL T Yt'E DF C,&6LE TE.A-Y o'o = 0 UVELS UTILI 2ED dITH Te.4 V FIEE STOP JERL3 it !*

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    .}j occuMonscenes votAtto          Tm        ursrecMCATON     .9) Butme                     EEVA11oN           Roou No.
     . C PES- n\ - 106I R/0                   Q MNG c coot C Pnocsoum        VAEJous.                   VM2JDUL            1/N2JDU.S lJ CoNDmoN oETAR.3 PEL       C. PES- m-J0GI             PRE.A. 3.1.12. 2                 DlDNEP.- GILL P82D VIOE      3 DUO SHEET * .5 TEEL 'TEAV CDysg,p                                         IM he.aDED ANCE LulTW "THG' Ehl6 I N551US DESIGN W bE.Al<JIAIG3 kJHEEE IVELEssne.y FGC. 7"HE INSTRl.LATIDN 0r FiPG STDPS IV &#&LE' TP.RYS. DE5] gal OLA4))N(as                       51. n02 , S HT Ofen, C,5N22AL UOTT A f3, STATE 3 C.DV52.5 (Y\ M SG F96P.JCATE.b                                 FP.Br71             VENDM' SlPPLIED TEA 9 cauetz. (e . M7'M                 DE- i"tDril IQGA. GALVIMI2.2D SWEET ST2L sm mua na,a.
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COUTEA E.Y TD 4eDIIE SEkL =~;'T.AC79I?. HAL 1(L5TALLBD kAlO GE AH cPTED 7 CAALE TL&Y FIES STOP .SEM.S (SeE LIST BE LC.D ) UT1LJ21Nb . DIL, %( U.Mi UU M PDE. TME 7.2L2U12ED TLAY CCLlGIL SELTIONS. a ,r_g. me gg g 20GE./ 20S2. 7502. 2.094 / 2.0141TDI X174/ fl74 75DJ I n4/ (Du 25D2. - g%b 2D94/?.094 124 Li90 /fl80 1301

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     !!jo Penm0N DETAA.3                                         C SCRAP        Q REPAIR "J"                % USE.AA48
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1 i '.' r _1.w.fe. 23f i nm 92. 597f pay, o vn m i PROCEDURE uISPOSITION DETAII,8 i l EscussIoM r I i

clarification
Further investigation indicates that the_ condition details require
o 7 fire stops were installed; of these:

i 2 had no metal sheathing installed + i 3 had stainless steel sheathing installed 2 had aluminum sheathing installed o L QC inspections were not performed or required on the sheathing. the sheathing There is no requirement for QC inspection of in the governing specifications ' and procedures, therefore the installation is not considered i a critical attribute by engineering. ]

         ~ .                            o     Per the design document:

i ! eii2-1701 required "Sht. 05 Note 9 the stainless steel sheathing is l

                                                                 ... only when Bisco brand materials are i                                              encountered" Bisco is name brand product. Promotec is

! the name brand product being utilized for Unit 2. l CAUSE: i s i The - craftenan i ==* = 1 1 = t ! the. muminmr sham *hin wis**i i it for stainless semeZ asterfaI.~ The antarial: he obtained was aluminum sheathing fram a Brown & Root fabrication area rather than from the j cont:: actors fabrication shop. In addition -the craftsman

j. misinterpreted not required. the design and installed the sheathing. where- it was

{ stop material -isThe sheathing is required only when Bisco brand fire encountered. The Unit 2 contractor exclusively use's "Promatec" fire stop material. j onnTc TwstreaTroms I  ; i ! The contractor has only installed the 7 fire stops described in the condition details therefers the extent of possible sheathing installations is limited to the 7 instances addressed in this TUE. i i N2 2PP305 2 MY.1 !O MCom)TWE coWE *

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200 1 , Tim 92 - 5 97f- my,_ o .1 m = 4 PROCEDURE DI5 POSITION DETAILS l j ACTIONS TO PREVENT RECURREN g ' The cognizant contractor personnel have been informed of the subject of this TUE and reinstructed in: i .

o The specific design requirement for sheathing at fire j steps. '

1 o The correct acquisition of material via their contractors j- fabrication shop.

