ML20128H068

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Fire Endurance Test of Thermolag 330-1 Fire Protective Envelope (36 Inch Tray W/Tee)
ML20128H068
Person / Time
Site: Comanche Peak Luminant icon.png
Issue date: 11/04/1992
From: Humphrey C, Priest D
OMEGA POINT LABORATORIES
To:
Shared Package
ML20127K787 List:
References
12340-93543B, NUDOCS 9302160261
Download: ML20128H068 (447)


Text

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O FIRE ENDURANCE TEST OF A THERMOLAG 3301 FIRE PROTECTIVE ENVELOPE (36" Tray with Tee)

Project No.12340 93543b Scheme 1 Assembly 2 O FIRE ENDURANCE TEST TO QUALIFY A PROTECTIVE ENVELOPE FOR CLASS 1E ELECTRICAL CIRCUlTS September 9,1992 Prepared For:

TU Electric COMANCHE PEAK STEAM ELECTRIC STATION P.O. Box 1002 Glen Rose, Texas 76043 1002 g

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lleport No. 12340-93543b Septemix r 9,1992 Texas Utilities Llectric Page il

'V ABSTRACT A tray 3G" wide cable tray assembly clad with a nominal thickness of 1/2" of Thermo Lag @ 3301 described herein was evaluated in accordance with the Texas Utilities Electric TEST PLAN, based essentially on the requirements of American Nuclear Insurers Bulletin B.7.2,11/87, Attachment B entitled: "ANIIAIAERP RA Standard Fire Endurance Test hiethod To Qualify A Protective Envelope For Class IEEE Electrical Circuits", Revision I, dated November 1987, and found to meet the requirements of that document por a fire resistance period of 60 minutes.

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 'mder the surveillance of either Texas Utilitics' or 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 re nain available for review by authorized persons.

f& z 8 1 Constance A. Humphrey / ' Dat6 Manager, QA Dept.

l/ 9.*2 Deggary IfPriest Datd '

President v

r iteport No.12340-93543b September 9,1992 Pags 111  ;

Texas Utilitias Elsetric O

, TABLE OF CONTENTS  ;

rmM PAGE T

INTRODUCTION 1 ,

PROCEDURE -I TEST ASSEMBLY Test Deck 4_

Test Item (Tray) -8 '

Tray Supports 8 ,

Electrical Cables 8 Thermocouple Placement 9 Circuit Integrity Measurement 10 Megohmeter Testing 11 O restassutrs CONCLUSIONS 18 17 APPENDICES Appendix A: . CONSTRUCTION DRAWI'NGS 18 Appendix B: TEST PLAN 27 Appendix C: THERMOCOUPLE LOCATIONS 43 Appendix D:- CIRCUIT INTEGRITY DETAILS _. 51

- Appendix E:' GRAPHICAL TEST DATA 58 Appendix F: TABULAR TEST DATA 130 Appendix G: QUALITY ASSURANCE 153 Appendix H:j PHOTOGRAPHS 392 Appendix I:: THERMO LAG CONSTRUCTION DWGS 429 Last Page of Document 432.

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Report No.12340 93543b September 9,1992 .

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INITIODUCTION The protection of vital electrical circuits from the effects of an external fire exposure is of primary concern in the design and construction of an electrical power generating plant. Typical" fire protective envelopes" are designed to protect the contents of an electrical raceway for fire exposure periods of one to three hours, during which time the electrical circuitry must remain functional.

The external fire exposure selected to evaluate protective envelope systems is that described in the ASTM E119-88 Fire Tests of Building Construction and Materials (E119 Time Temperature Curve, described later in this document).

Typical fire test programs involve the selection and construction of a specific ,

electrical raceway system, instrumentation for thermal and circuit integrity measurements, followed by the application of the protective envelope system by qualified personnel.

The objective of this project was to evaluate a specific protective envelope system for use as a 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> fire-protective envelope for redundant electrical systems. The entire program was carried out in accordance with the Texas Utilities Electric, TEST PLAN, One Hour Fire Endurance Tests of Articles Protected with the O Thermo Lag 330 Fire Barrier System, Rev. 3, dated May 27,1992, which may be found in Appendix I of this document. For reasons of claity and to reduce redundancy, items discussed in the Test Plan have not been duplicated elsewhere in this document.

This standard should be used to measure and describe the properties of materials, products, or assemblies in response to heat and flame under controlled laboratory conditions and should not be used to describe or appraise the fire hazard or risk of materials, products, or' assemblies under actual fire conditions. However, results of this test may be used as elements of a fire risk assessment which takes into ac-count all of the factors which are pertinent to an assessment of the fire hazard of a particular end use.

l TESTPROCEDURE l This entirn test program was performed in accordance with Texas Utilities Electric TEST PLAN, Rev. 3, which has been included in Appendix I. Many of -

. the specific details of this project will be found in that document. H g

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Iteport No.12340-93543b September 9,1992 '

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FIRE TEST FURNACE The test furnace is designed to allow the specimen to be uniformly exposed to the specified time temperature conditions. It is fitted with symmetrically located natural gas burners designed to allow an even heat flux distribution across the surface of a test specimen.

The temperature within the furnace is determined to be the mathematical aver-age of thermocouples located symmetrically within the furnace and positioned 12 inches 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 be determined. The materials used in the l construction of these thermocouples are those suggested in the E119 test standard.

, During the performance of a fire exposure test, the furnace temperatures are j 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:

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Temperature Time 1750 - g) g)

C 1500 -

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1000 5 1250 -

2 1300 10

$ 1000 - 1462 20 5 750 -

1550 30 g , 1700 00 g 500 - ,

1792 90 1850 120 250-1888. 150 0 . . . . . , , , , ,

1925 180 0 25 50 75 100 125 150 175 200 Time (minutes)

Firure 1 The test furnace used consists of a large horizontal (xposure chamber, with an-internal dimension of 12 ft long and 7 ft wide. The furnace is equipped with difruse-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 egr g' O*

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Report No. 12340-93543b Septemb:r 9,1992 Texas Utilities Electric Page 3 O

the furnace being controlled by a single overall gas control valvo. Capable of a maximum heat output of 5 million Blu/ hour, these burners are arranged well be.

low the exposed face of the specimen to ensure an even temperatuce at the surface of the specimen. Windows are located on two sides of the furnace to allow observa-tion 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" to a total height of slightly over 79 inches from the furnace floor to the top of the ledge.

The fire test is controlled acco ding to the standard time / temperature cure, as in-dicated by the average temperature obtained from the readings of the furnaco in-terior thermocouples symmetrically located across the specimen,12 inches away.

The thermocouples are enclosed in protection tubes of such material and dimen-sions that the time constant of the thermocouple assembly lies between 5.0 and 7.2 minutes, as required by the E 119 standard. The furnace temperature during a test is controlled such that the area under the time / temperature curve is within 10% of the corresponding area under the standard time / temperature curve for the o one hour test period.

O Temperatures on the interior of the fire protected systems are measured with Type K, 24 gauge, Chromel Alumel electrically welded thermocouples formed from Chromel and Alumel wires of "special limits of error (*1.1 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 fiber or Nexcl8 insulation).

l l To measure the circuit integrity of the cable systems, all conductors in each cable l type are wired into a single, continuous electrical circuit, with resistors between l

cach conductor color, so that the loss of circuit integrity can be determined. Loss of circuit integrity is defined as a short from one conductor to any other conductor

or a short from one conductor to the tray or conduit metal. (For instance, if a raceway contains 7C/#12 AWG cables, all of the conductors of a particular color are connected into a single, series 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].)  ;

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The furnace pressure is controlled to be as nearly neutral with respect to the sur-rounding laboratory atmosphere as possible, measured at the vertical mid height

_ of the test specimen. Adjusting the neutral plane at that position results in a f'# %

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lhyx>rt No. 12340 93543b September 9,1992 Texas Utilities Electric Page 4 O

nominal +0.015 in. WC pressure at the top of the specimen (under surface of the deck) and -0.015 in. WC pressure at the bottom of the specimen.

IIOSE STREAM TISI' 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, erosion, and cooling effects of a hose stream directed perpendicularly at the exposed surface of the test specimen as outlined in the sttmdard. The stream is delivered, for a minimum period of 2-1/2 minutes, through a 2-1/2 in. National Standard Playpipe equipped with a 1-1/8 in, discharge tip, with a nozzle pressure of 30 psi and with the tip of the nozzle a distance of 20 ft from the exposed face. 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 p the specimen.

G TEST' ASSEMBLY TEST DECK The test deck consisted of a perimeter of 3" structural steel channel, welded together into an 8 ft by 13 ft rectangle, with the points outward. Over the top of this framework was welded a layer of 10 GA steel sheet, to form a continuous, smooth top. Pipe sockets (4"o, sch. 40 steel pipe) were then welded onto each corner, so that 3"o steel pipe legs could be attached or removed at will. 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 typical;y attacbed to the test item above the dock level, to rigidly fix the item to the deck. Following the installation of the test item, the deck was reinforced with steel char.ncl positioned so as to minimize any warping, bending or sagging during the are test (the size of the channel being selected after considerction of the amount of stiffness required for that particular assembly), and then insulated on the underside with two 2" thick layers of 6 pcf ceramic fiber blanket, held in place with impaling pins, spaced a maximum of 12" 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.12340-03543b September 9,1992 Texas Utilities Elxtric Page 5 O

10 GA deck steel b" " M )}}}}}}} fj###Mww C c Impaling pin ha nel - k .B1ankg,t

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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 " box" around the penetration point in the deck steel war formed of 3" steel channel on edge (to give a nominal 4" clearance completely around the penetration point), and the enclosed area completely filled O to a nominal depth of 3" with silicone foam fire seal, silicone foam fire stop

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                                                                                                                                        <           Test deck b

C < Insulation 3 MMGMb% / 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 . tomo, a. n l;

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Iteport No.12340-93543b September 9,1992 Texas Utiliti:s Electric Paga6 penetration seal is considered a part of the support system, and is not in itself being evaluated by this test method, the important aspect of the seal is that it be >

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

TESTITEM MATERIALS (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 are the nmgs. The T.J. Cope rung is a rectangular shaped bent plate with two open ended legs turned inward. The 13urndy 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 follows: O V NITit113UTE 13UltNDY.liUSKY T.J. col'E Side rail thickness 12 GA 12 GA Itung thickness 16 GA 16 GA Splice connector fitting thickness 11 GA 11 GA Itung spacing ~ 6" o.c. 6" o.c. Rung dimensions 1-1/4" w x 3/4" h 15/8" w x 13/16" h x 5/8" leg x 3/8" leg Cable tray straight sections consisted of ASTM A607, GR 50, hot dipped galvanized

    >> teel, ASTM A123. Cable tray fitting materials were in accordance with ASTM A570, GR 36, hot dipped galvanized steel, ASTM A123. Cable tray tee sections were made of materials meeting the requirements of ASTM A570, GR 36, hot dipped galvanized steel, ASTM A123.

All test items were constructed from materials randomly extracted from TU Electric's Comanche Peak Steam Electric Station stock material storage areas in accordance with existing site procedures. O of$I% v _ - - _ _ - - -_-- - - - - - - - - - _ - - - - - - _ - - - - - - _ - - - - ~

Report 110.12340-93543b September 9,1992 Texes Udlities Electric Page 7 O Electrical cables utilized in this and other tast programs consisted of site specific cables sup?l ied by TU Electric and taken fron. CPSES lot inventory. These cables were as foilows: CitOSS. CABLE CABLE DIAMETER SECTIONAL TYPE FUNCTION DESCRIPTION (In.) AREA (in2) W-020 Power 3C/#6 AWG 600 v. 0.980 0.754 W-023 _ Power 3C/#8 AWG 600 v. 0.747 0.438 W-047 Control 7C/#12 AWG 600 v. 0.605 0.287 W 048 Control 5C/#12 AWG 600 v. 0.575 0.200 4 Shielded, W 063 Instrumentation Twisted Pair 16 0.737 0.427 AWG 600 v. W 071 Instrumentation 5C/#16 AWG 600 v. 0.474 0.176 The cross sectional areas listed herein represent the Laboratory's average of ten measurements of each cable type. Thermo-Lag

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

(TSI), St. Louis, MO- prior to initiation of- the test program. Therefore, the Thermo Lag 8 materials extracted from CPSES site stock were representative of materials installed in the plant. Each one hour rated Thermo Lag @ 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 fattory 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 craft 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, DC 3-6548 RTV silicone foam fire stop material and Thermal Ceramic Knowool M Board (ceramic fiber damming board). These materials were all O g-O' o

lhwrt No.12340-93543b September 9,1992 Texas Utilities Electric Page 8 O previously supplied by Promatec, Houston, Texas. Other commercial grade products used were: 1/2 in, wide x 0.020 in. thick type 304 stainless steel rolled-edge handing straps with wing seals; 16 to 18 GA stainless steel tie wire; and, 0.010 in. stainless stcol sheet metal. TEST ITEM (TRAY) The assembly consisted of a T.J. Cope brand 36" wide x 4" deep,12 GA ladder back tray tee section (Catalog No. GG 3Gft 1206 CP) connecting two Burndy Husky 12 GA ladder back vertical tray sections (Catalog No. SGYA 36144), assembled into a "U shaped" configuration having a 102 inch horizontal dimension and a vertical dimension of 72 inches at each leg. One leg transitioned into the tee section via a 35 in. x 4 in ladderback 90* vertical fitting with 24 in, inside bend radius. The opposite leg transitioned into the tee section via a 1/2 in, thick x 7 3/4 in. x 7 3/4 in. (A3G material), L shaped splice plate (CPSES site fabricated), forming a

  " squared," or zero radius 90' bond. The distance from the bottom of the tray to the top support angle measured 36 in. in length. A 44 in. x 12 in, hole in the deck steel was provided around the vertical tray leg connected to the " sweeping" 90' bend.

An 8 in, wide x 12 in, high rectangular concrete collar was installed surrounding the blockout. The blockout was scaled with Dow Corning 3 6548 RTV silicone foam material. Internal silicone elastomer (Promatec 45B) seal material was O installed inside each tray leg at the level of the top deck. A single unistrut member was installed onto the outside face of the " squared" 90' vertical, approximately 12 in, down from the underside of the docking and extending approximately 20 in, beyond the face of the tray. Drawings of the test item and supports are located in Appendix A. TRAY SUPPORTS The cable tray was supported and held into position by three (3) trapeze type hangers using 3 in, steel channels bolted together with 5/8 in, diameter x 1 1/2 in. A307 or A325 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 10 GA reinforced steel dock using 1/2 in, diameter threaded steel rods and two (2) 2 in thick layers of calcium silicate board (Promat Fire Protection, Inc., Promat-L Board) sandwiched between the clip angles and

  .the steel deck.

ELECTRICAL CABLES All electrical cables used in this project were site-specific for CPSES. An approdmate 1/3 mix of Power, Instrumentation and Control cables totaling 52 cables were pulled into the tray, maintaining a single layer, except in the tee section where the cables were looped towards the mouth of the tea to produce a b o .

Report No.12340-93543b September 9,1992 Texas Utilities Electric l' age 9 O higher cable loading. The mouth end of the tee was filled with a 5 in. depth of Thermo Lag 8 3301 materials. The usable cross sectional area of the cable tray was (3 in. deep x 30 in wide) 108 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. CROSS. CABLE NUMBER SECTIONAL  % OF '1DTAL

                                      '1TPE      PRESENT     AREA (in2)           AREA W 020          6                 4.524             4.19 W 023           7                3.06G              2.84
                                               'IbtalPower        7.590             7.03 W-047           9                2.583      ,

2.39 W-048 10 2.600 2.41

                                             'IbtalContml         5.183             4.80 W-063          8                3.41G              3.16 W-071         12                 2.112             1.96 TotalInstrtunentation         5.528             5.12 TOTAL FILL =>            18.301           16.95 %

The cables shown above were placed in the tray in a single layer in a random manner and attached to the tray rungs with standard electrical plastic tic wraps. The excess ends of the tie wraps were cut off. Care was taken to ensure that one 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. THERMOCOUPLE PLACEMENT 24 gauge, Type K, Chromel Alumel electrically welded thermocouples (Special Limits of Error: 1.1'C, purchased with lot traceability and calibration certifications) were attached nominally every 12 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 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 31/2 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 o?,) ; t

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Report No. 12340 93543b Septemler 9,1992 Texes Utilitirs Ehetric Paga 10 O rail and the Instrumentation cable with thermocouples 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 rails of the tray assembly, being held in position by clamping under the head of a

                           #8 x 32 x 1/4 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.

CIRCUIT INTEGRITY MEASUREMENT 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 cable tray stoc!) 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 conductors in each cable type were connected together in a single series circuit, with a 1000 resistor between each. Finally, a 10000 resistor

                         )  was installed between this circuit and a 12 volt battery to act 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 circuit allows the measurement of steady state voltage dropa across the entire circuit, which will change accordingly as any combination of the resis-tors are removed from 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 4-1/2 digit DVM) was noted and recorded as i V (initial voltage). Then one of the 1000 resistors was shorted, and the resultant voltage measured and saved as V-loon (voltage with 1000 removed from the circuit). This, then, 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, 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. A V g

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F Heport No. 12340-93543b September 9,1992 Texas Utilities Electric Pcge 11 O INSULATION RESISTANCE TESTING i As an additional check on the condition of the conductor insulation, insulation resistance testing was performed on each cable type before and after the fire and hose stream tests. The insulation resistance tests were performed using the instrument referenced in the Test Plan, set at a 500 volt DC :evel. To perform the insulation resistance test, the connection to ground was broken for each cable type and the megger leads connected to the circuit (anywhere along the circuit, it  ; doesn't matter where) and to the ground. Any leakage between that cable type's - conductors and ground is readily detected in this manner. Upon discovery of a significantly lower resistance reading, which will be documented 'n the test report, the cable circuit is to be broken apart into it's individual conuuctors and each one meggered separately until the ofrending conductor is found. That cable is then removed from the raceway and visually cramined to determine where and how the failure occurred. .

       'Ihermo Lag hastallation Highlights Thermo Lag materials were installed in accordance with the instructions contained in the Test Plan, Rev. 3. Short abstracts of the installation are included g herein to clarify specific details. Drawings of the installed Thermo-Lag on the test y assembly is shown in Appendix 1.

Thermo Lag

  • 3301 Flat and V Ribbed Panels (1/2 in, rwm. thickrwas)

These panels were used to construct the cable tray protective envelopes (flat and v. ribbed) and to protect the support members (flat panels). All were installed with the stress skin facing inwards, away from the heat. Where v ribbed panels were installed to the inside face of the sweeping 90' bend and on top of the horizontal tray run, the v-ribs were positioned perpendicular to the tray side rails. Where panels were installed onto the tray bottom, v ribs extended parallel to the tray side rails. Panels installed against tray side rails (on horizontal and vertical tray sections) were positioned with the v ribs in the vertical - direction. Thermo Lag

  • 33S1 Subliming Tmuel Grvde 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).
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llepart No.12340 93543b September 9,1992 Texu Utiliti:s El:ctric Paga 12 O Application Methcxis The support members were covered using two (2) layers of flat Thermo Lag @ 3301 panel material. The single unistrut member was covered with Thermo Lag

  • 330-1 flat panel the total width of the 36 in, wide tray, plus an additional D in, beyond the side rail where the Thermo Lag
  • 3301 application terminated and 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 (over the outside layer). To preclude excessive sagging of the top panel material during fire exposure, the cable tray was pro-banded using similar banding material spaced nominally 12 in. o.c., which wrapped completely around the body of the horizontal tray run. The entire tray within the test enclosure was covered with Thermo Lag

  • 3301 V.

Ribbed panels on the top, bottom and sidea of the tray. In each case, the side panels were placed into compression whereby once the banding is applied and tightened, the sido panels were sandwiched by the top and bottom panels. All joints and seams were pre caulked with Thermo Lag

  • 3301 Trowel Grade material and secured in place using the stainless steel bands.

Upgrade Techniques

  • At sido panels opposite the mouth of the tee section, a thin layer of Thermo-Lag @ 3301 Trowel Grade material approximately 3/16 in, thick was applied from the joint extending 5 in, towards the middle of the tray on the top, bottom and side exterior panel 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, bottom, side panels and the 3/16 in.