Comanch v = AcTroms i

See hardware disposition 4 o i 4 i i I i { . i 3 I I JT305 2 2PPSOS 2 REY.1 REcoR3 TYPE C00E: 6 3 N , , ,. . .. 4

                                            ..._, ;; 3 3 3 7-- - - -        x 3-(- - --

g Pi .5 CF.Is. _w&041 TUE 1M 4 F971 No. , MARDWARE DISPOSTION DETAILS CONTRARY - TO BICCK 7 CONDITION OF DETAILS. THE REQUIREMENT FOR CABLE 3.1.12.2 TRAY COVERS PERTAINS REFERENCED IN CPES-N-1061 PARA. TO FIRESTOPS INSTALLED TO MEET THE REQUIREMENTS OF CSES-N-1061 AND DBD-ME-002, FOR PENETRATION SEALS. THE FIRESTOPS IN QUESTION ARE INSTALLED TO MEET THE REQUIREMENTS OF CPES-N-2032 FOR THERMO-LAG FIRE BARRIERS. THE CABLE TRAY COVER REQUIREMENTS FOR FIRESTOPS INSTALLED AS PART OF THERNO-LAG COVERAriE ARE ADDRESSED ON DRAWING M2-1701 SHT.05, DETAIL-5-3.1, SEE, NOTE 9. ALSO, CONTRARY TO BLOCE 7, PER FIELD INSPECTION, ONLY FIRESTOPS 2-094/2-094-7504 ; AND X-115B/X-11SB-7504- NAVE AN ALUMINUM CABLE TRAY COVER INSTAILED. F23tESTOPS 2-082/2-082-7502 AND 2-094/2-094-7501 RAVE NOT YET HAD A CABLE TRAY COVER INSTALLED. FIRESTOPS X-174/X-174-7501, X-174/X-174-7502 AND X-180/X-180-7501 HAVE A STAINLESS STEEL CABLE TRAY COVER INSTAILED. v PER M2-1701 SBT.05, DETAIL 5-3.1 AND NOTE 9.- UNLESS BISCO BRAND NATERIAL IS ENCOUNTERED NO CABLE TRAY COVER IS O >

            *** ~ -

THE FIRESTOPS IN QUESTION ARE INSTALLED BY PEAK SEALS UTILIZING PROMATEC MATERIAL. THEREFORE, CABLE TAAY COVERS ARE NOT REQUIRED. NOR DOES TER PRESENCE. OF A STAINLESS STEEL TRAY COVER DEGRADE TEF. FINISHED ASSEMBLY.

                                                                                           ~
            " REWORK 7504, TO COMPLY* FIERSTQF   Fe 2-094/2-094-750E WITH M2-1701               AMIFRSB/X-11_SN SRT.05, DETAIL   5-3.1.                  '
            "USE AS IS" FIRESTOP #'s 2-082/2-082-7502, 2-094/2-094-7501, X-174/X-174-7501, X-174/X-174-7502 AND X-180/X-180-7501.

i

PP306-2 2PP305 2 MV.1 O MCoR3 TWE CCM: h

h Report No. 12340-94307h December 16,1992 2 4]l Texas Utilities Electric APPENDICES O i j. Peak Seals Personnel Certifications O d o ona

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_ m. . .m..,,. - e iNUUL LP li3009 LP li8ed REE I!IL T I TRAINING p g p) m I t151 ALL . /..l b ADAlfS, ALBERT A. PK091 06- 22-92 06-26-92 06-26-92 07-23-92 T- R AGUILAR, ANDRE 11 A. PK155 08- 25-92 .____ AZAR, IH0ktAS fi. PK097 07-02-92 07-01 ' 07-02-92 07-02-92 07-11-92 T- 9 BAGBY, DONALD 0. PK102 07-02-92 07-02-92 07-02-92 07-20-92 T- R

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8. . ,_ c .M r c. o, -
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                                                                                         .               rhIJI    UO- ( J' A                                                                             ..

g i ih BITTER 0LF, kf0lCHAEL PKf99 08-03-92 08-27-92 09-02-92 -R- ___ BRACKETT, DONALD B. PK076 06-25-92 06-27-92 06-26-92 07-19-92 07-19-92 T- R BRAY JR., CEClL E. PLOO6 03-17-92 08-09-92 03-20-92 08-04-92 08-25-92 09-19-92 T-R-H BROUSARD, LEO L. PK002 07-17-92 08-09-92 03-20-92 00-09-92 08-25-92 T- 0 V BR0tlN, RAYLiON0 PKI10 07- 02-92 07-20-92 07-02-92 07-20-92 T- D CALVERT, UATHE I. Pfl50 12-27-92 08-05-92 08-05-92