Thermo Lag

  • 3301 Trowel Grade. 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 - 6 in.

maximum centers. The stress skin was installed such that the top and bottom Thermo-Lag 8 3301 panela by were overlapped 5 in, minimum. A skim coat of Thermo Lag

  • 3301 Trowel Grade material, approximately 1/16 in, thick was applied over the stress skin and tie wires. Finally, a Thermo-Lag @ 350 Topcoat was applied over areas where the Thermo Lag @ 3301 Trowel Grade material had been applied, following the required 72 hours of cure time.

The inside and outside joints between Thermo-Lag

  • 3301 panels along the zero-radius (squared) 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 seven stitches, spaced six inches apart.

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Report No. 12340-93543b September 9,1992 Texas Utilities Electric Pcge 13 O

 +   The top Thermo Lag
  • 3301 panel was " stitched" 3 3/4 in, away from the zero-radius 90* bend, eight stitches,5 in. apart.
  • The Thermo Lag 8 3301 panels at the mouth edge of the tee were stitched into the Thermo Lag
  • 3301 tray firestop, eight stitches,5 in. apart.
  • The top Thermo Lag
  • 3301 panel approximately 5 in, from the mouth of the tee towards the center of the tray (extending parallel to the previous stitches) were fastened with eight stitches,5 in, apart.
  • The Thermo Lag 8 3301 panels extending across the width of the tray, approximately 8 in, away from the center of the support hanger closest to the top of the sweeping 90* bend were fastened with eight stitches,5 in, apart.
  • The top and bottom Thermo Lag 8 3301 panels were fastened to the side panels from the beginning of the horizontal end of the sweeping 90 bend transition to the bottom of the 1 steel deck using stitches spaced 5 in. apart.

The horizontally scored Thermo Lag

  • 330-1 panels were stitched in nine places, 5 in, apart (on top) and ten places 6 in. apart (on bottom) at the sweeping 90 bend, TESI'RESUL'IS The completed test specimen was placed on the Laboratory's horizontal fire test furnace and the thermocouples and circuit integrity systems connected to the data acquisition system and their outputs verified. The test was conducted on June 22, 1992 by Deggmy N. Priest, project manager, with the following persons present:

Mike Murphy - USNRC Malcolm Widman - USNRC Steve West - USNRC Joe Ulie - USNRC Chester Pruett - TU Electric (Fluor Daniel Corporation) Rick Dible - TU Electric (ABB Impell Corporation) Cal Banning - TU Electric (ABB Impell Corporation) Obaid Bhatty - TU Electric Melvin Quick - TU Electric (Stone & Webster Engineering) Bob Braddy - TU Electric Gene Beckett - TU Electric Frank Collins - TU Electric (Stone & Webster Engineering) Ken Stickler - N.I.S.T. Deggary Priest - Omega Point Laboratories, Inc. h 0" "o o no  ;

'l

     & port No. 12340-93543b                                                 September 9,1992 Texas Utilities Electric                                                         Page 14 O

Kerry Hitchcock - Omega Point Laboratories, Inc. Connie Humphry - Omega Point Laboratories, Inc. Richard Beasley - Omega Point Laboratories, Inc. Laudencio Castanon - Omega Point Laboratories, Inc. Ben Evans - Thermal Science, Inc. The furnace was fired and the ASTM E119 standard time temperature curve fol-lowed for a period of 60 minutes. The pressure differential between the laboratory 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 column throughout the test. The furnace was fired at 10:50 p.m. By 0:30 (min:sec) the stainless steel bands were drooping below the center of the tray tee by approximately 2 inches. By 0:44 (min:sec) the outside surface of the test item was beginning to turn brown, and by 1:02 (min:sec) had ignited fairly uniformly across the exposed surraces. By 1:30 (min:sec) the furnace was filled with intense smoke and heavy flaming. Due to the time constant (5.0 - 7.2 minutes) inherent in the thermocouples utilized q V by the test standard, the ihrnace 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, causing the furnace probes to register an under temperature condition. 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 flames again. The furnace temperature thus "saw-toothed" its way along the E119 heating curve until the temperature was con: derably above 1,000 F, at which time the previously mentioned phenomenon ceased, and the specimen burned steadily for the remainder of the fire exposure period. During the fire exposure, no visual openings into the tray interior were observed. At the end of the fire exposure period, the thermocouples were disconnected, the furnace extinguished and the specimen removed from the furnace. Thermocouple circuits were disconnected following the fire exposure but circuit continuity measurements were continued throughout the hose stream exposure. The test specimen was elevated to a distance of approximately 7 ft between the floor and the bottom of the test item and spun on a swivel at a rate of 3 - 6 revolutions per minute (to ensure exposure of as much of the exterior surface as possible) while being exposed to the standard solid hose stream test at a nozzle pressure of 30 psi, from a distance of 20 ft for 2-1/2 minutes. The hose stream was thusly positioned to attack the sides, bottom and inside vertical surfaces of the test - (% q) o? bobo[

Report No.12340-93543b September 9,1992 Texas Utilities Electric Page 15 O item, without significant exposure to the top surface. All joints between the sido panels and the bottom and top panels were exposed to the hose stream test. No failure of any of the circuit integrity systems was noted throughout the fire and hose stream exposures, When the test item was removed from the furnace it was still fiaming, 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. During the hose stream test, the entire Thermo Lag @ 3301 panel was knocked away from the lower and the outside surface of the tray section consisting of the zero radius 90 bend and the vertical rise from there to the underside of the test deck. The remainder of the test item remained clad, with narrow openings along short sections of the joints between the side panels and the top and bottom panels along the tray rail positions. The side panel of Thermo Lag

  • 3301 located at the connector splice at the front rail transition above the 24 in, radius (sweeping) 90 bend was knocked completely away, leaving an exposed area of approximately six inches by four inches. All supports and the remaining parts of the test item remained firmly clad.

O rae sia iiice t te m pereteres -itnie the tr x sx<,te m exposure test are presented in the table below. t the e a er the rire MAX. TEh1PERATUltE AVG. TEh1PEltATUllE LOCATION ( F) ('F) Tray Rail TCs 377 2N W 020 (Power) Cable 314 255 W-047 (Control) Cable 302 259 W-071 (Instr.) Cable 306 2G3 Only four thermocouples registered above 325 F: TCs E5, E6, E15 and E16. The average initial temperature for all thermocouples at the start of the test was 87 F, yielding an allowable temperature increase of 250 F, or 3375F actual for the average temperatures. (A 325'F increase above the 87'F initial temperature yields a maximum allowable individual tempereture of 412 F, in accordance with ASTM E119 88.) Prior to the fire test, the voltage signals from each of the circuit integrity systems was measured to establish a baseline (V i ). Then, after shorting across a single 1000 resistor, the minimum voltage necessary to indicate failure (V-loon) was measured. At the completion of the fire and hose stream exposure tests, the [ g

                                                                    %)

Report No. 12340-93543b Septemter 9,1992 Texas Utilities Electric Pege 16 O voltage was again measured (Vr). Additionally,500 volt megohmeter tests of each  ! circuit were performed before (Ri) and after (Hr) the fire and hose stream tests. These values are displayed in the table below. CAllLE I Vi V-t oon Vr 14 lt( W-020 3.706 3.010 S.705 >2000 Mn >2000 MO W-023 3.702 3.014 3.700 >2000 MO >2000 M n W 047 5.719 5.309 5.719 >2000 MD >2000 M n W-048 4.837 4.321 4.837 >2000 MG >2000 M O~ W-063 6.393 6.072 6.395 >2000 MG >2000 M'O l W 071 5.307 4.853 5.303 >2000 MO ZElt0 l All data may be found in the following Appendices.  ! Post Test Examhuition After allowing the test item to cool overnight, it was systematically disassembled and examined visually for damage and general condition. A listing of those p) ( findings follows. In all cases, when describing a particular Thermo Lag 83301 Flat or V Ribbed Panel, the term " panel" will be used. LOCATION i OilSEttVATION Panel located on the outside, Panel firmly in place except for the small vertical surface of the tray, dislodged picco previously mentioned, above the 24" radius 90 Nominally 3/8" of solid material left on the bend. stress skin. SS bands were loose and askew. Panel located on the outside The panel was burned through to the stress curved portion of the 24" skin in 2 - 3" diameter areas at many locations radius 90' bend. across the bend area. Fire penetration seal at the This material was in excellent condition, being mouth of the tray tee. charred to a depth ofless than 1/4" from the fire. Panels covering the sides of A fair amount of the Thermo Lag remained in the tray rails, this position, with up to 1/2" depth of solid char /unreacted material left. v gok *g

                                                  %)

Report No. 12340 03543b September 9,1992 Texas Utilities Electric Page 17 O LOCATION OltSEltVN1'lON (CONTINUED) Bottom panel between Char depth (depth of remaining ash)is 11/4" at supports and zero radius the maximum. There remained approximately 90' bend. 1/4 - 1/2" ofinner fiber char on the exposed side of the stress skin. In small spots there remained from 1/8" to 1/4" of unreacted material. Supports. All material on 'ho supports was in very good condition, with a minimum of 1/4" unreacted material remaining on the outer layer and absolutely no damage to inner layers of panel where they were used. Cables. Visually undamaged. However, a post test insulation resistance test revealed a short in one of the W 071 shielded cables. Subsequent removal and close examination of the cable (seventh cable from the front- edge tray rail) revealed there to be a very small physical nick

  ,                                                                                         in the cable jacket, unrelated to the fire or hose stream exposures. Apparently moisture from the fire and/or hose stream had caused the loss ofintegrity. Since the tray was single layer fill, the nick was not caused by pressure from other trays. The short was determined to be from the shield to the tray.

CONCLUSIONS The 36" cable tray with tee section, clad in a nominal 1/2 in. thickness of Thermo-Lag # 3301 material (" stitched" together at specific locations with ctainless steel tie wire and overwrapped along the edges with stress skin), met the requirements of the TEST PLAN (essentially those of American Nuclear Inr ars Bulletin B.7.2,11/87, Attachment B entitled: "AN1/MAERP RA Standard F..e Endurance Test Method To Qualify A Protective Envelope For Class IEEE Electrical Circuits", Revision I, dated November 1987), for a fire resistance rating of one hour. All thermocouples remained below the E119 requirements of 325'F above their initial temperature and none of the cables lost circuit integrity during or after the fire and hose stream exposures.

 .Q U

(% c( L. PATO

1 September 9,' 1992 Report No.12340 93543b - Texts Utilities Electric APP 8ND10ES -- O l j

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      'A A ~ *a                                                                     "

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r Report No. 12340-93543b b'I ,#" Texas Utilities Electric lhES O O Appendix B TEST PLAN 04

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2: 1 TEST PLAN ONE HOUR FIRE ENDURANCE TESTS OF ARTICLES PROTECTED WITH THE THERMO-LAG " 330 FIRE BARRIER SYSTEM \ 1.0 SCOPE This test plan describes the methods and guidelines to be utilized for the preparation of test specimens, installation of the THERMO LAG " 330 Fire Barrier System, performance of fire endurance and hose stream tests, electrical cable circuit integrity 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. Successful results of this test program will provide documented evidence that the generic fire barrier systems will satisfactorily withstand an ASTM E119 83 fire (q/ e exposure for a period of one hour, followed by a 21/2 minute, minimum, solid hose stream test. The circuit integrity will be monitored continuously (using digital data acquisition)in accordance with the American Nuclear Insurers acceptance rating. These tests 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: "ANI/MAERP RA Standard Fire Endurance Test Method To Qualify A Protective Envelope For Class IEEE Electrical Circuits", Revision I, dated November 1987, and,in the absence of other standards for these specific types of tests, standard practice shall be invoked. 3.0 ACCEPTANCE CRITERIA 3.1 American Nuclear Insurer's criteria and method for cable circuit monitoring for successful passage of the ASTM E119-78 Fire Endurance and Water Hose Stream Test as outlined in Sections 8 and 9 of this test plan. 3.2 In addition, the time at which the average of all thermocouples and any individual thermocouple reaches the following temperatures shall be documented: a) 325 F(individual)

  ,3                b)      250 F above ambient (average)

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4.0 REFERENCES

4.1 - Documents 4.1.1 Federal Register / Volume 45, No. 225/ Wednesday, November 19,1980 Fire Protection Program for Operating Nuclear -; Power Plants 10CFR, Part 50, Appendix R. 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-For Class IEEE. Electrical Circuits", Revision. I, dated

                        - November 1987.

4.1.3 ASTM E119 (78)" Standard Methods of Fire Tests of Building - Construction and Materials." 4.1.4 Thermal Science, Inc.'s Technical Note 20684, Revision-V-

                           "THERMO-1,AG' 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. 0, " Procurement and Os Installation of Fire Barrier and Fireproofing Materials." 4.1.6 --M21701,"Thermo Lag Typical Details"-

a. Sheet 01, Rev. CP-l'-
b. Sheet 02, Rev. CP c. Sheet 03, Rev. CP-1
d. Sheet 03A, Rev. CP-1 --
e. Sheet 03B, Rev.- CP 1 j Sheet 04, Rev. CP-1
f. -
                          . g.      - Sheet 04A, Rev; CP-1
h. - Sheet 05,' Rev. CP i . -- Sheet 05A,-Rev. CP-1T
j. Sheet 06, Rev.- CP-1
k. Sheet 07, Rev. CP -1. Sheet 08, Rev. CP-1
                         - m.L Sheet 09, Rev. CP-1
                          - n.        Sheet 10, Rev. CP                            - o.1 Sheet 11, Rev. CP-1.
p. Sheet 12, Rev. CP q. Sheet 13, Rev. CP-1 s r. Sheet 14, Rev. CP s. - Sheet 15, Rev. CP-1
                                              @m A.gyJ

3 3 O 4.1.7 Construction / Quality - Procedure CQP-CV-107, Rev. O,

                    " Application of Fire Barrier and Fireproofing Materials."

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

a. Sheet 01, Rev. CP-1
b. Sheet 02, Rev. CP 1
c. Sheet 03, Rev. CP-1
d. Sheet 04, Rev. CI -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.CPiRev. E, " Installation and Repair of 3-6548 Silicone RTV Foam Penetration Seals."

4.1.12 Quality / Construction Procedur: QCP-0044.CP, Rev. F,

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

4.1.13 Installation Procedure IP-0045.CP, Rev. D, " Installation and Repair of 45B Elastomer 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.1, " 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 Perquisite Test Procedure XCP-EE-01, Rev.11, "Megger/HI . Pot Testing." O

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4 5.0 RESPONSIBILITIES 5.1 Texas Utilities Electric (TU Electric) and Associated Contractor Organizations 5.1.1 Establish the criteria, guidelines, drawings (draft quality), recommendations, etc., to govern the installation of the test items. Supply the test item pieces, including all hardware, electrical cables, conduit, tray systems, etc. 5.1.2 Establish the criteria, guidelines, drawings (draft quality), recommendations, etc., to govern the installation of the fire penetration seal systems as indicated on applicable drawings (see Exhibits). 5.1.3 Establish the criteria, guidelines, drawings (final, report-quality if needed), recommendations, etc., to govern the installation of the THERMO-LAG 330 Fire Barrier System Materials to the test articles. 5.1.4 Provide the specific Thermo-Lag and penetration seal installation procedures and work package documentation. V 5.1.5 Provide materials representative of site installations. 5.1.6 Provide the THERMO-LAG 330 Fire Barrier System and penetration seal matericts and installation tools and equipment. 5.1.7 Provide scheduling of personnel, equipment and material necessary to perform the installation and QC documentation of the fire barrier system materials utilizing the appropriate installation procedures. 5.1.8 Coordinate all phases of the fire test preparation with the tesung organization. 5.1.9 Apply the fire barrier system and penetration seals to the test articles. 5.1.10 Supply QC and construction personnel to witness and document assembly and test article raceway configurations. 5.1.11 Perform as a liaison with the testing organization and provide the testing organization with all applicable TU Electric o Documents as identified in Section 4.1. O f

                                                                                                                       ,.i.. I.
                                                                                                                        #*oi,7o8,                                 I 1

3: 5 5.1.12 Provide all applicable quality control documentation for the fire barrier system materials, cables, and installation of the fire barrier system and penetration seal materials to each test article. 5.1.13 Provide equipment and personnel for performance of megger 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 assemblies and provide all required test instrumentation in accord with its 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 instrumentation. 5.2.3 Assemble, install and document the installation of all trays, conduits, cables, etc. to be supplied by TU Electric. Provide (') V 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-LAGm 330 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 Document the test parameters and provide a formal detailed written report of the test program and test results. 5.2.7 Provide VHS video and 35mm photographic coverage of the test project. 5.3 Laboratory Quality Assurance / Quality Control 5.3.1 Verify and document the quality control documentation of the fire barrier system materials used in the test program. G" * -

                                                %2

6 ("'N 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 docume.nt 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 dimment the construction and instrumentation of the test articles. 5.3.5 Provide written calibration documentation of all thermocouples, neasurement devices and data acquisition systems used in this ttst program. 5.4 Thermal Science, Incorporated (TSI) 6.4.1 Supply technical representative to observe and document that application of Thermo-Lag 330 Fire Barrier System materials are installed in general conformance with TSI's Technical Note 20684 (Ref. 4.1.4) on all test articles. 6.0 SPECIAL PRECAUTIONS p/ t 6.1 Precautions For Installation Of The Fire Barrier System 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 g those in actual use at Comanche Peak Steam Electric Station (CPSES), V hTOj

_ . . _ _ _ . . . _ _ _ . _ _ . _ . _ . . _ ~ _ _ _ _ _ . _ - . _ _ _ _ _ . _ __ _ 43-7

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O >> enect er << ceediiitx shall be applied. ree trea si tse tesereterr a^ rreer - 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 (see Exhibit A). Final, dimensioned drawings will be prepared by the Laboratory. 7.4 Test Configuration 7, General The test articles shall be sufficiently secured to the test deck by Laboratory personnel and sealed by TU Electric personnel, in accordance with instructions and drawings. 7.4.2 Cable Tray Test Articles

                                                   ' Four (4) configurations 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.
b. A 12" wide x 4" deep "U" shape. .
c. - A 36" wide x 4" deep straight vertical configuration.
d. A_30" wide x 4" deep "U" shape configuration with horizontal tee assembly and protruding member.

7.4.3 Conduit Test Assembly _

                                                    . One (1) *U" shape conduit configuration supplied by TU Electric.

will be tested. This assembly will consist 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.- O pg

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3 8 O 7.s c uie te ai e nea ><e-e t-Cable loading requirements

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

CABLE TRAYS AND 5" DIAMETER CONDUIT 331/3% 600 volt Power Cables (3C#6 & #8 AN) 331/3% 300 volt Instrumentation Cables (4 TWPR & 5C#16 AWG) 331/3% 600 volt Control Cables (5C#12 AWG & 7C#12 AWG) OTHER 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 O V installed in the test articles will be prepared by the Laboratory and included in the final report. Cable location within the test articles shall be documented and included with data to be evaluated by the testing laboratory. 7.7 Thermocouple Installation All thermocouples used in this test program shall be provided and installed by the Laboratory, 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: il.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:

1) All cable trays shall be instrumented with engineering 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

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t 3 9 A deck and protected by the fire protective envelope. Each thermocouple V shall be attached to the tray rail by the use of a small metal screw.

2) All conduits shall be instrumented with engineering 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.
3) All electrical junction boxes (or similar devices) shall be instrumented with a minimum of one engineering 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.

An engineering thermocouple shall be placed within one (1) inch of the penetration seal on the inside surface of the junction box.