                                                                                                                                                                                                      -T    _

CASS10Y, DENNIS E. PLO71 06-19-92 06- f 8-92 06-18-92 06-25-92 06 92 07- t 9-92 T- R- H C0TRONE0, JOSEPH F. PK069 07-19-92 07-27-92 06-19-92 07-20-92 T- R DAVIS, JOHNNEY L. PLO90 09- 01-92 08-05-92 08-05-92 __ _ _ _ _ _ T-4 ORALE, ifICHAEL 1. PLO99 09- 20-92 09-27-92 09-27-92 07-20-92 _ 04-20-92 T- R DUNNAH0E. In1V IS U. PLO90 06-26-92 06-25-92 06-26-92 T-OL'NNAHOE. TODO S. Pl.105 07-02-92 07-10-92 07-10-92 07-20-92 I- R 00NNAHOE, IROY N. PLO83 06-25-92 06-25-92 06-26-92 06-23-92 T- R to L

                                                                                                                                                   + - - -

PER3L2L CERTIF-

                                           /,,i                   -

BADGE OVERALL THERkl0-(m) THL 0- BA R- RES FEAT S TRUC/ (o RESPIRATh") ICAT lud RECORDS LIST NO. SFT Y/ TAN LAG LAG LP !!3010 SEALS EVBEO.1 IRAINING 1 INDOC. LP 113003 LP 113029 RES HILT I IN DUNNAH0E, JAllES 0. PK109 07-02-92 07-10-92 07-10-92 07-23-92 T- R ELLEIT, JASON T. PK011 07-19-92 06-18-92 06-18-92 08-09-92 T- R GRIFFIN, ROBERT 11. PK100 07- 02-92 07-02-92 07-20-92 I GRiklES, JILik!Y C. PK039 03-19-92 03-16-92 03-16-92 07-23-92 09-07-92 03- t 7-92 T- R-H GUIDRY; JR. ROLAND E PK042 04-20-92 04-27-92 09-27-92 07-39-92 09-20-92 T- R HAMkfOND, kiiCHAEL -V. PK123 07- 09-92 07-09-92 07-10-92 07-19-92 07-19-92 T- R HANNA,RICHARDI,Y~'PK012 08-20-92 08-09-92 03-20-92 08-09-92 08-25-92 T- R-Y HARGRAVE, RODNEY J. PLO99 09- 01-92 06-Il-92 06-12-92 07-30-92 T- R HOLDLER, JACLY 11. PK098 09-01-92 06-09-92 OE-09-92 07-19-92 T- R HORN, RICHARD 0. PK097 05-19-92 07-27-92 05-21-92 06-25-52 OE- I5- 92 T- R IVY, RICHARD H. PK079 06- 25-92 07-27-92 06-26-92 07-19-92 07-11-92 T- R JACKSON, 8 ILLY R. PK109 07- 02-9'2 07-02-92 07-02-92 07-02-92 07-20-92 T- R LENNEDY, CLARENCE A. Pri 32 07-16-92 07- t 6-92 07-17-92 I LiLLGORE, RICHARD G. PLO69 06-19-92 06-13-92 05-18-92 06-25-92 OE 92 T- R LAYTON, JAMES 8. PK152 08-25-32 08-15-92 08-17-92 'T LAYTON, EENT E. PL019 03-17-92 03-16-92 03-26-92 07-30-92 09-07-92 03-17-92 T- R-H

           / LOCI: HART, THOMAS U.                                                                   PLi 51  08-25-92 08-13-92 08-13-92                                             I M,: ROBERTS. JERRf D.                                                         PK093 06- 25-92    06-25-92 06-26-92  07-30-92                                 T- R to s