4) Electrical cables shall be randomly selected in each assembly (one of each cable type: Power, Instrumentation and Control) and instrumented with test qualification thermocouples located at each 12 inch interval along each cable's length inside the exposed area of the test item. Ifinsufficient cables are contained within a test item to instrument to that degree, a minimum of one cable, of the smallest size p in that wtem, will be instrumented. Systems which contain more x than a s gle layer of cables will have the instrumented cables positioned at the top surface of the cable bundle. Instrumented cables shall be positioned in the cable trays 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 shown below:
               ,1111111111111111111111111111 / Cable tray aide rai1 b Cables without thermocouple instrumentation (typ)
                                                                                                   + Cables with thermocouple instrumentation 1111111111111111111111111111 e N Cable tray side rail PLAN VIEW OF INSTRUMENTED CABLE TRAY Each thermocouple shall be attached to its approp-iate cable by placing the thermojunction in direct contact with the outer insulation of the cable for a minimum of 3-1/2" and covering with a double wrap of glass-m                                  fiber reinforced electrical tape.

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a t. 10 7.8 Installation of the Fire Barrier system to the Test Articles THERMO. LAG" 330 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 & 4.1.7) such that the test articles are representative of CPSES plant installations. Details of the THERMO. LAG" configuratione including fasteners, orientation of structural ribs, etc., shall be documented in the final test report. 7.9 Fire SealInstallation ' Upon completion of the fabrication and installation of the fire barrier systems to the test articles (or prior 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 sealed by TU Electric shall be sealed 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. O 7.10 Cirenit Inte stx uoniterin, All cables shall be energized to monitor circuit integrity (as required to check for a circuit failure). Circuit failure is defined as _ circuit to circuit (conductor to conductor short); open circuit (conductor broken); and, circuit to ground (short circuits, conductors to 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 into a single series circuit, which will allow for circuit failure by any of the three methods to be detected. In other words, any cable failures will be identifiable as having been Power, Control or Instrumentation cable. Cable circuit integrity will be done by. energizing each circuit with a low voltage (5 - 12 VDC). The data acquisition system will monitor the voltage across the system and will register any drop in voltage. NOTEi Circuit integrity with low voltage is based on personal safety concerns and is consistent with standard test practice. 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 s k Q 5.(m' ddp

3 11 system would result in a failure of the protective envelope,it is not important f") to be able to determine exactly 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 10000 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 a 1000 resistor will be connected between the end of the circuit and system ground. The resultant circuit allows the measurement of a steady stato 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 casily 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: O O

    )

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3 12 O\ 12 VDC Pwr S7 p- 4

                                                                                             * ** si s           To Data ground Acquisition f10000                                                                          System a

black 1000 white I 1000 red 100 0 green 100 0 (v] 1 orange 1000 blue 1000 white-black

                                                                                         ~

NOTE: This schematic is simply an example . 1000 of the circuitry that will be used to monitor circuit integrity. The example used is that of a - 7C/#12 AWG cable with 1000 resistors chassis connected across the ends that extend out the ground top of the cable (or conduit) ends on the unexposed side of the specimen. The monitored cables shall be scanned at least once each minute.' Monitored cables shall be energized until the hose stream test is completed. NOTE: All conduit and cable trays shall be separately grounded by connection of a 1/0 copper ground to the Laboratory's electrical ground. (a,) #" S o, O,j' - )A l\ ' h 4ATO

A 9 13 O 7.11 Preburn Inspection 7.11.1 TU Electric shall perform megger testing of all circuits with a 500 y megohmmeter to establish reasonable assurance that wiring insulation was not damaged prior to or during installation. 7.11.2 Prior to the commencement of the fire endurance test, a l thorcugh check of each test assembly and associated l equipment (including data recording equipment) shall be  ! performed and documented by the testing laboratory. 7.11.3 TU Electric shall inspect tha Thermo Lag 330 Fire Barrier System for surface defects, etc. prior to test. l l 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 assemblies will not commence until , (3 Thermo-Lag 330 Fire Barrier Materials attain a moisture (/ meter reading that does not exceed 20 when using a meter with a scale of 0100 such as a Delmhorst Model DP or equivalent, i 8.0 PROCEDURE i 8.1 Fire Endurance Test l 8.1.1. The protected test article shall be exposed to the standard time / temperature curve found in ASTM E119 (78) 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 standards. Any changes, revisions, or deviations required to comply with this requirement shall be documented and properlyjustified and included as a part of the final test report. 8.2 Water Hose Stream Test 8.2.1 Immediately following the fire endurance test, accessible surfaces of the protected test article shall be subjected to the American Nuclear Insurer's preferred water hose stream test, as O s O A 4a i

                                                                                                                                                               < ]
                                                                       - 14 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. 9.0 DATA SYSTEMS l 9.1 During t.h. 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 thermocouples will be scanned every 15 seconds, to allow close control of the furnace.- A printer output of all thermocouple data will be done every 30 seconds, but will not be - included in the test report (however, this record will be filed in the QC document file at the Laboratory). 9.2 Monitored cables shall be energized until the water hose stream test is completed. l 10.0 FIRE TEST REPORT 10.1 The Laboratory will subreit a report on the results of the test and O thermocouple data. 10.2 The Laboratory will. assemble the ~ final test report, containing the collected data and required quality control documentation. . 10.3_ The' test report shall be prepared in sufficient detail to summarize the 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) Quali6 cation and certification for test personnel f) Test procedures used-g) Acceptance criteria h) Provide quality control records for:-

  • Test article construction Qualification- and certification forL installation and' inspection personnel '
  • Identi6 cation and installation of fire barrier material
  • Thermocouple locations
                                                * . Cables, size, type, and location-
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  • 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
1) Provide a chronological log (Event Log) of all actidtics from receipt of materials through final test report m) Megger test documentation a

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el ' Report No.12340-93543b September 9,1992 Texas Utilities Electric APPENDICES O O Appendix 0 THERMOCOUPLE LOCATIONS w , -~

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d THERMOCOUPLE PLACEMENT LOG - PROJECT NO. 93543 l NOTE: This Log is to be used to ciocument the precise location of the thermocouples located on each test item. The assigned project numbers for each of the six test assemblies are: 1 Scheme #1 Assembly #1: 93543A SCHEME # Scheme #1 Assembly #2: 93543B 2 Scheme #2 Assembly #1: 93543C ASSEMBLY # Scheme #2 Assembly #2: 93543D TRAY R/' .S Scheme #3: 93543E ITEM Scheme #4: 93543F PLEASE CIRCLE THE APPROPRIATE SCHEME AND ASSEMBLY # TC NUMBER DESCRIPTION OF I: XACT PHYSICAL LOCATION E.1 _Qn_outside3stlicaLand_horizontaLcentedine_olthe_itonLitay_ talk. E2 _.On_outsideletticaLcentedinaatthe_frontitaylall.12" righloLCenter E3 On outside vertical centerline _of the front tray ral 24" riaht of center E4 On outside c2D01eLoiralLconnettoL_33"Iightoicanler E5 On outsideletticaLcenteriine_oLitonLitayaniL4.5" tightoLcenter E6 __On.outside_verticaLcenterline of ironLttay_ tail. 57" rigblolcenter 6 E7 On outside vertical centerline of front tray rail,72" riaht of center E8 On outside vertical centerline of the front tray rail,12" left of center ig On outside vertical centerline of the front tray rail,24" left of center _ _,_ E10 On outside center of "L" rail connector,36" right of center E11 On outside horizontal centerline of front tray rail,14.5" above last TC E12 On outside horizontal centerline of front tray rail,12" above last TC E13 On outside_yeticaLcentedine.of rear tray _tailJL4" from longliudinaLcentetotituy E14 On outside_yerlicaLcentenotconnectoLpieceJ"_tightolthe_pteyious TC E15 - On outside vertical center of rear tray rail,12" riaht of the previous TC E16 _QQAtlSidaleilicalcenter of rear tray rail.12" right of the orevious TC E17 __On.outside_ystlicaLcenteLotteatitaylail.15" tigblof the pIeviouslC._aLSupport E18 On outside3yetticaLcentedine_.oLinattraylalL24" left of longitudinaLcenteLotira) E19 On outside center of rear "L" tray rail connector E20 On outside horizontal _qenterline_.of rear tray rail.15" above last TC: at supp_ ort E21 On outside_tiorizontaLcentedine_otteatitay_taliJ2" aboyalast TC , NOTE: TCs shall 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, l m ra we (PLEASE USE THE BACK OF THIS SHEET FOR DRAWINGS, IF NECESSARY j 1

1 - .--

l THERMOCOUPLE PLACEMENT LOG - PROJECT NO. 93543 h NOTE: This Log is to be used to document the precise location of the thermocouples located on each test item. The assigned project numbers for each of the six test assemblies are: 1 Scheme #1 Assembly #1: 93543A SCHEME # Scheme #1 Assembly #2: 93543B 2 Scheme #2 Assembly #1: 93543C ASSEMBLY # Scheme #2 Assembly #2: 93543D POWER CABLES Scheme #3: 03543E ITEM Scheme #4: 93543F (WO20 3C/#6 AWG) PLEASE CIRCLE THE APPROPRIATE SCHEME AND ASSEMBLY # TC NUMBER DESCHIPTION OF EXACT PHYSICAL LOCATION P22 At midnoinLollbe_lengittoLcable,2" from seal on "T" section of tray P_23 . On bottom.lopajocatedaLcenteLQLinain "U" of tray. P24 12" from the center of the tray, towards the wide radius 90 tray elbow P25 24" from the center of the traydonards the wide radius 90 tray _ elbow P28 36" from the center of the traydowards the wide radius 90* trav elbow P27 48" from theSenteLollba.itayJQWards the _ wide _tadius_90 itay_ elbow O- P28 60" from the center of the tray, towards the wide radius 90 trav elbow P29 72" from the center of the tray, towards the wide radius 90' trav_ elbow P30 84" from the center of the traydowards the wide radius 90' tray elbow _ P31 12" from the center of the tray, towards the zero radius 90 trav elbow , _ _ P32 24" from the center of the traydowards the zero radiusSO tray elbow P33 36" from the center of the tray, approximately at the zero radius 90 elbow P34 48" from the center of the trav, above the zero radius 90 trayelbow P35 - 60" from tb_e center of the traymabove the zero radius 90 trav elbow NOTE: TCs shall be numbered sequentially from 1 upwards for each deck assembly. Prefixes shall be added as follows: P (power cable). C (control cable).1 (instrumentation cable) and E (engineering TC' for instance P1, s:x can air (PLEASE USE THE BACK OF THIS SHEET FOR DRAWINGS, IF NECESSARY j

            -,    ___.,.m._,,_...___._.______                                                               _ _ _ _ _ _ . . _ _                  .__

i THERMOCOUPLE PLACEMENT LOG - PROJECT NO. 93543 h NOTE: This Log is to be used to document the precise location of the thermocouples located on each test item. The assigned project numbers for each of the six test assemblies are: 1 Scheme #1 Assembly #1: 93543A SCHEME # , Scheme #1 Assembly #2: 93543B 2 Scheme #2 Assembly #1: 93543C ASSEMBLY # Scheme #2 Assembly #2: 93543D ^ONTROL

                                                                                                                 '              CABLE                 '

Scheme #3: 93543E ITEM Scheme #4: 93543F (W 047 7C/#12 AWG) PLEASE CIRCLE THE APPROPRIATE SCHEME AND ASSEMBLY # TC NUMBER DESCRIPTION OF EXACT PHYSICAL LOCATION C38 At midpQint of the length of cable,2" from Esal on "T" section of tray C39 On bollom_lOOpJOCaled_at_ Center of main "U" of tray. C40 12" from the center of the tray, towards the wide radius 90 trav elbow C41 24" from the center of the tray. towards the _ wide radiufL90'llay_elhow C42 36" from the center of the trav. towards the wide radius 90' trav elbow C43 48" from the center of the trayJ0 Wards the widefadius 90* tray _ elbow O C44 60" from the center of the tray, towards the wide radius 90 trav elbow C45 72" from the center of the tray, towards the wide radius 90 trav elbow C46 84" from the center of the tray. towards _the wide radius 90 tray elbow C47 12" from the center of the tray, towards the zero radius 90 trav elbow C48 24" from the center of the tray. towards the zero radius 90 tray _ elbow C49 36" from the center of the tray, approximately at the zero radius 90 elbow C50 48" from the center of the tray, above the zero radius 90' trav elbow C51 60" from the center of the tray, above the zero radius 90 trav elbow , NOTE: TCs shall be numbered sequentially frorn 1 upwards for each deck assernbly. Prefixes shall be added as follows: P (power cable), C (control cable), I (instrumentation cable) and E (engineering TC), for instance P1, s:v, can .ie (PLEASE USE THE BACK OF THIS SHEET FOR DRAWINGS, IF NECESSARY j

u. _ . _ . _ _ _ _ _ _ _ _ . . . _ _ _ _ . -

d THERMOCOUPLE PLACEMENT LOG - PROJECT NO. 93543 i I NOTE: This Log is to be used to document the precise location of the thermocouples located on each test item. The assigned project numbers for each of the six test assemblies are: 1 Scheme #1 Assembly #1: 93543A SCHEME # Scheme #1 Assembly #2: 93543B 2 Scheme #2 Assembly #1: 93543C ASSEMBLY # Scheme #2 Assembly #2: 93543D INSTRUMENT CABLE Scheme #3: 93543E ITEM Scheme #4: 93543F (W 071 5C/#16 AWG) PLEASE CIRCLE THE APPROPRIATE SCHEME AND ASSEMBLY # TC NUMBER DESCRIPTION OF EXACT PHYSICAL LOCATION 154 At midpoint of thelengittolcable. 2" from seaLon "T" section_oLitay 155 _01LbottontloopJocated_atcenteLotmain "U" otitay. 156 _12" from the center of the tray towards the wide radius 90 traJ elbow 157 _24" from the.Senter of the.ltayJQwards themideladi.us_97 tray elbow 15 8 36" from the cen_ter of the tray towards the wide radius 90 tray elbow e 159 160 48" from lheleDier of the trayJQWards the_wideJadius 90* tray _ elbow 60" from the center of the tray, towards the wide radius 90 trav elbow 72" from the center of the tray, towards the wide radius 90 tray elbow 161 l62 84" from t!Lq cenleipf the tray, towardtttleayide radiu_s 90 tray elbow 163 12" from the center of the tray, towards the zero radius 90 tray elbow 164 24" from the center of the tra.yJ0watds the zero radius 90 tra.y elbow 16 5 36" from the center of the tray, approximately at the zero radius 90 elbow 16 6 48" from the center of the tray. above the zero radius 90 tray elbow 167 60" from the center of the tray, above the zero radius 90 tray elbow l l O NOTE: TCs shall 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, PM C4R ate (PLEASE USE THE BACK OF THIS SHEET FOR DRAWINGS, IF NECESSARY j

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Project No. 93543B TEXAS UTILITIES ELECTRIC Fig.11 Cable Thermocouples

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

r September 9,1992

                                                                                   *I Report No.12340 93543b Texas Utilities Electric                                APPENDICES O

O Appendix D CIRCUIT INTEGRITY DETAILS eti? , "'-?,%

                                      '6a$

-__m . . _ _ _ . _ . _ _ _ _ _ _ _ . - _ __ _ _ TEXAS UTILITIES ELECTRIC PROJECT N O. 12340 93543 l CIRCUlT INTEGRITY CONNECTIONS

                                                                    +                          -

12 VDC W up g " chassi* To Data gmund Acquisition f1000O Systern , O Chruit integrity 3 70b o . v3 2000 k j V.100n = 3 '

                                               ]          color =

vf. ~3.7 0 5 1000 Co}or = ~ R= i > Rooo M4 1, color = .3 R f = } ####

                                                                                                                                          @ 500 VDC 1000           for 5 minutes Megohmmeter chassis ground NOTES: 3 ,_g.,                   4c        ,

e g,. eg gi Date Instrumented: 2 7 *'

  • SCHEME #:

Technician: W ASSEMBLY #:

  • Date Pre-Meggered: 6-SP ITEM:

Technician: ecu/pur CABLE FUNCTION: POWER Date Post Meggered: **'" CABLE TYPE: W-020 Technician: " ## CABLE SIZE: 3C/#6 AWG r'

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T TEXAS UTILITIES ELECTRIC PROJECT N O. 12340-93543 i CIRCULI INTEGRITY CONNECTIONS

                                                      +

12 VDC Pwr Sup g " chassi' To Data 1000 0 8' ""d Acquisition System o Cht: ult Integrity V= 3 .7 o ;' 3 2 V, goon = 3. O l

  • 1000 k alor = /

V r = 17 oo color = 2 } g, y am M% 1000 R r = > 2000 Mn O' @ 500 VDC 1000 for 5 minutes Megolunmeter chassis ground O E S: 3 a44 C ka.%.e / 4/# c2 Date Instrumented: 6' 78 SCHEME #: Technician: i< d ASSEMBLY #: 2 Date Pre Meggered: 4 - M- 9

  • ITEM:

Technician: D9P CABLE FUNCTION: POWER Date Post Meggered: c- >3 - t o CABLE TYPE: W.023 Technician: " l* CABLE SIZE: 3C/#8 AWG N , 4 otfs+ L

T TEXAS UTILITIES ELECTRIC PROJECT NO. 12340 93543 ] CIRCulT INTEGRITY CONNECTIONS

                                                            +                       .-

12 VDC Pwr Sup g ' chassis To Data ground Acquisition f1000O System o color = Maex 1000-color = v <.,1 _ Cimult Integrity L V= 5'. 7 I 9 1000 i color = Mvt V, goon = S.3 09 4 Y"f ' ' color = wkN _ 1000 Ri = > 2 0u M m colora v%% /l\ree 100 0 R r " > # h^ color = 0 v a m <. ~

                                                                                                                               @ 500 VDC for 5 minutes egohmekr color = j r.u ^                                             _

OTES: 3o-h C L. w. ( :**- 3 1000 5a5s ground Date Instrumented: ' ' " ' '

  • SCHEME #:

Technician: '" ASSEMBLY #: A Date Pre MeggeredL 6- M - f

  • ITEM:

Technician: * - CABLE FUNCTION: CONTROL Date Post-Meggered: 6*"* CABLE TYPE: W047 Technician: D* CABLE SIZE: 70/#12 AWG fD'

                                                                                  %d

5 TEXAS UTILITIES ELECTRIC ' PROJECT N O. 12340 93543 CIRCUIT INTEGRITY CONNECTIONS  !

                                                                                +           -

12 VDC Pwr Sup 1 cha**is To Data E' "d Acquisition f1000n System . 3 i Circuit Integrity y,. 4,737

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color = Mauc V 100n= 4 3 */ 3999 y,g 4.837 color = peda R$ = > 2000 M4 1000 ' color = 0 vam< R f = MooO M 1000 @ 500 VDC color = ts LA:s _ for 5 minutes 1000 color = 9<ecw _ NOTES: 3 cth Cka.ul -d k 1000 chassis

                                                                                                  -ground Date Instrumented: 5-72-97                                                          SCHEME #:

Technician: IC/4 ASSEMBLY #:

  • Date Pre Meggered: 6-22-?2 ITEM:

Technician: W" CABLE FUNCTION: CONTROL Date Post Meggered: 6'83 CABLE TYPE: W-048 Technician:- * " CABLE SIZE: '5C/#12 AWG

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[ TEXAS UTILITIES ELECTRIC PROJECT NO. 12140 93543 CIRCulT INTEGRITY CONNECTIONS NOTES O - 12 VDC g . we g F cL i  ! Pwr Sup chassis

                                          """" d To Data 1000 O                                     Aequisition System       -

o color = V Eel 1000 color = vbb _ color = Vutc k 1000 color = wh, eke

                                                 -                          Circuit Integrity 1000 Vi = I 393 V.1000 " 0 07I O                color =    u k.'b                  _                       Vr = G 39 f
          . color =    O vA -~e, <

R=>22 M 3 1000 R f = > 2#C* M 4 color = ukA4 -

                                                                           @ 500 VDC for 5 minutes Megohmmeter hbis ground                                                   SCHEME #:             /

ASSEMBLY #: A Date Instrumented: 4-SP-?* ITEM: Technician: W CABLE FUNCTION: INSTRUMENT Date Pre-Meggered: 6-??-f8 CABLE TYPE: W-063 Technician: 'D W P CABLE SIZE: 4 Shielded Date Post-Meggered: '* 3-T# Twisted Pairs Technician: # #16 AWG (8 Cond)

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5 TEXAS UTILITIES ELECTRIC PROJECT NO. 12340 93543 CIRCUlT INTEGRITY CONNECTIONS

                                                               +                         -

12 VDC Pwr Sup 1 ch . i. To Data gned Acquisition k1000O System 1000 color = SW Circuit Integrity color = ro Iwg 1000 y), 53o7 V ,toon = S . N color = o ro.wg4 Vr = I'3 # 3 color = wCA g Ri = 7 2 000 h^ Rr=

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Q 1000 color = q v-t e ^ -

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Po % ~ %<+ m qp %- v+u -+ e S-P  % ~ad ca GLe

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Date Instrumented: G- M-95 SCHEME #: 2 Technician: KH ASSEMBLY #: l Date Pre Meggered: G- > > - t '> ITEM: Technician:. Me CABLE FUNCTION: INSTRUMENT Date Post-Meggered: 6- E2 - '3 CABLE TYPE: W-071 Technician: ?# CABLE SIZE: 5C/#16 AWG

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t l l Report No. 12340-93543b September 9,1992 Texas Utilities Electric APPENDICES ' i O ' O Appendix E GRAPHICAL TEST DATA O ,t.7+ ,,, y i ,4. % i

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O O O . l :. r. j' Project No. 93543b  ! l TU Electric j Furnace Temperature 2000 - ' - ' - ' ' > 1 - c E119 Standard i Furnace Average a ] 1500-- , s - } r J - i u_ i j <f L  !

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Project No. 93543b l

                           -TU Electric                                                                                         !

i l 4' W-020 3C/#6 AWG Power Cable - 36" Tray  ! t [ 6 ' ' ' -- ,- t t-e Ckt Int #1 j 5-i [ 4 t I I j .. 4- ~ j

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r O O i-Project No. 93543b t TU Electric L W-023 3C/#8 AWG Power Cable - 36" Tray

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O Project No. 93543b  ! TU Electric W-047 7C/#12 AWG ' Control Cable - 36" Tray 6 --- Ckt Int #3 5 -- - t ! 4- - i- #}- -?+, lf,1 sc ' ;p cn-p r- :. %u,, h,o o 1 ' t p_ ~ 1 1 -- - [- i i ! i l 0 . i - . i - 0 10 20 30 40 50 60 !. Time (min) I  !* , i e l I C") I-I

_ . . . _ _ _ _ _ . . _ . _ _ ..__._..____ _ _ _ . _ . . ._ _ _ _ ._.- __ _ __.. . _ . ~ _ _ _ . . _ O O O , Project No. 93543b TU Electric W-048 5C/#12 AWG Controi Cable - 36" Tray

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                                             ' Project No. 93543b                                                                    .'
                                             ' TU Electric -

W-063 ' 4 Sheilded Twisted Pairs #16 AWG (8 Cond.)

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I s i i i 0 . n n e 1 - 0 10 20 30- 40 50 60 i [ l-e Time (min) e i ) t O }

O O O Project ' No. 93543b TU Electric W-071 -SC/#16 AWG Instr. Cable - 36' Tray 6-

                                                                                          ~

5-I- Ckt Int #6

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O O O Project No. 93543b TU Electric 36" . Tray Averages l

                                                         '           1            -       '     '          l- '---        l-- *-     1                           '-                              ;

300- - I 36" Tray Rail Average

                                                                    -020 Average - 36" Tray                                                                           g-                         l
                                    '250-                                                                                                                           -
                                                   - - - -W-047 Average - 36" Tray                                                       *
                                                             - W-071_ Average - 36" Tray u7_                            200
        .L

[db-f%,, e f $1 U j, a 33g.

%yR$ 2                                                                                       /

El

                                                                                      /

E s 100-5 0 -- 0 . i. i r- , . i. r . 10 20 30 40 50 60

                                              -O Time (min) a
                                                                                                                                                                               .......__.__._._..._.)
           -O                                                               O                                                            O Project      No. 93543b TU       Electric 36" Tray Rails                                                                                                                              .
                                        -                              '       '         1  '   l   "

300- ' l ' ' 1  % 36" Tray Rail Average

                             - TC # 1                                                                                                                                  i 250--                                                                                    _

I k L E 200-- -

                                                                                                                                                                    .f a.j'm?+, ,. e i

ot *a m

           <    a 150--                                                                                  -

0 Of%s= . 8.- I e I- 100-- - e ~50- - 0 .- - i . i , i - i - i - h 0 -10 20 30 40 50 60 1 .i Time (min) 1

m. ,.

4

O O O 4-Project No. 93543b TU. Electric 36" Tray Rails

                                    '    -     1      -    L           '      '

300- ' ' ' '

                                                                                     /..

36" . Tray Rail Average 250- _ _.- TC # 2 - ) , [ 200- - U D ' [d)e La g o,f*s 2/*

           '[q W e 150--

c>

                                                    /                                                   --

i Q. E e F- 100-- p t f 50- - i 1 0- - i - i i -

                                                                    ~r                                 --

i- 0 10. 20 30 40 50 60 l 1 Time (min) l 1 ,

                                                                                                                                                                        'O

O O O Project No. 93543b TU Electric 36" Tray Rails i >__._1__..,__..._1 .-1.__ L___,..__-

                                               .        _.1 . 1 300_

36" Tray Rail Average

                                             .- - TC # 3 jr               200-

[, .c  : s .- 2 150-

+, >,<ho*

o. E e - t- 100-- -

                                                                                                                                                       ~

5 0 --

  • i .

0- - i

                                                                  .      i       .

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

O O O Project No. 93543b TU Electric 36" Tray Rails 2 1 '- '

  • l - --- * - ! '-l->--

300-36" Tray Rail Average 250-C 200.- D d7-$+ ftnj d,. e 0, h* 150-m E

                             $ 1 0 0 --

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

O O O Project No. 93543b TU Electric l 36" Tray Rails

                                                            '     '    '      -^         '        " - - ' - - -       '-    '-                                      350--           -

36" Tray Rail Average 300 - TC # 5 250-C em Mt ,- g o e 200-3 :,; ~ L.; "s

           %.;-f 2a                 150-E 100-5 0 --

0- 1 i i-i r i - r r 20 30 40 50 60 ! 0 10 l Time (min) . l-

                                                                                                                                                        -i

O O O 1 Project. No. 93543b TU Electric l 1 36" Tray Rails

                                           ,      i    ,__1           ,            1____t_ _ _ L _ . ._ _ i _ .m._

4go. 36" Tray Rail Average 350- __..-- TC # 6 L 300-C 250-p?; P L gn-  :>g GG~ R;. ;Q$f a.

             @          150--

F-100- / 50-1 r r i -

                                                       >                                      i 0-               .

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

                        .                                           9.

a 6 . .. ... .. O O O Project No. 93543b TU Electric 36" Tray Rails J --*-3-*-'-*--L-- *-- -l-

  • 350 36" Tray Rail Average 300 - - TC # 7 l

250-iT 4%R% -- 84 , h av90 m 200-

      >:   . s .;

u a m

     '*+,     j$ '

a 150 E o W '

                                                 ,/                                                   -

100-5 0 -- 0 --- i i . i . i rT - 10 20 30 40 50 60 0. Time (min) 4

                                                                                                         . ......._._....-.....1-

1 - j O. O O-Project No. 93543b TU Electric 36" Tray Rails

                        '     1-    '         l--     '    J     '   1         *- - '       > -    -

350- -- 36" Tray Rail Average 300- -- TC # 8 250-E

     $   200-                                                   /'

w$ E 150-

                                 /

100-- 5 0 --

                                                       ,__             ; __._ .~ r   r       r- -

o ,

                               ,    m             ,          ,     ,

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

O- O O Project No. 93543b TU Electric 36" Tray Rails

                                 '          '    '--   '        1'-^-      l-300--       '         *.

36" Tray Rail Average

                        -- TC # 9 E    200-4 l'

8,%=,Pg g m eo Oa 5; '?E 150~ 4, f/ga l E

e -

l F- 100-- N 5 0 -- f l 0- . 1 r i . 7 . i 1 r - 10 20 30 40 50 60 0 i Time (min) l

O O O Project No. 93543b TU Electric 36" Tray Rails i- '- 1- '- -- '- ' l ' 1- - - 300'-' 36" Tray Rail Average 250-E 200-s?+ L ' [g} L~ i{i, e Y+i4 >f 8 150-g Nc{fe, 3 1 c. E o - F- 100-- M 50-

                                                      -    i     -         r   i   -

0- . , . i 1 20 30 40 50 60 0 10 Time (min)

                                                                                               -1

O O O  ; Project No. 93543b TU Electric 36" Tray Rails L -- ^- *  ?-

                                                   - - '            '         "       l               '            L--                2                1 300-36" Tray Rail Average
                                                                         # II 250-C L

200-

                                                                                                             /

f - 1- +

                          .E
     >i d          ~ ":1 w!, - 3 150-
        +,4 -po g a.

E e - l- 100-50-1 0 , .- , . i r r- . i r 20 30 40 50 60 0 10 Time (min).

                                                                                                                                                                           .1.

0 0 0 Project No. 93543b TU Electric 36" Tray Rails

                            '    1    "      1 -~ >      '-- -   t- - I - -   - t . . .__ 4_ _

300-36" Tray Rail Average

                        ----- TC # 12

[ 200- _ f%kk L , 4 c~s :;j g oi / 3 150-

+,   ..

G 8 e O. E o -

           }- 100-5 0 --

1

                                        <          r      i             i        r-     -

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

O O O t

t i - Project No. 93543b

                                   'TU - Electric 36" Tray Rails
                                    -     '           1    2         1 2-  i  '- - l - - i-    

350- - 36". Tray Rail Average 300 -- TC # .13 250-LY

. rk=w?#p s l 84
    > .u- ms ao s av eu  200                                                                                                 '
    -4 ,       4   3                                                                                                      ;
       ,' n/:. 9
a. 150-E 4, .

e p 100- - i 50- -- i i j 0- . i i. T- - l

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

[.' -1

i. -3 i

i O O O i Project No. 93543b TU Electric 36" Tray Rails 1- - '-- 1

                                                              -       '       -                                  '  *-    l-
  • 1
  • 300- l l

36" Tray Rail Average

-- TC # 14
2501 E 200-

_ f$~?N+ r! '% %. ea-aj a-3 ,- p *h" ? % 0. E o - F- 100- - 5 0 -- i - i - 0 . i . , - 1 20 30 40 50 60 0 10-Time (mini

                                                                                                                                                                                                       .3 r1

O O O ll x 4 . Project No. 93543b TU Electric- t 36" Tray Rails

                                                   -      L        -      '     '     '                  -                  1      '- I  -

1-350-36" Tray Rail Average 300-- - - - TCst15 - 250- -

                  .g O '
                                                                                                                                                                                                               .i

("% _. ' - i a .e 200-g y_1cy. g

   *f    4 l %g                                                              /

E e 330u / - i 100-i

                               .5 0 -                                                                                                              -

i

                                ' O ~ ---          r-     i 1     g      ,

7 T - 0 10 20 30 40 50 60 Time - (min) CO-  ; s - _ .-- -

                                                    ,~

v V x,_./

                          -Project       No. 93543b TU        Electric 36" Tray Rails 400 '-     *--     l-      -   '    --L   - '- - L  2-  l-  ---  -

36" Tray Rail Average 350- TC # 16 4 300 LT 250-pogL gl ,42 M 3 # P, 200-

%;S,
 %   - -L+   G a)

Q. 1 5 0 -- h 100-- 50- - 0- . i T-i r i r r '--T '- 0 10 20 30 40 50 60 Time (min) ,

                                                                                              ?D A
                                                                                              ~,

O O O

                                         . Project No. 93543b Electric TU .
36" Tray Rails-
                                          -        l     *        '   "-     1 - - * --     1    -      '- ^--      -

350 36" Tray Rail Average 3g9 _____ TC # 17 250-- ! E i O

 & }-'f ,8%   Po.m            2oo-N       e    $ $
 *fg, f$
o. '150-E e

I-- - 100-- i

                                                                                                                    ~

50-0-- . i i - i i

                                          .        i 10               20         30-            40           50        60 0

Time' (min). .,.

                                                                                                                                    ' f.D
                                               ~ .    .

O O O . b Project- No. 93543b TU Electric 36" Tray Rails i i ' i ' 1-- 4 300--- ' i 36"_ Tray Rail Average TC # 18 ' i 250- ' C 200- - ' r,$ 0 .4g L

           ,B.4,;cs   so o
                  -- t g>  m k
  • 150- --

m E o  ; 100-l- 50- - 0 - i - i - i - i - i 0 10 20 30 40 50 60 Time (min) . i 8. i

O O O , i Project No. 93543b  ; TU Electric a 36" Tray Rails

                                                                 '          '      '      i    '      1   "   l
  • 300- - '

36" Tray Rail Average TC # 19  ; 250-E 200-ifyrS44 L i.<k eyL% l-S2 2 -

      +):         - Ib  j;l*

o . . 150-ct E- t e H 100- - l 50- - 0 -' -

                                                                .i i      -

i - i - i -  ! 0 10 20- 30 40 50 60 Time (min) , I':

O O O~ Project No. 93543b TU Electric 36" Tray Rails 300- ' ' ' I 2- 1 '--- - l -- ' - L u L

                                                                                                                                                    /

36" Tray Rail Average ,/ 250-m 200- -

         $r m??g                       -

2 i .t ,,e 'to e u , >4 ;4 @: p - B S$ %t Oy 150- - l e ! E o i F- .1 0 0 - i j 50- - i t _ i O -r i . i . i - r - i '- l 0_ 10 20 30 40 50 60 i i 1 Time (min) i i I l C7

O O O Project No. 93543b TU Electric .. 36" Tray Rails 300'-- - ' t- - t___2 _ 1 . .. __ a m_.-__t__ _2 - 36" Tray. Rail Average 250- - p- 200-- - y:lQ

              >:.       2
               +   h*     .

150- - m E e

F- 100--

4 50- - 0- - - - i - i - i ' r - 0 10 20 30 40 50 60 Time (min) 4 3 i m L im .- _ _ _

O O O Project No. 93543b TU Electric W-020. 3C/#6 AWG Power Cable - 36" Tray 350- ' ' ' W-020 Average - 36" Tray 300- - - TC # 22 i i 250-- - E d)-sk% b Rt s ?o a. 200-n e t)' y 5t ,z , . e@/ *#NO

o. 15 0 ->

E , o-

H 100-- -

4 l 50- - T T g l J B l g V 10 30 40 50 60 O 20 j Time (min) i , C~ t c

L 1. LO O O 1

Project No. 93543b t

TU Electric W-020 3C/#6 AWG Power Cable - 36" Tray

- ' - ' - 1 2 L*

300- - j

                                        -W-020 Average - 36" Tray                                                                                                                      ,

. TC # 23 ,/- . 250-i j E 200- - - ' "'$T+

y(;
qh,, eQp250- j -

t a E e. F 100- - 5 0 -- - 0 . i i - i - i. i . 0 10 20 30 40 50 60 Time (min) c,

O O O Project No. 93543b TU Electric W-020 3C/#6 AWG Power Cable - 36" Tray

                                                      '       '                        '                   '          '-         3            -

300--- ' ' ' ' - W-020 Average - 36" Tray ,

                                                         "                                                                                                                                                                             i 250-i 1
                  .E           200-O f{ 7"M,          g py /*%j
  .4-e     gp
           . J ,,

u 5 . W \ m E

                  -e I-          100-                                                                                                                         -
                                                                                                                                                                                                                                       +

50- - E t 0 . i r 3 r - i , i . 0 10 20 30 40 50 60 Time (min) $ t , a-. 1 i

O O O i Project No. 93543b TU Electric W-020 3Cl#6 AWG Power Cable - 36" Tray 300--. - - W-020 Average - 36" Tray

                                                             #    5 250 E       200-
                      $$-S%

i; ' ') )@ - $

                                         '5*^
                     %g-f5 5                                  _

a E c3 - l- 100-

                                                    ,_ s i                                          50-l'
                                                                                             >  i   v --

O .

i. . .

i 0 10 20 30 40 50 60 l Time (min) , a

O O O l Project No. 93543b = TU Electric , t W-020 3C/#6 AWG Power Cable - 36" Tray t 300! ' ' ' ' ' '- - - W-020 Average - 36" Tray j

                                                                      - TC # 26 250-t i

E 200-

                          <f?m%                       L                                                  ,

h$if7,k,$. E 3 ,

                   + . ..f(o*                            150-
            .)g[

m , E t e - g j o g _. .- 50-o . i r i - t 0 10 20 30 40 50 60 i I Time (min) i t 0 w, _ - . _ _ _ - - - - - _ -. s e-. +w - - , , , - . , .m,, , ._ ,_-

1 O O O 1-ll Project No. 93543b TU Electric W-020 3C/#6 AWG Power Cable - 36' Tray

                                        '         L-   '      '   '- '     '   '   "

300- - -- -- W-020 Average - 36" Tray TC # 27 250-- ._ E 200-r D i fi,0-?'+g* fq t,. e . , au a 2 - l 90 eg E 150-vn g. y a. !. E e F 100- y/ t i l-  ! 4 50 -4 { 1 0 . i . i . i i O 10 20 30 40 50 60 Time (min) , i 4 i 5 C , l

O O O Project No. 93543b TU Electric j W-020 3C/#6 AWG Power Cable - 36" Tray 1 300- - ' - ' -

                                                                           '   '   ' '   ' - -   -                                    I W-020 Average - 36" Tray 250-i E  200-Jh         fo                                    /
                   >.;.,  .) ' y u
                   -4 ;   -; .'  D                                                                                                    ,

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. i

I 4 O O O f Project No. 93543b TU Electric

!.                                 W-020 3C/#6 AWG Power Cable - 36" Tray I                           300-   -     '      -  '   -      '  -     '       -                                     1                            -  --
!                                     W-020 Average - 36" Tray
                                           # 29 250.

4

                                                                           ~
                        ^
- u. 200- ,- _

o* b S $ /./ yff% \$ ea

           % . W e* g       150 k%:&ko
            %S           O CL E

b $ 10e- ._ 4- 50-- - i O . i . 0 10 20 3G 40 50 60

Time (min) 4 .

O O O Project No. 93543b TU Electric W-020 3C/#6 AWG Power Cable - 36" Tray

                          '       '           '     -   '   - '   i-300-   -         -          -                            . -

W-020 Average - 36' Tray 250-E 200-g* 'I+, h, 2 ,(f?)f, Q4

  • 2 359 b ,%<4p $
     %     D                    /

a E

           $ 100-      -

50- - 0 .

                                                         , -1   ,

0 10 20 30 40 50 so Time (min) en

O O O Project No. 93543b TU Electric W-020 3C/#6 AWG Power Cable - 36" Tray l 300 - " ' ' ' W-020 Average - 36" Tray

                             ----- TC # 31                                          s
4. 250--

1 j ... 1 I E 4 200- . b f? h S?

l. VLr'>g c j

va dr* o g a 150 i -p y u i Q. E o j > l- 100-2

,                     5 0 --

i 1 0 - i - i - i - r - i -

o io 20 30 40 so so i i 4 l

! Time (min) , i 1 S ] _s  ;

i O O O Project No. 93543b TU Electric W-020 3C/#6 AWG Power Cable - 36" Tray  ;

                                                         -   '   -     '    -       '    -   '  '-     1      '

300-W-020 Average - 36" Tray 250-N s_ E- 200-

  ~3 N$$ $                            m
                                 .E.
                                                                          /

e - t- - 1 0 0 -' i 50- , i i t O i - i - 3 i - i - I O 10 20 30 40 50 60 t !; Time (min) , i 1 C

,                                                                                                                         m

o o 1 o  ! . ' Project No. 93543b

,                                            TU Electric                                                                                        j t

W-020 3C/#6 AWG Power Cable - 36" Tray - 300 ' ' ' ' ' " ' ' ' * ' * - - - - ~

                                               - W-020 Average - 36" Tray -                                                                     !

TC # '33 i 250- y *- t E 200-i

         % =)y :

ct

                                      ,8v
                                                               /                                                                                .

i E  ! e i l- 100- t i i- 50-  ! 4 l l t  ! I j 0-- - i . i .