3

i Letsvietet - L Lies 11 UllL 1 f1th MU iTILI M L DC O~ ret 3 f Erit- 3 I rig t.* ritOrinnin IC AT IObEECORDS L IST U t10.'uL' LAG TLlerILLSFTVIIRN. ' LAG LP R3010 SEALS. g ' 11111000. LP: l13009 LP VO1 RES EMBED.ITRAINiliG HILIl-I NST ALL'. MONIGOMERf, GEORGE PK038 07- 02-92 07-02-92 07-02-92 07-20-92 T- R M00RHEAO, RONN IE. D. PK106 07-02-92 07-02-92 07-02-92' 07-20-92 T- R  : M O R E L A tl 0 , ti l L L l A M PK053 06-05-92 07-09-92 06-09-92 07-30-92 T- R PARKER, BENtlY P.AY PK157 08- 27-92  ; PEllNINGTON, H0llELL- PKi08 07- 02-92 07-02-92 07-02-92 T-PHIPPS, DAVID PK137 07-16-92 07-27-92 07-17-92 T-PRICE, 8088Y PK013 07-02-92 07-02 07-02-92 07-23-92 T- R PUCKETI; C0tlNIE PK101 07-02-92 07-02-92 07-02-92 07-t9-92 07- l'l- 92 08225-92 T- R-H - _ _ RAY, SHERRI PK133 07-16-92 07-27-92 07-17-92 T 5 MALL, BILLY PK107 07-02-92 07-02-92 07-02 07-19-92 07-19-92 T- R SMITH, RONALD PK113 07-10-92 07-10.92 07-17-92 I . I- SUTTON, JAMES PK088 06- 25-92 06-25-92 06-26-92 I _.. TRUETT, JAMES PK070 06-19-92 06-18-92 06-18 07-23-92 T- 9 UMBERGER,'ARLIE PK018 03-17-92 09909-92 08-04-92 05-01-92 T- R . VAUGHT, J0tlNIE PK023 03-17-92 03-10-92 03-10-92 07-23-92 T- R

        !lHIPPS, JOHN                        PK022  03-17-92 03-10-92 03-16-92       07-23-92                  09-07-92 03-17-92      T- R-H
        !!lL50N; 5AMUEL-                     PK095  09-01-92 06-11 92 05-12-92                                                        T til N G O. L E i l N :               PK009 08- 31-92  06-09-92 05-09-92      08-01-92                                         T- R MICAR, IllLLI AM                     PK030 09- 21-.92 08-09-92 09-27-92                                                       T:

P4ul Ac/Amli- - @ c-loll & l$4p4 Bs:d'wat 9 c- . fil. 4,a L 5sl,. - 4 <-  : ex < ]~ ' ha ,

3 O} l i CONTRACT NO. C-4040219-7C5  ; l l- ^b , i O

                                                                                                                                        .l VERIFICATION OF COMPLIANCE TO REQUIREMENTS OF CPSES STA 152                               .

uME: 3onnic Moorhead auxE # Pbl %

soc.szc. No. 45oi - 9 o 6t,%
   " RAINING HAS BEEN GIVEN TO AND AcmMPLISHED BE TEE ABOVE NAMED I?ERSON -IN THE FOLTAIIBG:
                               ~

i1 QAM-201aa m. !! QAP-0010. CP m. UNIT _ Y-1 QCP-0018.CP W. .

                                                                                            'C1.A5511 QCP-C070.CP             W.,

QCP-0050.CPT M- ' ESPIRATORY P N (RESPIRATOR 3M 9925)- PEAK SEALS SAFETI MSDS FOR INFORMATION stb blMlu ONLY CE.M -107 BE7.Y 'heu.o h 4 ) {fsp/ W f6 O AUG 141992 BROWN & EccT SAFETT - iU ELECTRIC I

 !       PEAK SEALS N N                                .

INSDm'prorg gy esmnanvir- (3 & R) . 1 TSI ('rsmrunLAG nar wr nnURD, TEEDRY E APPLICATION) CTEER: QCP-0069.CPT EE7.

RDrT@7 c DrYTP TN5"'f'ATTAW7 W
  • a
                  .Lt.u BY:

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        .r:TtE               aum= gunsmuza
                                      'A DATI:

PEAK SEALS 24 CONTRACT NO. C-0040219-7C5 O VERIFICATION OF COMPUANCE TO REQUIREMENTS OF CPSES STA 152 NAME 'b E600 F dti, - BAD 2 # R O I31 SOC.3EC. No. 447-NE~bb TRAINDIG PERSON IN THE FOLLOWING: HAS BEDT GIVEN To AND ANMM BY THE ABOVE NAMED o QAM-201sa ' EEv. O QAP-0010.CP EE7. O QCP-C018.CP EE7. Q QCP-0070.CP EE7. 0 QCP-0050.CPT REV. O RESPIRATORY PROTECTION (RESPIRATOR 3M 992S) c PEAK SEALS sAFErr c MSDS g( 03P-C7-107 RE7.d C BROWN & ROOT SAFETY 3 PEAR SEALS AmeTwISTRATION 3 INSTAILATION OF tunnerir.ac (3 5 R) 3 TSI (THERMOLAG BACEGROUND, THEORY & APPLICATION) 3 OTHER: QCP-0069.CPr REV. 3 PDK SDIS RES INSTMIATHE 1 man c m mmrrmm m VERIFIED BY: hAME A6 e DATE b ~ N ~3 3

varsars

                                                                                      ~

CONTRACT NO. C-0040219-7C5 V" 10572 O vEamcm,orcourw2cs TO REQUmWPrrS 0F CPSES STA 152 NAME: _ GM IC@n BA0cE i PK_ O f f 0 Soc.SEC. No. O R - ( n (1 - woo TRADfING HAS REEN GIVER TO AND AcmMP "" HE THE AL~ ' NAMED PERSON Di THE FCIIcWING: C QAH-20188 ' EE7. . O QAP-0010.CP EE7. O QCP-C018.CP MEF. Q QCP-C070.CP EEV. , 3 QCP-0050.CPT N- ' 3 {usPIRATORY mi+- <r (nrw.usTCR 3M 9925) 2 PEAK sur.s gartry 2 MSDS ggp y ccP-c7-1.07 EEV.k b oEN4 i anown a noor sArzTY PEAK snTR ADMTRISTn'!mur . INSDrnMON QF TNRment.u: (BdR) T3I (THEEMcLAG R1cTrmnUND, THEcRY & APP 7mm1_M) OTHER: _ QCP-0069.CPT EEV. PEAK SE:hLS BES INSDUATH11 men.n c nerw mwarixerrn we -

           . Lao BY:

Nun, . LeM mx.2 - unumuza oxrz 6-H-9 >

PEAK SEALS 2<U CONTRACT NO. C4)40219-7C5 O VERIFICATION OF COMPLIANCE TO REQUIREMENTS OF CPSES STA 152 man Wewe n Pe n ninc u n - rat 0,os c . SOC.SEC. No. Ih9 30"19 TRAINING HAS BEEN G1 TEN TO AND ACCOMPr.Tnyn BY THE ABOVE NAMED PERSON IN THE FOLLOWING: a QAM-201as m. o QAP-0010.CP m. -C QCP-0018. CP . E. c QCP-0070.CP W. O QCP-0050.CPT M- ' c RESPIRATORY FROTECTION (RESPIRATOR 3M 9925) cO PEAK SELLS SAFETI ' c MSDS y CCP-c7-1.07 BE7.k 3 BROWN & ROOT S&FETT 3 PEAK SEALS arnerirISTRATION - -3 INSTArTATION cy Purenerman (3 5 R) .3 TSI (THERMOLAG B1rw:'antHfD,- TNFnnY & APPLICATION)- 1 OTHER: QCP-0069.C3T W. I PEAK SEMS IUCS INSIAUATEN t w c trrw mmT?wiru wm VERTLLsu BY: TAME ' mI m - mus-CARE 64-1 A

PEAK SEAIS N I. O k 8 1 2 CONTRACT NO. C4)40219-7C5 O ysmu.noN OF COMUANCE TO REQUmWmfrS OF CPSES SIA 152 NANE: b e n h R f c 4 (~o h o n - ingxE j fk_ coq q SOC.SEC. No. S &ls -(c(,- Q(s 251 TRAINING HAS REEN GI7EN TO AND Aramwprmm BY THE ABOVE NAMED PERSON IN THE FQIIcWIBG: C QAM-20188 ' JE7. O QAP-0010.CP W. UNIT. O QCP-C02.8.CP W. , O Cl.Ac~~~ 11' QCP-0070.CP 1E7. , O M. QCP-0050.CPT C RESPIIIATORY P N (EEEPIRATOR 3M 9925) c PEAK SE1IA SAFETI 3 MSDS ' FOR INFORMATION S th41% ONLY

r 03P-C7-107 EE7.y h .c h.s4 Mef
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BROWN & ECOT SAFITY - U ELECTRIC 2 PEAK SERI.5 ArnmmmtaTmr . 6 1 INSTyrzscTON QF ewymartr.nc (3 -5 R) 1 TSI (Twrmec1 Lag narwrmrMDfD, TEEDIDE & APPI.ICATION) t OTHER: m 069.CPT EE7. PEA'E SDIS IES INSnIIATDI

                  - me c wrn' metram we                                                         -

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PEAK SEAIS .}}