                                                                        .        3 x        i       .

O 10 20 30 40 50 60 i l I Time (min) - t i t i '3 l

                                                                                                                                            ~~'

. t

O O O Project No. 93543b 1 TU Electric W-020 3C/#6 AWG Power Cable - 36" Tray 350-

                                       -      '    -   '-    -     '    -                      '                                            -   1    -   .~

W-020 Average - 36" Tray 300 TC # 34 250-E To g 200

          ' r,349;
                 ,J j.g a .

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'                       ho. 150 E

O 1 W

 ;'                         1 0 0 --

) 50- - 4 L

O .

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

O O O i No. 93543b Project . L TU Electric W-020 3C/#6 AWG Power Cable - 36" Tray 2 ' ' - ' - ' ' ' '

                                                                                                                                   - l-l-             300-                '                                                                                                          t 3

W-020 Average - 36" Tray -

                   , - -- TC # 35 250-l-

E 200 i f f,

Mfh e l ij%[ fe k

150-i E , 2 ' e i- 100-i i l-50- - 0 . 7 .

                                                                                                                         ,      r- -{-

O 10 20 30 40 50 60 i Time (min) i t I .. , I i s

1, O O O l P Project No. 93543b TU Electric l t W-047 7C/#12 AWG Control Cable - 36" Tray i

                                                        '     -   '    -      '    -   '     '-                              I  -

300- - i W-047 Average - 36" Tray TC # 38 i 250-  !

<                                                                                                                                                                             l 1                                     C  200-                                       7                                                                                          j f~n of ew,      o i

j-kir'.ff ,. Bg 150 - m [ b. i E

E

.. e

F- 1 0 0 --

i t r  ! S o -- i ! o-- . i i i - 1 , o 10 20 30 40 50 so l ! Time (min) l i l H ' . D i i

                                                                                              - - - _ _ _ _ _ _ _ _ _ _ _ _ _ _        __________._m. _ _ _ . _ _ _ _ _ _
             =      .

O O O Project No. 93543b TU Electric W-047 7C/#12 AWG Control Cable - 36" Tray

                          '           '   2--   1    2l    *   - l- >    --

300 " ' W-047 Average - 36" Tray 250-- c L 200-O4 % h' mf P b k,b);;p f i50-ca. E

         $     100-50-0     -

T - i - i - 7 + 1 10 20 30 40 50 60 0 Time (min) s 5i

                                                 /

O O O i i Project No. 93543b 1 TU Electric W-047 7C/#12 AWG- Control Cable - 36" Tray 300 - i W-047 Average - 36" Tray  ; TC # 40 L 250- l' l: i j ~~e j g 200- i ! I

                             #o*

a3 J "3,M b -Ie ti ea  !; 150 kpg,(g j i o_  ; i E l

c) l F- 100- >
I 4

5 0 -- f ' j 0- .

                                                                     ,         i      -

i . O 10 20 30 40 50 60 i i Time (min)  : e a l  :) c

t o o o i ~ Project- No. 93543b TU Electric I W-047 7C/#12 AWG Control Cable - 36" Tray t 300-- - ' ' ' ' ' * ' ' - - 4 i W-047 Average - 36" Tray ,

 !                                                          - TC # 41 j

250-j 4 I E 200- ,

pur o e
                               >4, ,, : ,#

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.                                               a.

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,                                               c)                                                                                         i e                                           H       100-4                                                                                                                                           ;

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)                                                                             Project N o.           93543b

! TU Electric W-047 7C/#12. AWG Control Cable - 36" Tray 1 a 1.=>. .t u i.. .. i , i , 30c 3 i-

j. .W-047 Average - 36" Tray  ;

TC # 41 250 { $ / l-C 200 j j

,                                       . 4+#o g~        >

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1. .

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O 10 20 30 40 50 60 l t

Time (min) r 4 n, n.- , - , ,- , - - - -. _ , - - - - - . - - _ - _ _ _ - . . . - - - _ _ . _ _ . _ _ _ - - . . _ _ .

t O O O t

i. Project No. 93543b

< TU Electric , i W-047 7C/#12 AWG Control Cable - 36" Tray  !

                                   -       '  '     '         '      '    *                                               '                                    '     1     L          ;

I. 300-4  : W-047 Average - 36" Tray. l TC # 43 i 250-L J , E 200- [

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O 10 20 30 40 50 60 i i

Time (min)  ! I

.                                                                                                                                                                                 N   ;

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O O O  : Project No. 93543b TU Electric W-047 7C/#12 AWG Control Cable - 36" Tray

                                 ,    i     . a_    .     .    .                 i                                              .                              i    .

399  ! 1

W-047 Average - 36' Tray 7
TC # 44 250-d-

4

E 200-i f),wRg L -

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3 gjys. e ge iso ' O. E e -

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+ i 'f S0- - i I I I l 0 10 20 30 40 50 60 i Time (min) 4 t t c> .

O O O 14 Project No. 93543b-TU Electric W-047 7C/#12 AWG Control Cable - 36" Tray

                  , 3 0 0 ---   '        ' '  '     '     '    -

t - ' *- W-047 Average - 36" Tray 250-

                                                                         /
                                                                     .j E-    200--

g % W),~. *o . - n- p y ,g f ,gg g 150 / 4 E' o-F- 100-5 0 -- - 0 - i ' i - i - T r i ' - -- '- 0 10 20 30 40 50- 60 .. Time (min) s~

                                                                                           ..)..

O O O Project No. 93543b i TU Electric W-047 7C/#12 AWG - Control Cable - 36" Tray 300- - ' - J - ' - ' - J- -- -- W-047 Average - 36" Tray 250--

                                   # 6

[ E 200- - d O

   ' g.   'p.
   $ ?"1- 2 q.i
    "+)S/g      g. 150 s..

2

       ~, e e E

e I- 100-4 5 0 -- - f l I l I l 3 I O 10 20 30 40 50 60 Time (min) a w- ~ a - __ - --- ---._____._-_----_---__.-.___.__--a.--. ._-_a_ - - - . . - .

0 O O Project No. 93543b TU Electric W-047 7C/#12 AWG Control Cable - 36" Tray i . i . i e t i_ i . 300 . _ _ W-047 Average - 36' Tray . , TC # 47 250--

                                                                                    /

C 200- , $3 ?O

  -                ~3 i-        ... e l  (44x't           g      150
     ~s.           e CL
E- I e

i F '00-I' 50- - 0 . i - i i - i i - I O 10- 20 30 40 50 60 i f Time (min) L-t ..t

O O O I i Project No. 93543b TU Electric ' W-047 7C/#12 AWG Centrol Cable - 36" Tray i 300- ' - i W-047 Average - 36" Tray TC # 48 - , 250-N ~/ E 200- . l

    ,[tM+. , D '                                                                                                                            t
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O O O Project No. 93543b i

;                                              TU Electric W-047 7C/#12 AWG Control Cable - 36" Tray
                                                     '          '       '                                                            '        l-300-        -           '      -                                                        -             '-        -

W-047 Average - 36" Tray i , 250- [

                               ^

w 200- - h fo LO ." s 4f ' j[ Eg i 150-ct  ! E - a> l- 100- - i i + 50- , I ] 0 i . i r- -- 0 10 20 30 40 50 60 i 1-l Time (min) i H  ; is 4

i O O O Project No. 93543b TU Electric Ii W-047 7C/#12 AWG Control Cable - 36" Tray t 350-- - ' - I - '

  • 1 i ' -- > -

W-047 Average - 36" Tray 300- TC # 50 i i 250-E jf)m.0+, L t/t - c) 200

                          .o h -] ~ , ,, '.?   E                                                                              !

oi 'w - l 4 ~r so E [ ca. 150-E  ! c, i. F-100- - t 50- - l 1 D . , , r . 1 i . i .  ; i 0 10 20 30 40 50 60  ; t I Time (min)  ; H  !

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Project No. 93543b TU Electric  ! l W-047 7C/#12 AWG Control Cable - 36" Tray i

                                                 '     '   '   '    '     '     ' '     -     1     -

300- ~- W-047 Average - 36" Tray TC # 51 l 250- -- j

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e O O O Project No. 93543b TU Electric

,                          W-071 5f;/#16 AWG Instr. Cable - 36" Tray
                                *                      '        '       1---

3004 - ' ' ' ' ' W-071. Average - 36" Tray TC # 54 . 250 -

               ^

u_ 200-- L gfb 0 w .e o  %) n[o* 150-m E ',; c) F 100-- , 50-O . i . 7 - 0 10 20 30- 40 50 60 Time (min) p g j  ! -s l

O O O Project No. 93543b TU Electric - W-071 5C/#16 AWG Instr. Cable - 36" Tray 300- - ' - ' - 1 2--l- " 2 '-- ! - Y W-071 Average - 36' Tray TC # 55 250-  ! i ! } _ . _ _ _ - - ~ _ i

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  <                                                    Project     No. 93543b TU Electric                                                                                                             i t

W-071 5C/#16 AWG Instr. Cable - 36" Tray , 300 ' ' ' l- ' ' ' ' ' I - i 4 W-071 Average - 36" Tray

                                                                                                                      '[

TC # 56 250-200-m., { t j l ..t qg 7-g I

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             %;:44 g                                                   ,/

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O O O Project No. 93543b TU Electric , W-071 5C/#16 AWG Instr. Cable - 36" Tray

                                  '     '       '     d   2-         '       '    ' 2  3  -

i 300-l V!-071 Average - 36" Tray

                                          # 57                                                  _

250-l

                ^

u_ 200

N O e va 150-9,0 dejd '-

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                                                                                                 ~

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

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                                             ' W-071 SC/#1,6 ' AWG instr. Cable .- 36" Tray 300-     -         '                       '              '          '   '   '- I        '

i W-071 Average - 36" Tray  !

                                                - TC # 58                                                                                              !

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O O O Project N o. 93543b TU Electric W-071 SC/#16 AWG Instr. Cable - 36" Tray 1 ' ' " i ' -

300--- '

                                                           '            2                                                                     -

W-071 Average - 36" Tray

                                                              .TC # 59 250-i i
                                                                                                                     - - - . . . .                        i C    200--                                                ,

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O O O i Project No. 93543b TU Electric

.                                                                             W-071 SC/#16 AWG Instr. Cable - 36" Tray J-  -

300- - ' ' W-071 Average - 36" Tray 250-60 /. _/-"~ E 200-

                                                - ; .vkk,
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                                                                     '150 9(,p4;p* g a                                                                                                            '

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O O O~ Proj ect. No.. 93543b TU . Electric W-071 5C/#16 AWG instr. Cable - 36" Tray F 300

                                                           '         'l                 '

W-071 - Average. - 36" Tray - 250-

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7 o o o l l. Project No. 93543b ! TU Electric W-071 5C/#16 AWG Instr. Cable - 36" Tray i i . i . 1 2 ._

i. .

399_ . . W-071 Average - 36" Tray

                                          # 62                                                         4 250-E. 200-jfNA?e
  . 4 #% h,,   2 cs         a 150
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O O 0 Project No. 93543b , TU Electric

                                                        .W-071 SC/#16 AWG Instr. Cable - 36" Tray 300-           '        i   &  1:    *-     1  &    '  '   i  -

W-071 Average - 36" Tray TC # 63 250- ' ' E 200-

                             +7'if st      s u' y 9, y-,- 30 150-e E

o 100-l- , l 3 r 50- -- t 0 . i .

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

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(3 O O ' i Project No. 93543b

.                                                     TU Electric W-071 SC/#16 ' AWG Instr. Cable - 36" Tray                                                   !
                                                                    '           '          '       '     J 300-}.                        -       -         -                  -                                   t t                  --

W-071 Average - 36" Tray

                                                                      # 64
250- _f _

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O O O Project No. 93543b  ; TU . Electric W-071 SC/#16 AWG instr. Cable - 36" Tray 300'

                                   '                  '           l     '     '      '-   i          '   '      -           --

1 W-071. Average - 36" Tray TC # 65 250- ,

                                                                                                        /
                                                                                          -                                                    i C        200-i dh0+,  L                                                                       ..
     #4j,gf g         is0-                                             .,

a E 4 m I-- -100-i 5 0 -- i L i 0- . i . i i . , . 0 10 20 30 40 50 60 . Time (min) . 1 13 1

O O O i Project No. 93543b  ! TU. Electric  ! W-071 5C/#16 AWG instr. Cable - 36" Tray 1- - 350 - i W-071 Average - 36" Tray 300- TC # 66 250- , iE ~ B<f%

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O O O Project No. 93543b TU Electric W-071 SC/#16 AWG Instr. Cabie - 36" Tray i i i . i m i . i m . 399 .- W-071 Average - 36" Tray

                                          # 67                                                  _

250-l

           ^

g 200-ifQG ' *< j' g-p ; h!-Q @ s. se0 x

                                                            /

m

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           $       100-50-0-         -

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

                                                                                                             ._ 3 l                                                            .

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

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                                                                                               .a    <-

1 Report No.12340-93M3b Septanber 9,1992

;                     Texas Utilities Electric                                  APPENDICES i

l l Appendix F: l l TABULAR TEST DATA l l

                                                               ':/

ag (, ,

                                                          EkN $

I l'1 Project No. 93543b Scheme 1 June 23,1992 Time E119 Std Furnace Avg Ckt Int #1 Ckt Int #2 Ckt int #3 Ckt Int #4 (min) (* F) 0 68 86 3.7042 3.6978 5.7163 4.8342 1 254 153 3.7036 3.6972 5.7157 4.8342 2 440 416 3.7036 3.6978 5.7157 4.8342 > 3 627 753 3.7042 3.6978 5.7163 4.8347 4 813 986 3.7042 3.6978 5.7163 4,8347 5 1000 1096 3.7042 3.6985 5.7163 4.8348 6 1060 11*0 3.7042 3.6979 5.7163 4.8355 7 1120 1093 3.7042 3.6979 5.7163 4.8348 8 1180 1070 3.7042 3.6979 5.7163 4.8342 9 1240 1121 3.7042 3.6979 5.7163 4.8348 10 1300 1226 3.7042 3.6979 5.7163 4.8355 11 1327 1311 3.7048 3.6985 5.7163 4.8355 12 1346 1385 3.7048 3.6985 5.7169 4.8361 13 1364 1406 3.7048 3.6990 5.7169 4.8366 14 1380 1401 3.7055 3.6900 5.7175 4.83F6 15 1395 1400 3.7053 3.6990 5.7175 4.8366 16 1410 1392 3.7053 3.6990 5.7175 4.8366 17 1423 1386 3.7053 3.6990 5.7175 4.8372 18 1436 1405 3.7059 3.6990 5.7180 4.8372 05 19 1448 1432 3.7053 3.6990 5.7180 4.8372 20 1459 1461 3.7053 3.6956 5.7180 4.8372 21 1470 1483 3.7059 3.6996 5.7180 4.8378 22 1480 1472 3.7059 3.7002 5.7166 4.8378 23 1490 1458 3.7066 3.7002 5.7186 4.8378 2* 1499 1485 3.7066 3.7002 5.7186 4.8383 25 1500 1512 3.7066 3.700i 5.7186 4.8377 26 1517 1498 3.7066 3.7001 5.7186 4.8383 27 1525 1494 3.7066 3.7001 5.7186 4.8389 28 1533 1509 3.7066 3.7001 5.7186 4.8383 29 1541 153? 3.7066 3.7001 5.7191 4.8389 30 1548 1550 3.7066 3.7007 5.7191 4.8389 31 1555 1560 3.7070 3.7007 5.7191 4.8389

 .                  32                  1562            1549          3.7070                          3.7007      5.7197   4.8394 33                  1569            1551          3.7070                          3.7013      5.7197   4.6394 34                  1576            1566          3.7070                          3.7007      5.7197   4.8334 35                  1582            1582           3.7070                         3.7013      5 7197   4.8394 36                  1588            1592           3.7070                         3.7013      5.7197   4.8394         ,

37 1594 1595 3.7070 3.7013 5.7197 4.8400 38 1600 1597 3.7077 3.7013 5.7107 4.8400 39 1606 1597 3 7070 3.7013 5.7203 / .JO 40 1612 1601 3.7077 3.7018 5.7203 1.6400

       %)                                                              R?$                         /

J q m.

                                                                  %2sll

Project No. 93543b Schemo 1 June 23,1992 Time E119 Std Furnace Avg Ckt Int #1 Ckt int #2 Ckt Int #3 Ckt Int #4 (min) (* F) 41 1617 1604 3.7077 3.7018 5.7197 4.8406 42 1622 1617 3.7077 3.7018 5.7203 4.8400 c 43 1627 1627 3.7077 3.7018 5.7203 4.8406 44 1633 1637 3.7083 3.7018 5.7203 4.8412 45 1638 1642 3.7077 3.7018 5.7203 4.8412 46 1642 1639 3.7083 3.7018 5.7203 4.8412 47 1647 1644 3.7083 3.7024 5.7210 4.8412 48 1652 1652 3.7083 3.7024 5.7210 4.8418 49 1656 1655 3.7083 3.7024 5.7210 4.8418 50 1661 1661 3.7089 3.7024 5.7210 4.8418 51 1665 1665 3.7089 3.7030 5.7210 4.8418 52 1669 1672 3.7089 3.7024 5.7214 4.8423 53 1674 1675 3.7089 3.7030 5.7210 4.8423 54 1678 1673 3.7089 3.7030 5.7214 4.8423 55 1682 1673 3.7089 3.7031 5.7216 4.8430 56 1686 1684 3.7089 3.7031 5.7216 4.8430 57 1690 1693 3.7089 3 7031 5.7216 4.8430 58 1693 1687 3.7089 3.7031 5.7216 4.8430 59 1697 1700 3.7089 3.7036 5.7222 4.8424 (3 3.7036 5.7222 4.8436 () 60 1701 1706 3.7095 61 3.7095 3.7031 5.7222 4.8436 62 3.7089 3.7025 5.7216 4.8430 63 3.7135 3.7078 5.7297 4.8494 64 3.7158 3.7106 5.7361 4.8540 65 3.713s 3.7066 5.7291 4.8471 66 3.7106 3.7042 5.7) 45 4.8430 67 3.7095 3.7030 5.7222 4.8401 66 3.7077 3.7019 5.7210 4.8389 Max Temp: t A o ,. , w SgjNE o l

ir

                                                                                     .L .

Project No. 93543b Scheme 1 June 23,1992

Tray Rails 36" Tray 36" Tray 36" Tray A)

(, Time Ckt Int #5 Ckt Int #G Average W 020 Ave W 047 Ave W 071 Ave (min) (*F) (*F) (*F) (*F) 0 6.3899 5.3046 87 87 87 87 1 6.3893 5.3040 87 87 87 87 2 6.3899 5.3046 87 87 87 87 3 6.3904 5.3046 87 87 87- 87 4 6.3904 5.3052 87 88 87 87 5 6.3911 5.3052 88 88 88 88 6 6.3906 5.3052 89 89 89 89 7 6.3906 5.3052 91 91 90 91 8 6.3906 5.3052 93 92 91 92 9 6.3906 5.3052 96 94 93 95 ] 10 6.3911 5.3058 99 96 95 97 j 11 6.3911 5.3058 103 99 98 100 2 12 6.3917 5.3064 107 101 101 103 13 6.3923 5.3070 112 104 104 106

14 6.3930 5.3075 117 107 107 110 15 6.3928 5.3075 122 110 110 114 16 6.3928 5.3075 127 113 114 117
17 6.3928 5.3081 131 117 118 121 18 6.3934 5.3081 136 120 122 125

('S v' 19 6.3934 5.3087 141 124 126 129 20 6.3934 5.3087 146 128 130 133 21 6.3934 5.3087 150 132 134 137 22 6.3941 5.3092 155 136 138 141 23 6.3941 5.3098 159 141 142 145 24 6.3945 5.3098 164 145 147 149 5 25 6.3945 .5.3098 168 149 151 153 26 6.3945 5.3103 172 153 155 157 27 6.3952 5.3103 176 158 159 161 28 6.3952 5.3109 180 162 163 165 29 6.3956 5.3109 183 146 167 169 30 6.3963 5.3109 187 170 171 173 31 6.3956 5.3115 191 175 175 177 32 6.3963 5.3121 194 179 179 181 33 6.3963 5.3121 197 182 183 185 34 6.3963 5.3126 200 186 186 188 35 6.3969 5.3126 203 190 190 192 36 6.3969 5.3132 206 194 193 196 37 6.3975 5.3132 208 197 196 199 38 6.3975 5.3132 211 200. 199 203 39 6.3975 5.3132 213 203 202 206

   ~'g    40     6.3980       5.3139       215          206           204      209 (O

g?N .o%, , kE r 1

                                          '%hllbh

1: Project No. 93543b Scheme 1 June 23,1992 l Tray Rails 36" Tray 36" Tray 36" Tray  ; k9 Time Ckt Int #5 Ckt Int #6 Average W 020 Ave W 047 Ave W 071 Ave l (min) ( F) (' F) ("F) (#F) 41 6.3975 5.3139 217 208 206 211 42 6.3980 5.3139 219 211 209 213 43 6.3980 5.3145 222 213 211 215 44 6.3986 S.3150 225 215 213 216 45 6.3986 5.3145 227 216 215 218 46 6.3992 5.3150 231 218 216 220 47 6.3992 5.3150 235 220- 219 221 48 6.3992 5.3156 239 221 .? 21 223 49 6.3992 5.3156 243 223 224 224 50 6.3998 5 3162 247 225 227 226 51 C.3996 5,3162 252 226 230 228 52 6.3998 5.3162 256 228 233 232 53 6 4003 5.3162 261 231 236 236 54 6.4003 5.3168 265 234 239 239 55 6.4004 5.3169 270 238 242 243 56 6.4004 5.3169 275 242 245 247 57 6.4010 5.3174 280 245 248 251 58 6.4010 5.3174 284 248 251 255

 ,q           59    6.4010       5.3174      289                 252           255          259 C/           60    6.4016       5,3180      294                 255           959          263 61    6.4016       5.3180 62    6.4010       5,3174 63    6.4097       5.3273 64    6.4172       5.3319 65    6.4063       5.3237 06    6.4004       5.2163 67    6.3981       5.3041 68    6.3969       5.3018 Max Temp:                              294                      255           259         263
 'm, Y o           't r
                                                  ~,   ,, g NATO S                                               l

1. Project No. 93543b Scheme 1 June 23,1992 Time TC # 1 TC # 2 TC # 3 TC # 4 TC # 5 TC # 6 TC # 7 TC # 8 TC # 9 (min) (*F) (* F) (*F) (*F) (*F) (*F) (*F) (*F) (* F) 0 87 86 86 86 86 87 6) 87 87 1 87 87 86 87 87 87 87 87 87 2 87 86 86 87 87 87 87 87 87 3 87 86 86 87 87 87 87 87 88 4 87 87 88 87 88 87 88 87 88 5 87 87 89 87 89 89 89 88 88 6 88 88 91 87 91 92 90 89 89 7 90 89 94 87 92 95 92 91 90 8 92 00 96 88 95 98 95 94 92 9 95 93 98 89 97 103 98 97 95 10 99 96 101 91 100 108 102 101 99 11 104 100 105 94 104 113 107 106 102 12 111 ". 0 5 109 96 108 118 111 111 106 13 116 110 114 100 112 124 116 117 110 14 121 116 119 104 116 130 122 122 115 15 126 121 124 109 121 136 128 126 119 16 131 126 129 114 126 140 134- 130 124 17 135 131 133 119 131 145 140 134 128 A 18 140 135 138 125 136 150 147 128 133 V 19 143 139 143 142 145 130 135 140 145 155 160 152 157 141 145 137 141 20 147 21 151 147 149 140 150 164 162 148 146 22 154 150 153 145 154 168 166 152 150 23 158 153 156 150 158 171 170 156 153 24 161 157 159 154 163 175 173 159 158 25 164 160 163 159 167 178 176 163 161 26 167 164 166 163 171 181 180 166 165 27 171 167 169 166 175 184 183 171 169 28 175 171 173 170 178 188 187 174 173 29 179 175 177 174 182 191 190 179 177 30 182 179 181 178 185 195 193 184 181 31 186 183 186 182 189 199 196 188 184 32 100 186 189 186 192 202 199 191 188 l 33 192 190 192 189 196 206 203 194 191 34 195 193 195 192 199 210 207 196 194 35 198 195 196 195 203 214 210 199 197 36 200 198 198 198 206 218 213 202 200 37 203 202 200 201 208 223 214 204 202 l l 38 205 204 202 203 210 228 216 207 204 I 39 206 206 204 205 212 232 219 210 206 40 207 208 208 206 214 237 220 214 208 l O(N _( f(:~f$Q 6$h$

1 nr

1. ; \

Project No. 93543b Scheme 1 June 23,1992 O Time TC # 1 TC # 2 TC # 3 TC # 4 TC#5 TC # 6 TC#7 TC # 8 TC # 9 L' (min) (* F) (*F) (*F) ('F) (*F) ('F) (*F) (*F) (* F) 41 209 210 209 208 219 241 222 219 209 42 210 213 212 209 224 246 224 223 211 43 212 216 214 210 230 251 226 228 212 44 215 219 218 211 235 256 228 2J3 214 45 218 223 221 211 240 262 232 238 215 46 222 228 225 211 246 268 237 243 217 47 225 232 229 211 252 276 243 247 218 48 229 237 233 211 259 285 249 252 220 49 234 242 237 211 266 293 255 256 222 50 239 248 242 211 272 302 261 261 223 51 244 253 246 212 279 310 267 265 225 52 249 258 250 212 285 317 274 270 227 53 255 263 255 213 292 325 280 276 229 54 261 268 259 215 299 332 287 279 232 55 266 273 263 216 306 339 293 284 234 56 272 278 267 218 313 346 300 289 237 57 277 283 272 221 319 353 306 293 239 58 283 288 277 223 326 361 312 297 241 g- 59 288 293 28' 226 332 368 318 301 244

   'q _ ,       60     293    297      286     228    339    377      324   305           247 61 62 63 64 65 66 67 68 Max Temp:    293    297      286     228    339    377      324   305           247 O
                                                 $    0.g, iA     ;
                                                *o~n ht.
     ,                                                         ~      ,        . , - ,        -
                                                                                       $n.

_L s I Project No. 93543b Scheme 1 June 23,1992 Time TC # 10 TC # 11 TC # 12 TC # 13 TC # 14 TC # 15 TC # 16 TC # 17 (min) (F) (*F) ('F) ('F) ('F) ("F) (*F) (*F) 0 87 87 87 87 87 87 87 87 1 87 87 88 87 87 87 87 87 2 87 87 88 87 87 87 87 87 3 87 87 88 87 87 87 87 87 4 87 87 88 87 87 87 87 87 5 87 88 88 86 87 87 88 87 6 88 89 89 89 88 89 90 88 7 89 90 90 91 89 91 92 90 8 90 92 92 94 91 94 95 91 9 91 95 94 98 93 97 99 94 10 93 98 97 102 96 101 103 97 11 95 102 101 107 99 105 108 101 12 97 106 104 112 102 110 113 105 13 100 111 109 118 106 114 118 110 14 103 115 113 124 111 119 123 114 15 106 120 119 130 115 124 128 120 16 110 125 124 136 120 130 133 125 17 114 130 129 141 125 35 138 130 18 118 136 135 145 130 140 144 136 (,/ 19 123 141 140 150 135 145 149 142 20 128 146 145 154 139 150 154 148 21 134 151 151 158 144 155 159 153 22 139 156 157 161 148 159 165 159 23 145 161 164 165 153 164 170 164 24 150 166 173 169 157 168 175 169 25 156 171 179 172 161 173 179 175 26 162 175 185 176 165 177 184 180 27 167 179 189 179 169 181 187 185 28 172 183 133 182 173 185 191 189 29 1'77 187 195 185 177 189 194 193 30 181 191 195 188 181 192 197 197 31 185 195 193 191 184 196 199 199 32 188 199 193 195 188 199 202 201 33 191 202 195 198 191 202 205 204 34 194 206 197 201 194 206 209 206 35 196 208 200 203 197 209 213 208 36 198 210 203 207 200 213 217 209 37 201 211 206 210 202 216 221 211 38 203 212 207 213 204 219 225 212 39 204 213 208 21G 206 222 229 213 f 40 205 213 208 219 208 226 234 215 N]) f:?n* Of' se y \fA

                                         ! i       1 o'     o

13 Project No. 93543b Scheme 1 June 23,1992 [~)h \ Time TC # 10 TC # 11 TC # 12 TC # 13 TC # 14 TC # 15 TC # 16 TC # 17 (min) (*F) (*F) ( F) ('F) ('F) (*F) ("F) ('F) 41 207 215 207 223 211 229 238 216 42 208 216 207 226 213 234 243 219 43 209 217 208 228 214 238 249 222 44 210 217 210 231 216 242 254 227 45 210 219 211 235 218 247 260 231 46 212 222 211 238 221 252 267 237-47 213 225 213 243 225 258 273 243 48 214 229 216 249 230 263 279 248 49 215 232 218 255 234 270 286 254 50 217 236 221 261 237 276 293 260 51 219 240 223 267 241 284 299 265 52 221 244 226 272 245 291 306 272 53 223 249 229 278 251 -298 313 278 54 226 253 233 283 256 306 319 284 55 229 258 236 289 261 312 326 290 56 232 263 239 294 266 319 333 297 57 235 268 243 300 270 326 340 303 58 238 273 246 -306 275 333 347 309 59 242 277 250 311 279 340 354 314 (_j 60 245 283 254 317 284 347 362 320 61 62 63 64 65 66 67 68 Max Temp: 245 283 254 317 284 347 362 320 f3:b, P ,r e 0] jff

43G, Project No. 93543b Scheme 1 June 23,1992 i Time TC # 18 TC # 19 TC # 20 TC # 21 TC # 22 TC # 23 - TC # 24 TC #.25 [ (min) (*F) (*F) ('F) (*F)- ( F) (*F) ('F) ('F) O 87 87 87 87- 87 87 87 87 1 87 87 87- 87 87 87 87 87 2 87 87 87 87 87 87 -87 87 3 87 87 87- 87 87- 87 87 87 4 87 87 87 87 88 87- 87 -87 5 88 87 -88 88 90- 87 87 -87 6 89~ 88 89 89 93 88 87 -87 7 91 89 91 '90 97 89 88 87 8 94 90 94 93 101 91 88 88 ' 9 97- 91 98 95 ~104 93 89 89 10 100 94 102 99 108 96 90 90 11 104 96 107- 102 112- 99. 91 91 12 109 99 112 107 116 103 -93 92

                                      -13     114        103        117                 111                  119                  107:        95      94 14     119        106       ,122                 116-                 123                  111         97     -96 15     123-       110       '128               -121                   127                  116       100-      98 16     128        115        133                 125                  131                  120       103      100 17     132        121        138                .130                  136                  125       106      102-18    136        127        143                  135                 140                  130-      109      105
_/ 19 140 133 148 140 -144' 135- 112 107-20 143 -140 153 145 148 140 115 110 21 14' 146 -157 150 -152 144 119 113-22 1! 151 161 154 157 148 123- .117 23 15% 157-- 165 158 161 152 126 120 24 158 163 .169 162. 165 156- 130 124 25 161 163 173 166 -169- -159 134 128 26 165 174 176 169 173 161 138 131-27 169 180 180 173 ' 177 164 142 135 28- 173- 185 -183 176 181 166 146 140-.

29 177 :190 187' 180- 184 169- 151 144 30- 181 -197 191 183 188- 172 155' 148 31 :186 202 194- :186 191 175 160 153 32 189 208 197 189- 194' l179 -.164 158 ,

                                     -33      192.    -210          199                '192' 197                  183      1691     162:
                                     .34      195       -214       -202                   195                 199                  186      173      167 35    199-       216        204                   198                202                   189      178-    '172:

b 36- 202 218- 205. 202- 204 .193 -182 177- [ 198- 187 3 71 205- 221 207 205 208 181. 209' 200 38 207: 222 209 x209 191 186~ h 39 210 -222 212 211- 210- 202 195. 190 l 40 212 222 215 212 211 204- 200 194 O% QM

14 Project No. 93543b Scheme 1 June 23,1992 Timo TC # 18 TC # 19 TC # 20 TC # 21 TC # 22 TC # 23 TC # 24 TC # 25 (min) (* F) (F) (*F) ('F) ("F) ('F) (*F) (* F) 41 215 221 218 212 212 206 204 197 42 218 221 220 213 214 207 206 199 43 220 221 222 213 214 208 208 202 44 221 220 225 213 216 209 208 203 45 223 220 228 214 218 209 209 204 46 224 223 231 216 220 210 209 205 47 226 224 235 218 230 211 209 206 48 228 225 239 220 242 212 208 206 49 230 227 244 222 251 213 206 207 50 231 231 250 225 259 216 204 207 51 234 233 253 228 266 218 202 210 52 236 236 255 231 271 222 201 213 53 239 239 257 235 275 229 200 215 54 241 241 261 239 279 236 198 218 55 243 243 266 243 283 241 197 222 56 246 246 270 247 287 245 200 228 57 249 249 275 251 291 249 201 233 58 251 252 280 255 294 252 202 238 59 253 256 285 259 298 255 203 243 O 60 61 255 261 290 263 301 257 206 247 62 63 64 65 66 67 68 Max Temp: 255 261 290 263 301 257 209 247 o: <= %, s ys ,. Oh y3%

1d: Project No. 93543b Scheme 1 June 23,1992 Time TC # 26 TC # 27 TC # 28 TC # 29 TC # 30 TC # 31 TC # 32 TC # 33 (min) (*F) ('F) ( F) (rF) ("F) (*F) (*F) (*F) 0 87 87 87 87 87 87 87 87 1 87 87 87 87 87 87 87 87 2 87 87 87 87 87 87 87 87 3 87 87 87 87 88 87 87 87 4 87 87 87 87 88 87 87 87 5 88 87 87 87 89 87 87 88 6 88 87 88 88 91 87 88 88 7 90 88 89 89 93 87 89 89 8 91 89 91 90 95 88 91 91 9 93 90 92 91 98 88 93 92 10 94 92 94 92 100 89 95 94 11 97 94 97 94 103 90 98 96 12 99 96 100 97 106- 91 101 99 13 101 98 102 99 110 92 104 101 14 104 100 106 102 113 94 107 104 15 106 103 109 106 117 95 110 108 16 109 106 113 109 120 97 113 112 17 111 109 116 113 124 99 116 116 (~~g 18 114 113 120 117 128 102 119 120

 \s_)    19     117     116       124        121     132       105     123     125 20     121     120       128        125     136       108     126     130 21     124     124       133        130     140       111     129     135 22     128     128       136        134     144       115     132     141 23     132     133       141        140     148       118     136     146 24     136     138       146        145     153       122     140     151 25     141     143       150        150     157       126     144     155 26     146     149       155        154     162       131     148     160 27     151     154       160        160     166       135     153     164 28     156     159       165        165     171       140     159     168 29     161     165       170        170     175       145     164     172 30     166     169       174        175     178       150     169     176 31     170     174       179        179     182       155     174     180 32     175     179       183        183     185       161     179     183 33     179     183       186        187     188      -167     183     187

! 34 184 187 190 190' 191 173 186 191 35 188 190 192 194 194 178 190 194 36 191 193 195 198 196 183 193 197 37 194 196 197 200 198 187 196 199 l 38 197 198 199 202 200 191 199 201 l 39 199 202 201 204 202 195 201 203

 / x     40     202     204       202        206     203       198     208     207 f,Y(O or e u \q+
                                          \ Qf 05$5
                                                                                        }

li Project No. 93543b Scheme 1 June 23,1992 Time TC # 26 TC # 27 TC # 28 TC # 29 TC # 30 TC # 31 TC # 32 TC # 33 (min) (*F) ('F) ('F) ( F) (*F) (F) ("F) (*F) 41 204 206 204 207 205 202 211 208 42 207 207 205 208 206 204 213 210 43 208 208 206 209 208 206 214 211  ; 44 209 208 207 209 209 200 216 212 45 210 209 208 210 210 209 218 213 46 210 209 209 210 211 210 219 215 47 211 209 210 209 212 212 219 217 48 211 209 211 209 213 213 218 219 49 212 209 212 210 214 214 216 221 50 212 213 213 212 214 214 213 225 51 213 216 214 215 215 213 211 230 L 52 214 219 216 217 216 210 209 235 53 215 223 221 222 220 207 209 238 54 220 228 228 228 226 205 209 240 55 228 232 235 233 233 204 208 242 56 236 23G 242 238 239 200 209 247 57 242 240 247 242 244 197 213 249 58 246 243 251 247 248 196 218 251 59 252 247 256 251 252 197 223 254 9 60 61 256 251 260 255 255 197 227 257 62 63 64 65 66 67 68 Max Temp: 256 251 260 255 255 214 227 257

                                            ?bf o      o

1,! Project No. 93543b Scheme 1 June 23,1992 Time TC # 34- TC # 35 TC # 38 TC # 39 TC # 40 TC' # 41 TC # 42 TC- # 43 - (min) ('F). ('F) ('F) (*F)- (* F) ('F) (*F) -('F) 0 87 88 87 87 87 87- 86- 87 1 87 88 87 87 87 86 -86 86 2 87 88 87 87 87- 86 86 86 3 88 88 87 87 87 87 87 87 4 89 90 87 97 87. 87 87 87 5 91 92 88 87 88 87 87 6 93 94 88 87 89 88 88 7 96 97 90 89 88 90 89 89 8 98 100 91 89 88 92 90 90 9 101 103 93 91 8G 94 92 92 10 104 106 96 92 90 97 94 94 11 108 110 99 95 92 99 96 96 12 111 113 102 97 93- 102 98 99 13 114 117 106 99 95 104 101 102 14 118 121 110- 101 97 107 104 105 15 121 125 115 103 99 110 -107 108 16 1 I.E 128 120 -106 102 113 110 112 17 -130 132 125 110 105- 116 113 .115 18 134 137 130 113 107 119 117 119 O 19 20 139 144 141 146 135 139 116

                                                    -120 110 113
                                                                         .122 126 120
                                                                                      .124 123 127 21      148       150      -144          123        117         129         128          131 22      153       154        148         127        120         133-        132          135 23      158       158        153         131        124         136         135          139 24      163        162       157-        134-       128         140         139-         144 25      167        166       161         138        132         144         143-          149     <

^ 26 171 170 164 142 136 148 1147- 154 27 -174 173 168 146- 140 -151

                                                                          -            -151           159 28     -177        176       172          150        144-       155         156         -164-29      180        179       175          154        149        159         160           168 30     183        182       179          159        153-       163         165           173
           -31      186      .186        183          163        158        167        _171           177 32     189-       188       187-         167        162        171        =176           181 33     192~       191      '190          172        167         176         181          185 34-    195        195       193-         176        172         180--       185---       189 35      199       198       195          180        177-        184-        188          195 36     205-       203        198=       -184-       181         188-        190          199 37     211        206       201-         189        185        -192         194-         201
            -38      216       209-      202          193        190      -196           196          204 39      221       213       204          196         194        200'        198          206
 '=   -

40 226 216 205 199 198 203 201 208

                                              ), p$%        .
                                               '*oIA

1d Project No. 93543b Scheme 1 June 23,1992 Time TC # 34 TC # 35 TC # 38 TC # 39 TC # 40 TC # 41 TC # 42 TC # 43 (min) ('F) (*F) ("F) ('F) (*F) (' F) (*F) ('F) 41 232 221 206 201 201 205 203 209 42 236 227 207 203 203 208 206 210 43 241 236 207 205 205 211 207 210 44 245 243 208 206 206 214 208 211 45 250 249 208 207 207 216 210 213 46 254 254 209 208 207 218 211 214 47 258 260 211 209 208 222 211 214 48 263 264 213 210 208 228 213 216 49 267 269 216 210 207 233 216 221 50 271 271 218 209 208 238 219 228 51 275 273 222 209 207 241 222 234 52 279 274 226 210 207 244 225 238 53 284 274 230 209 208 248 227 242 54 288 276 234 208 209 251 230 246 55 292 278 236 210 210 254 232 250 56 296 280 238 216 211 257 235 254 57 301 282 240 222 211 260 238 258 58 305 283 242 227 210 264 241 262 59 309 287 244 232 210 267 244 266 (_, 60 314 290 247 24* 211 272 248 270 61 62 63 64 65 66 67 68 Max Temp: 314 290 247 241 211 272 248 270 o+f+ g er I%+. ys i ., , d h

14: Project No. 93543b Scheme 1 June 23,1992 Time TC # 44 TC # 45 TC # 46 TC # 47 TC # 48 TC # 49 TC # 50 TC # 51 (min) (*F) (*F) ('F) (*F) (* F) (*F) (*F) (*F) 0 87 87 87 87 87 87 87 87 1 87 87 87 87 87 87 87 87 2 87 87 87 87 87 87 87 87 3 87 87 87 87 87 87 87 87 . 4 87 87 88 87 87 87 88 88 5 87 87 89 87 88 88 89 89 6 88 88 90 87 89 89 91 90 7 89 89 92 88 90 90 93 92 8 90 91 94 89 92 92 95 94 9 92 93 96 90 94 94 97 97 10 94 95 99 91 97 97 100 100 11 96 98 102 94 99 99 103 103 12 99 102 105 96- 102 102 107 107 13 102 105 108 98 104 106 110 111 14 105 108 111 100 107 109 114 115 15 109 112 115 103 110 113 118 119 16 112 116 119 106 113 118 123 124 17 116 121 123 109 117 122 127 129 18 120 124 126 112 122 127 131 134 O 19 20 124 129 129 133 130 135 116 119 128 133 132 137 137 141 138 143 21 133 138 139 123 138 142 146 148 22 138 142 143 126 143 147 151 152 23 142 147 147 130 147 152 156 154 24 147 152 151 134 152 157 160 157 25 151 156 156 137 156 161 165 161 26 156 161 161 141 161 166 168 165 27 161 165 165 146 165 169 172 169 28 165 170 170 150 169 173 175 172 29 169 175 174 154 173 176 179 175 30 174 178 178 158 177 180 182 178 31 178 182 182 163 181 183 185 181 32 182 186 185 168 186 186 188 184 33 186 189 188 172 189 188 191 187 34 189 192 192 177 192 191 194 190 35 192 195 194 181 195 194 196 192 36 195 197 197 185 198- 197 200 195 37 197 199 199 189 201 199 204 197 38 199 201 201 192 203 200 209 200 39 201 203 203 196 204 202 213 202 g3 40 203 204- 205 199 206 204 217 206 o+ 's% t c 'i) Ol hro'

la Project No. 93543b Scheme 1 June 23,1992 Time TC # 44 TC # 45 TC # 46 TC # 47 TC # 48 TC # 49 TC # 50 TC # 51 (min) (* F) (* F) (* F) (*F) (' F) (*F) (* F) (*F) 41 204 205 207 201 208 206 222 210 42 205 207 208 203 212 208 228 214 43 206 208 209 205 213 211 234 219 44 207 209 210 206 215 214 239 224 45 210 200 211 207 216 216 245 228 46 211 212 212 209 218 220 249 233 47 212 215 213 210 218 225 254 237 48 213 219 214 213 217 228 259 242 49 215 227 214 216 214 231 263 246 50 219 234 216 220 212 234 268 249 51 226 240 218 225 210 237 272 251 52 232 245 225 229 209 240 277 250 53 239 250 232 233 209 240 280 249 54 245 255 240 237 209 242 284 252 55 249 259 246 241 208 245 287 256 56 254 263 251 245 207 248 289 260 57 258 268 255 249 207 252 292 264 58 262 272 259 252 211 256 294 267 59 267 278 263 256 215 260 298 271 Os 60 273 283 267 260 219 264 302 275 61 62 63 64 65 66 67 68 Max Temp: 273 283 267 260 219 264 302 275 N g?h *oi 3) Ec h{f; # 1

l 1, Project No. 93543b Scheme 1 June 23,1992 Time TC # 54 TC # 55 TC # 56 TC # 57 TC # 58 TC # 59 TC # 60 TC # 61 (min) (*F) (*F) (F) ('F) ( F) (*F) (*F) (F) 0 87 87 87 87 87 87 87 87 1 87 87 87 87 87 87 87 87 2 87 87 87 87 87 87 87 87 3 87 87 87 87 87 87 87 87 4 87 87 87 87 87 87 87 87 5 88 87 88 87 87 87 87 88 6 90 88 90 88 88 88 88 89 7 92 88 92 89 89 89 88 90 8 95 89 94 91 90 90 90 92 9 100 91 97 93 91 91 91 94 10 105 93 100 96 93 93 93 96 11 111 95 103 98 94 95 95 99 12 117 98 106 101 96 97 97 102 13 125 102 110 104 98 99 100 105 14 132 105 114 107 100 101 103 109 15 137 110 117 111 102 104 106 113 16 142 114 121 114 104 107 110 116 17 146 119 125 117 107 110 114 120 18 150 123 129 121 109 113 118 124 0 19 20 164 160 128 132 133 137 125 128 112 115 117 120 122 126 128 132 21 164 136 141 132 118 124 130 136 22 168 140 145 136 121 128 135 141 23 171 143 148 140 125 133 140 145 24 174 147 152 144 129 137 144 150 25 176 150 156 148 133 142 148 155 26 179 154 160 151 137 147 153 158 27 181 157 164 155 142 152 159 162 28 184 160 167 158 147 157 164 167 29 186 164 171 162 152 162 169 171 30 188 168 176 165 157 167 174 175 31 190 172 180 169 162 172 178 180 32 192 175 184 173 167 176 182 184 33 194 179 189 177 173 181 186 187 34 196 184 193 180 178 185 190 190 35 198 188 198 184 183 189 194 194 36 199 195 202 189 188 192 197 196 37 201 198 207 193 192 196 200 198 38 203 202 212 197 196 198 202 201 39 205 205 216 200 199 201 204 203 40 205 209 220 203 202 203 206 204 O, $ $f"r!O s O f ,a ip O g7 l b

1. Project No. 93543b Scheme 1 June 23,1992 Time TC # 54 TC # 55 TC # 56 TC # 57 TC # 58 TC # 59 TC # 60 TC # 61 (min) (*F) (*F) (*F) ('F) (*F) ('F) ("F) (*F) 41 206 211 225 205 203 204 207 206 42 207 212 229 208 205 206 208 207 43 209 213 233 209 207 207 208 208 44 211 213 237 210 209 208 209 209 ' 209 210 45 215 213 241 210 210 209 46 219 213 245 211 211 209 210 211 47 224 213 247 212 211- 209 210 212 48 228 213 250 214 211 209 210 212 49 233 214 252 216 211 209 209 213 50 238 214 256 218 211 209 209 216 51 243 214 259 223 211 209 209 221 52 248 213 264 230 210 211 209 231 53 253 213 267 235 210 212 210 240 54 257 214 272 240 210 212 212 248 55 261 220 277 245 210 213 213 252 SS 264 226 281 249 212 216 213 257 57 268 231 286 254 214 223 215 261 58 271 234 291 258 214 232 221 265 (s

 \

59 60 274 277 240 244 295 299 262 266 215 215 241 247 228 238 269 274 61 62 63 64 65 66 67 68 Max Temp: 277 244 299 266 215 247 238 274 n+  %

                                         %f;b/4

1 Project No. 93543b Scheme 1 June 23,1992 Time TC # 62 TC # 63 TC # 64 TC # 65 TC # 66 TC # 67 Ambient Furnace #1 (min) (*F) ("F) (*F) (*F) (' F) (*F) ('F) (*F) 0 87 87 87 87 87 88- 84 86 1 87 87 87 87 87 88 84 198 2 87 87 87 87 87 88 85 688 3 88 87 87 87 88 88 86 1181 4 88 87 87 87 89 88 85 1332 5 90 87 88 88 90 89 85 1329 6 91 88 90 89 92 91 86 1244 7 93 89 92 90 94 92 85 1144 8 96 91 95 92 96 94 85 1068 9 98 92 98 94 99 96 86 1084 10 101 94 101 96 101 99 86 1233 11 104 96 104 99 104 102 86 1386 12 107 99 107 102 107 105 85 1508 13 111 101 111 105 111 108 86 1495 14 114 105 114 109 114 112 86 1455 15 118 108 117 113 118 116 86 1415 16 122 111 121 117 121 119 86 1386 i7 126 115 124 121 125 124 86 1373 18 129 118 128 126 130 127 86 1408 \ 19 134 122 131 130 134 132 86 1452 20 137 125 135 1; 139 136 86 1491 21 141 129 138 140 144 141 86 1496 22 146 132 141 144 149 145 86 1482 23 150 136 145 149 155 150 86 1466 24 154 140 148 154 160 154 86 1505 25 158 143 152 158 164 159 86 1530 26 163 147 155 163 169 163 86 1514 27 168 151 158 167 172 166 86 1511 28 172 155 162 170 175 169 86_ 1535 29 176 160 165 174 178 173 85 1568 30 180 164 170 177 180 177 85 1589 31 183 171 174 180 183 181 85 1603 32 186 176 179 183 186 184 85 1590 33 190 182 184 186 189 187 85 1588 34 193 187 189 189 192 190 86 1610 35 195 192 194 191 195 194 86 1637 36 197 195 199 194 198 196 86 1666 37 200 199 203 198 201 '199 86 1690 38 202 203 207 206 206 201 87 1698 39 204 206 211 209 214 204 87 1703 40 206 209 216 211 218 208 87 1708 J V },

                                        %W

15 Project No. 93543h Scheme 1 June 23,1992 A () Time TC # 62 TC # 63 TC # 64 TC # 65 TC # 66 TC # 67 Ambient Furnace #1 < (min) (*F) ('F) (*F) ("F) ('F) ( F) (*F) ('F) 41 208 212 220 212 222 211 87 1716 42 210 213 224 212 223 214 87 1732 43 211 214 227 213 226 219 87 1746 44 212 215 231 214 233 220 87 1756 45 213 215 234 214 240 222 87 1758 46 213 214 239 216 244 223 87 1753 47 214 215 242 218 248 225 87 1756 48 214 214 245 218 252 227 87 1756 49 214 215 247 218 256 228 87 1769 50 215 215 248 220 260 232 87 1773 51 216 216 247 227 265 237 87 1774 52 219 219 247 234 272 245 87 1773 53 226 221 247 239 277 250 87 1775 54 233 231 248 241 279 253 87 1774 55 239 239 249 244 284 257 86 1775 56 245 245 252 247 289 261 87 1792 57 248 250 256 250 293 264 87 1785 58 252 255 259 253 297 267 87 1789 59 255 257 262 257 302 271 87 1806 Ox 60 258 261 266 261 306 275 88 1809 61 62 63 64 65 66 67 68 Max Temp: 258 261 266 261 306 275 oA a O.my.A f g .,. . ()- t

                                       *o y

15. Project No. 93543b Scheme 1 June 23,1992 Time Furnace #2 Furnace #3 Furnace #4 Furnace #5 Furnace #6 Furnace #7 (min) (*F) (F) ('F) (* F) (*F) ("F) 0 86 86 86 86 86 86 1 179 135 148 128 132 148 2 724 336 320 259 242 345 3 1294 665 586 451 395 698 4 1427 972 867 702 574 1028 5 1392 1111 1022 935 735 1145 6 1293 11646 1126 989 803 114'7 7 1188 1168 121-8 975 831 1128 8 1101 115'7 1251 953 847 1111 9 1102 1187 1294 1024 968 1187 10 1185 1223 1307 121'7 1128 1290 11 1303 1261 1312 1363 1187 1364 12 1393 1297 1331 1490 1233 1446 13 1433 1311B 1334 1531 1295 1435 14 1463 1331 1327 1525 1315 1390 15 1481 1358 1336 1532 1313 1366 16 1482 1363 1335 1511 1320 1346 17 1486 1363 1334 1501 1313 1332

 %    18       1503          1380          1344         1545       1315       1338 19       1527          1407          1359         1592       1327       1358 20       1547          1438          1382         1639       1346       1387 21       1571          1466          1404         1668       1366       14110 22       1557          1454          1405         161'7      1386       1407 23       1548          1436          1399         1582       1383       1393 24       1571          1467          1411B        1634       1393       1408 25       1589          1494          1443         1665       1423       1441 26       1587          1466          1429         1606       1452       1434 27       1594          1453          1421         1589       1464       1423 28       1609          1455          1427         1615       1491       1431 29       1632          1462          1439         1645       1526       1449 30       1654          1472          1449         1673       1548       1466 31       1667          1480          1457         1676       1558       1477 32       1662          1479          145C         1643       1542       1473 33       1659          1479          1457         1648       1552       1472 34       1670          1490          1467         1673       1570       1486 35       1682          1497          1477         1702       1584       1500 36       1697          1496          1482         1690       1597       1515 37       1700          1491          1483         1676       1601       1527 38       1703          1490          1485          1673      1595       1536 39       1707          1490          1485         1671       1585       1540
~

40 1713 1494 1490 1669 1581 1548 (- gnu [0g ojign,ys yV7l ob "

lb Project No. 93543b Scheme 1 June 23,1992 Time Furnece #2 Furnace #3 Furnace #4 Furnace #5 Furnace #6 Furnace-#7 (min) ('F) (*F) ("F) (*F) (*F) ('F) 41 1722 1498 1494 1671 1573 1553 42 1726 1513 1503 1693 1587 1563 43 1725 1524 1512 1703 1605 1575 44 1737 1536 1521 1707 1620 1583 45 1739 1547 1525 1723 1619 1581 46 1746 1549 1524 1721 1608 1575 47 1745 1557 1527 1733 1614 1574 48 1747 1569 1534 1750 1627 1577 49 1757 1561 1536 1742 1634 1584 50 1764 1561 1541 1736 1658 1592 51 1766 1571 1549 1736 1661 1598 52 1779 1583 1556 1737 1675 1603 53 1773 1588 1562 1742 1673 1609 54 1775 1582 1561 1744 1661 1613 55 1777 1579 1560 1754 1651 1613 56 1780 1596 1569 1767 1666 1619 57 1784 1617 1579 1793 1671 1621 58 1785 1597 1577 1764 1671 1626 59 1784 1615 1585 1777 1699 1636 p/ (, 60 1789 1621 1594 1773 1709 1647 61 62 63 64 65 66 67 68 Max Temp: (oD py,s Op p;, % A

                                          - C
                                        **N;W-

Report No.12340-93543b September 9,1992 in' Texas Utilities Electric APPENDICES i O O Appendix G QUALITY ASSURANCE O ,3e gs 1 OhAT O

Report No. Int 0-93543b September 9,1992 E l Texas Utilities Electric APPENDICES  ; O Quality Assurance Statement Omega Point Laboratories, Inc. is an independent, wholly owned company incor-porated in the state of Texas, devoted to engineering, inspection, quality assur-ance and testing of building materials, products and assemblies. The company has developed and implemented a Quality Assurance Program designed to pro-vide its clients with a planned procedure of order and document processing for in-spection and testing services it provides to assure conformity to requirements, codes, standards and rpecifications. 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 Q 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 let-ter and intent of this Program. All QA Surveillance documents remain on file at the Laboratory, and are avail-able for inspection by authorized personnel in the performance of an on-site QA Audit. All materials, services and supplies utilized herein were obtained with appropriate QA Certifications of Compliance, which may be found in the following pages. i o i It Okg7o

1 'r Report No.12340-93543b September 9,1992 Texas Utilities Electric APPENDICES O o Acceptability Documentation l O n.

                                           <p ,,gt l                                            V   l<
                                         *Of' f

15-O ACCEPTABILITY DOCUMENTATION SCHEME #1 ASSEMBLY #2: PROJECT NO. 93543B The following signatures attest to the review and acceptance of each attribute listed regarding the above-noted test article: I. CABLE TRAY / CONDUIT ASSEMBLY

    /     ~ ?/    aboratories, Inc.

5f4ft2 Ddtel OinegE Poin O. M 6 -F/2. Date TITElectrif(CPSBSL) O II. ELECTRICAL CABLE INSTAILATION

              -=                                   5/49L   I OmegfPoin       aboratories, Inc.               Date S~) 2~    ^2 TU Electri/:(CPSES)~                            Date III. TurtG10 COUPLE INSTALLATION N                             ?, l2- 9%                        l Omegafoint aboratories, Inc.                    Da'te
             .b m                                  S-l 2- R2-                       l TU ElectriedCPSES)V                             Date                              l Mg, s.

Acc:ptability Documsntation Pr: Ject 93543B 1f) Scheme #1 Asssmbly #2 Page 2 of 2 , O IV. FIRE PROTECTIONBARRIER 8 ffd?OffX OmegiPoint aboratories, Inc. Dhte 8 Q_ G-20~72. Date TU ElectriepDSESQ V. FINAL PRE BURNINSPECTION

       /        -n      Y                         6/AA/92 Dhte OmegaTp Laboratories,Inc.

M 4 - El- 92. TLTElectdc(CPSESW Date 9,

Report No. 12340-93543b September 9,1992 Texas Utilities Electric APPENDICES l l a Event Log l i 1 i O.4Oh f ^ pn '\ A?o. f, 5 , kpygh { i W ,s.- , . . , , _ , , _

15i l lO l EVENT LOG PROJECT NO. 93543 TU ELECTRIC O OMEGA POINT LABORATORIES, INC. i 6868 Alamo Downs Parkway San Antonio, Texas 78238 1-800 966-5253 , O

1( f EVENT LOG ) O Pao 3=ct "a $3543 TU ELECTRIC Page No.1 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 six test assemblies are: Scheme #1 Assembi #1: 93543A Scheme #1 Assembi #2: 93543B Scheme #2 Assembi #1: 93543C Scheme #2 Assembi #2: 93543D Scheme #3: 93543E I Scheme #4: 93543F 1 All events of any importance should be noted in this Log. ITEM DATE f INITI ALS Dna or nst Ww  %+ w Tu acude +- u y , w Pa v 4d s %'. - + & A es t a ss e s Ves vre e.k / 4-25 92 4*P kWen s W 6k &f$1' . $ss-sd Y.,1-( fn Y J 4 ' 21-9 7- Th H ~30 ~4 > WG Tken Okh & S E t c < si v) w -&g.-s.(3 f r.1 e o& 0' Att vm'.a c&e v.s. < n ' s S -/ ~13- ~V P "co ww+ Ca s1 rue P w., vr es. w 4 . ru 5 - t -9 p. FP Ps ' { 'i> <a s'N c' u e e r .'.<c / &a T t) &(ecr*c f - t -9 2. PP Assemblv ef M 7 +1seh-/-oi star 1'ct @.soau, s;V-9 2. Off Phehs 'o4essu.,41y the of air m64r on

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                                                                                                        .dj!

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       ' M /A z.t.c M K                                                                                          '

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h. 19 20 12 68 69 7% -1 69 0 10 13 13 0 0 1.50 00 29 210 11 %1  %.2 II ( 12 11 32) 19 90 9 7 02 76 0 69 0 11 0 0 62 00 29 190 11 60 6.2 is t 12 11 250 3; 9 9 21  ?? 65 71 5 60 13 1.30 00 21.200 11 6.3 4 0 6 0 7.0 23 ( 17 12 0 0 to 10 22 06 47 77 0 bl 0 12 2 0 0 91 00 29.230 11 %8 %9 17 ( 1% 12 the %6 4 7 23 05 69 77 0 66 0 12 1 8 0 0.00 0.0 29.23% 11 %.?  %.7 14 ( 9 11 401 58 - 7 4 Z 2e 06 to 60 77 0 6% 0 12 1 0 0 CD 00 29.17% 11 %.? 5.7 14 [ 12 11 314 si : 5 5 g* 2% 68 76 1 66 0 11 1 0 0.02 00 29 070 10 4.8 %i 22 E 13 12 341 41 2 9 9 24 ti 68 79 67 14 0.76 0.0 29=000 05 %0 4.6 1 0 3 0 21 WI 16 0% 24% 10 i 9 6 27 84 65 75 3 64 0 10 13 0 1 42 0.0 29,005 07 5.l 6.3 25 4 '? 03 444 44 7 4 29 86 41 14 4 44 0 9 0 0 1 00 29. 9 70l05 6.3 0.1 2% N( 16 03 500 10 9 7 29 1% $9 67 11 $3 0 2 0 0.00 0.0 29 15004 90 to 0 20 4 17 02 551 66 l 7 7 30 76 $$ 66 13 57 0 0 0.0 29,220 10 1.1 6.2 14 66 1 1 16 5( I3 11 152 661 8 7 11 70 9 66 0  % 1 0 0 01 00 24 160 09 4 ' 5.1 1% f i 11 140 'O 10 he ha - -

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                                                                                                                                                                                                                                           $1 11 06 10 '

40 09 11 ; il' 10 1 01 72 66 62 il 10 4 4 10 61  %) 6 SP PI 1 Utt 1 01 69 67 66 90 02  % 0 UnL 1% 7% 6) $5 $8 14 3 0! ctL 1% 67 Sh 44 44 Of 8-24  ? UtL i t' 65 64 61 41 81 1 1 utt it 62 60 $1 It 16 1 O! ett M 60  % 42 52 OL,,L tai 7th RAf lth 941 9th {) E Ol Vbt 1% 5% 49 42 62 04 4 Ol tet 15 $7 51 ll 70 19 4 Il utt 1 01 Si il 2 11 00 ti 26 ll Val 1% $0 46 42 74 04  % Oi tal 10 49 40 el 11 00 0 10i 40 10 $9 $6 4 le 11 1: 29 fi vat 10 65 $2 39 19 61 7 l 10 67 57 49  %) 1% 7 10f 46 7 66 61 57 11 1) 6 11 2 Bl utt 1% 71 44 11 30 11  % 10l l UttUtt 15 73 59 49 ti ll 7 101 24 7 70 65 61 7);12 6 11 4 fl ukt 1% 7% 57 40 20 1% 6 Ol vet 11 76 61 49 31 to 7 10I ett i u 69 67 66 90112 ) l 15 7  % 42 )) 16 4 4t Gut 15 75 60 40 19 12 7 101 111 6 p 68 66 64 til l t 6 1 2l 0 Utt WRL 1% 6]154 4 42 12 4 1% 60 ll 51  % 15 0 7 70 6 62 16! 1) i 4 O! Utl 4 61. 54 . 4l 60 16 .6 0lutt L Utt 10 62 Sk $1 61 16 9 10l 90 J {li 1. .69 6 62 . 19! 16 l 88T 10th RAf lith R4f 12th N3 10 % l' 64 64 62 I t' 16 6 6 12 gl f fl 70 69 9)' 14  % 1 01 Y 6 f 74 72 ' 71 901 11 6 26 10 10  % f 47 65 6) 17 1)  ! 10  % 2 f 71 70 10 97 13 5 101 16  % f 71 70 69 I H 10  %- 29 10 14  % I il 61 6% 41 14 5 10 10  ? I f 7% 72 71 17 il 6 101 1% 7 70 71 10 77 21 6 [12 1 04 26 6 f 7% 69 6% It 1% 6 0 41  % f 14 74 70 61 16 f Di ctL F ll 7% 71 61 21 1-n$ 19! 3% 6 a 16 71 60 76 16 6 6 60 6 N 87 74 60  %) Il 10 0 Uut 10 12 li 67 de 24 7 ti llt 25 fl 77 71 60 14 1) i 8; Wtl I il 73 68 U 10 9 1 94L 10 92 76 69 47 17 i' l21 1 01 14 6i # 73 70 60 le il 12 110tL 4 ft 74 72 3211% 0  % bei 10 le 76 72 67 il l' 24 10! 12 $! Isf ?1 .70 .69 f f.16 1 10! i  ? f 74 72 71 17! 20 6 41 +0 6 e 71 74 71 Il 16 !l 84f 111h 941 14th fAi 1%th 01 10 7 6 # 76 74 71 91'1% $ 10l?t0 to 71 71 70 90 16 4 10 61 10 H 160 64 147 06 4 F6 6 12 4 4 7% 13 72 90 14  % 101 11  % f 7) 70 69 it 17 7 to 130 8 60167 66191 00 0 29 10 1% 6 # 79 74 71 77 12 4 9 110 $ ft 71 61 72 00 0 10 to 1% 72 ,e 66 42 el 6I li 2 bal 8 96 7% 70 li 11 9 7 2%0 12 45 13 60 %7 12  % 9 20 12 78 11 67 69 ti 9l 15 9 utt 10 19 ff 72 SF 18 to 10 150 $ fit 72 66 6) f) 16 11 10 40 to tu 71 69 64 0 01 4' il 10 250 10 87 i% 10 $7 11 7 10 110 10 is 71 60 66 14 13 1 10 60 7 Is H 60 el 91{ 04 6: 21 HH 12 la 71 66 61 Il i 10 lit 12 164 l bt 6 10 130 10 68 66 6% 906 0i 4 24 101250 12  ?? ft 61 76 to 4 10 110 to 168166 65 lsi ll' d 16 21 4 10 16 10. 68 66 M 901 04 4 til 16th Alf 17th 381 Ilth D1 10 0 Il 6f 66 66 97 08 0 10 9 10 67 66 66 97 18 3 10 $ T 60 67 67 if 00 0! p6 10 {0 z  %) f 64 67 66 91 00 8 10 6 6 f 61 66 65 91 00 0 10 24 4 f 61 68 6' i) 60 0 E9 9 11 7 74 69 67 79 00 0 10 250 12 12 68 6% 71 22 4 10 20 7 11 69 67 12 00 0; 12 9 20 to  ?! 70 67 71 12 0 10 21 17 ft 71 67 69 80 0 9 25 6 71  !) 68 69 11 7i 15 9 40 15 82 72 67 61 1% 1 200 14 74 71 6 10 li 13 4 9 14 10 12 72 67 61 04 1-Il 10 40 5 1Ruf 69 67 66 90 1% 9 9 200 i; 75 70 67 76 15 6 9 250 10 il 11 66 61 02 1'

        *1    10 110                7                 69     61     67    91 Of         )                  1    200       1%                                   67     84   17      1     10       3         1       le           il    70    61                  %~

54 i o! 110 0 67 66 63 93 04 e 1. 75 30 7,2 0 69, 6 66 11 ,i i 7.4,20 , i, ,191,22 .: 71 68 0 MAXIMUM SHORT DURA 110N PRECIPliATION ild FER100 It!!N'JTESI 5 to 15 20 30 45 60 83 100 120 150 180 PRECIP11A110N tlNGESI o 27 0 $2 0.66 0.80 1.03 1.16 1.23 1 26 1.31 1.17 41 112 ENDED: DATE 27 27 27 27 27 27 27 22 27 27 27 27 ENDIDI IIT 0242 0242 0244 0244 02%4 0109 0319 0)?4 0)$2 0412 0412 0412 f *( Olttipilatl04 an0941% f el int incitat(01lst Ibitivati Rat OccVA At Att fint 00114G Int notin. th( lin( ItDItatte ti tot (40100 flp[ of ikt tilt (tvat. Dalt AND tip[ Alt 401 (4t(I[0 f00 flatt angu9ti. Pt6t 7 O

                                                                                                                                   'd                                                                            10 OBSERVATIONS Al 3-H0VR INTERVALS                                                     T Mtm n gi,                   umutm                  me              lyi,1                                      im                    I,h,!                     u"t utm              l l*m O             _                                                            _

u m nist _

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g _ a[atull I E t(41 Nil F E y r E~ _ r C r O s t ** g s

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t r  ! :  :  : . = !s, - r I r ;l  :! .: I :%; 5 ) _1 5 3 i  : E E  : EI f i  ! IGE i E  : EI _15! Ii115E

                                   $4f tilk                                                  rat 20th                                                           8At 21st C)      9'    6      I                 ?!     Il   69 i)   Q     $   l' 28        7                    ft 69 48 9)!17        4    10      10       0        ilbf        4    70    69~ w 11            %.

t6 10 10  ? litt 68 U U 97 II ) 10 5 6 f 70 0 69 97 10 4 to 10 V is' 11 70 70 90 Q 4 D9 10 20 t 18sf 69 61 68 97 10 7 9 17 1 15 71 69 I? 11 1 10 10 6! i 74 71 70 til l? 8l I? 91 M0 F In 74 Il 61 l' 11 ) 8 1% 8 79 77 60 0 10 6 to H 7' tiu 71 10 61 lli 11 1: 14 9' 240 $ t M  ?? 70 Ik Of 3 10 40 10 104 ft 69 60 *0 11  % 10 6 7l In 69 67 65 I Ih 0) 11 ! il le is t 76 fi u 76 n 9 9 0 7 tis 75 y n Ir 94j 1? it 4 10 6  ?! 18s 67 H le it! 4 as H 66g fji 07 ni ttl5 I?1 9 250 72 69 64 I? 1 4 970 7 7 71 70  !  % Utt 67 4 n n 44 0, n H a nol 7 oo I 7l n a no 6 m to m o 'O 4 l Pit ?? 4 #Af ?)rd o f 24th 23'101 i 10 V H H 97 09 ) l' il 61 8 70 69 69 97 12 5 1 Utt 1 01 69 68 0 ,93! 1? i l ' E6 ill 1 0 2 i 61 0 67 91 10 0 10! 5 ) i H 68 66 97 11 1  ? V6L 7; 60 0 H ' 91l 00 f 0 - 24 ill 4  ? i O 10 69 90 11 6 9' to 6 i O 69 67 82 0  % 7 0 7< 7% H 6% ' W 04 )' 9 M 10 10  ?? 61 0 11 7 7 10 18 le 70 64 il 11 4 ) Wet if Il 71 H ! He11 4

               ?    )$   15                   li    ?)    67 $$  11    6    4  Utt     ti                    le  70 67 el    11     5      4  vtt       10!                    15   71    6) ! ilt 11         %.

8 40 I? 01  ?? 68 H Q 11 l  ?% 12 I? 70 61 $1 10 $ 1 Wat HI I4 10 631 0'1 7

                                                                                                                                                                                                              %l; g? )         Wet                               10    H  79 11      4 10 250       10                    71  70 69 64 11        5      6 ott        19!                    77   69    6% 16 u_n]d.'

7% z 10l i n n a 90 o 4 o tt ,0 n n o im s i m m . o H u.i l uf ?sa ut 26o ut ??n t) 9 ? I 70 69 68 9) Il i 10 24 10 0 60 W 91 93 9 10: 15 ?l ! fia H H 64193r 0? W i w 01 ;PC C6 10l % 4 i H 6P 60 97 06 ) to 40 I H U H 90 01 6 10' M0 fi H 64 ) '

     $9 1 A 18             1                  74    69    67 19  0)     ) 10      6     7                    11  60 O  if 01       %       II MO         I:     }'             70   0                   08 5 o om o 1%     1 01 6      O li 12 n H u n a 71    65 %? 12     6 s

7 m u 90 0 n n u o Il 74 0 %0 02 02 10 4 sivat

                                                                                                                                           ) utt i0 20                      83   71 um n H 65 !l4' u i:)

64 13 O f f 6 Il 10! 10 1 le 70 0 H if 0) 6 10 90 4 its 70 V H 64 01 4 8 10 20, I $0 70 64 it: 11 t 21 10i l10 H i 71 10 I 10 H ; P 06 5

     % 120 0
10. 6,80 ,H1 o ,90 00 0 0, 0

3 a

                                                                            ?

W e t, 1 I. 10 69 o u 64 90 01 1, 04 ,1 , a' ,i h i 38 f 77 ll umo u t 219 aoH 9x n I n 20 n ut 796 H H si n nn O! m n; i o f 10 m mH 54 wn 3 261 4! 12 1 60 H H 90!00 0 10  !? 14 H % ll H 02 I si tal 10; + IH S4  %) : 93l 0? ' ) i D I? 12 e\ C 9110 0110 16 16 7 F) 77 49 72 70 79 87 5 7 10 10 21 26 20 20! 0 % $1 68 H %) 70 01 59 62 fl 10 110 10 10 10: 12r in 2 59 %4j68:0)I6 0 W $ 7 - H! ' t : l-( s 31 ? but i le 74 70 W Q 3 1 W6; 26 i) 62 %  %) te i 7 I 10 1 01 74 64 98 5t+ 11 It Ill 4 UsL 20 77 68 H 6? 12 9 ) Unti 20 F) O 14 32 0% 7 10 14 10!  ?! 64 H 6?l 10 6 l?Il i 25 1% H $1  % 10 0? It  ? 401 }0 H Si H 70 06 4 10i 21 1%! 70 65 61 ');1? 6 04' O 2F M .61  % U 72 0) 14 1 utt! 20 d M 44 15.00 4 d 41 10! l .69 6$ 0 I ' 9' ' ' l. ut li.i l 51 t ot 7 )I If H 65 61 97 12  % E6 1 01 7 Ji i H H H 9) Il 4 29 10I ?; 41, F 61 H u is si 5 9 10 28 4 F 10 W H li tt 6 15 10 li 5 ff 70 60 W 90 y 6 18 10 til 7 74 10 68 I? Ol 4 1 0 2h 6 I fl 69 68 91 0) $ [4.

     <        8 0!h 4!              if        70    n H      9)! t t    1

SUMMARY

BY HOURS muas .ni. u q

                                                                                                                                                                                                  .m       .

WEATHER CODES - " "" " "" I a 10PNA00

i. s . ,2 Su Snow SwowCRS Gr GRQUND FOG = $ - -

t twuN0(R$f 0p SG SN0w GaAINS BD BLowlNG DVSt - F r r

                                                                                                                                                                        #              =                E Q SQUALL                                  SP SN0w p(LL[f1                   BN 8t,0h!% SAND                                  e      l"                  g       =  3        ?     :        E i R         RAIN                             lC l([ cry $fALS                 BS BL0mlNG SN0w                                  _      E      'y-S            ~.

8 . E E Rw RAIN SH0ktR$ 1R ICC P(LLC 1% BY BL0wlNG SPRAY a O g 2R FRE(ZING RAIN L ORil?LE IPw 3C[ PELLCf SH0wCRS A Mall R H SMo*I walt { 3 3; 3 5 5 i $ $l. 5 iL FR([ ZING DRIZZLE F FOG 0 DUST 03 7 29.i5J 67 65 64 90 5.0 11 2) S SNCw IF ICC F0G 06 8 ?9.160 H 64 63 91 4.2 09 2.2 09 9 29 190 ?? 67 to 76 6.5 C(! LING: UNL INCICAf tS UNLIMlf(0 12 0 29.110 78 69 64 63 76 I? i t '54 )$ w!ND O!MCTION: O!RECTIONS ARE TMO$f FROM WHICH TwC hlNO SL0wS. Ik0lt Af[0 15 7 29,130 71 69 64 61 9.C !? : $ J' IN f tNS Or DEGRits TROM TRut NORTH: I( , Di FOR [ A$1,19 (OR SOUTM 10 7 29.110 77 68 4) 6% 01 11 - i 27 FOR wt$1 AN ENTRY cr 00 INotcAf[$ CALM 21 7q?9.15] 72 67 O 76 66 11 4' Spit 0: tHC 095tRvCD AvtRAGE ONC-MINUT[ 4 ALU( [IP R[$5CD IN ukOT$ 24  ? D9 171 h4 65 61 94 9 ' ) J t MP=tNC15 a 1.15 I . i mti \~/

- _- _ - . _ . _ _ . - _ __ _ ._ _ - - - - . . - =- im ttienat tiln ltc Dais cinitt

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l L C D 12 9 21 -PD-9 3 0 6 l 4 5 5 f, C OMEGA POINT LAB INC ATTNr CLEDA PATTON 686$ ALA*O COWNS PKWY SAN A '. T 0 *! ! 0 TX 78238 O RAf 1992 12921 HOURLY PRECIPITAll0N (WATER E00lvALENT IN INCHES) 5No,',.".'li. " .s t v i u r . .t n00 g A.M. HOUR ENDING Al P.M. HOUR ENDING Al d E 1 2 3 4 5 6 7 8 9 10 11 12 1 2 3 4 5 6 7 8 9 10 11 12 5 01 1 1 01 02 1 1 02 03 03 to 0.14 0.02 1 0.02 0=01 04 05 05 06 06 01 01 00 04 09 I I I I 0.01 I i 1 09 10 0.02 I 1 10 11 0.05 0.01 11 12 12 t3 13 14 0.01 0.12 0.02 I O 06 0.01 1 1 0.01 0.01 14 16 1 1 t 1 0.14 0.01 0.19 0.02 0,02 1 1 Il 16 0,01 1 0.01 0.2% 0.1% I I I Q.31 0.02 16 t7 0.11 0.01 . 17 10 1 1 10 11 1 0.59 0.06 0,14 0.50 0.14 0.04 0.0? I 0.02 I 19 20 1 0.01 0.01 1 0,57 0.02 1 0.01 1 1 1 20 21 0.29 0.06 0.01 0.01 0.01 1 1 0.10 P 00 0.1% 1 0.14 1 1 0 21 1  ! 21 22 0 61 1 22 23 23 24 24 25 1 1 1 1 0.02 1 is 26 0.1% 0.60 0.01 26 23 0.01 1.22 0.14 0.01 27

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4m L \ Jue 1992 Il % 0194 4 191 Q II tat aAl'tAt.letitlt (A $ f(st ett p'"t i0nt 30.. 0 ,o,0.. .at LOCAL  : s<, o r CLIMATOLOGICAL DATA m ,i. Ano ., .l.,0,, Moath1y summary

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                                                                                                                                                                                                                                                    $ l' Z   14       94        ?S           46             4      ??       0       21                               0       0 00       00 29 070       15   11 ) 11 5             2)      $        15        15l 501          60            t,   ! AI 17      94        77           46             4      ??        0      21                               0       0 00       0.0 29 100 16 11 6 11 9                    24      5         !5       151 541          64            5       6l 10      9)        ft           65             2      ??        0      20                               0       0.00       0.0.29 180 16 67 92                        ft      $(       13        to       521     62            5       5l E--        94        76           95             2      ti        0      20                               0       0 00       0 0 b9 100 i6 70 is                        is      $        43        15       519     67            6       Si 20       98        75           l'a            2      70        0      20                               0       0 00       0,0 29 060 15 6I               70          15      $(           9     to       82)      96            1 2'

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1 70 68 0 0 20 17 0 0 0 00 0 00 0.0 29.110 16 4 1 67 00 29,14 0] t 7 14 5.) 16 15

                                                                                                                                                                                         $(

12 9 15l 674 59 30 4 ! 4 v 43 96 74 85 2 70 0 20 0 0 00 00 29 0501161 6 3 70 15 $( 12 16. 427 90 I i 2 Z 24 96 75 86 gg 3 70 0 21 0 0 00 0 0628 900llt 61 79 16 $ 12 'gl 627 93 0!1 25 96 74 2 ft 0 20 0 0.00 0.0 26 940 16 82 89 19 $( })- 161 940 100 0 0 g 26

            +7 95 94 77 77 96 86 1

2 11 65 0 J 21 21 0 0 0.00 0 00 0.0 29.02 15 64 00 29 040i16 ) e 72 72 16 15

                                                                                                                                                                                          $(

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                                                                                                                                                                                                                      '2"'

j OBSERVA110NS At 3-HOUR INTERVALS

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            ?1       % put     12                          le     7%      f)    79 1       1   0    Del    20!                   16    U      62      62 0             0     0 Vet      15                   4) 7%       ft U l.         )
10. 7 it  ?% to 91 12 10 D Lit MI . 66 61 6 L 90 22  % 6. 11 14 fl _ ?6  ?$ 99 04 )

94.10 ll C)! 01V4L iM JVs 4th 4 tal JV4 itn f 74 11'94 1 01 % ll jut 6th I 94 16 7!

                                                           ?!     10     69     ff 01      4                4                    7%                           1%       4 17 l 76     1%

26! 4! Utt 20l 7 66 62 ft 0% l 9!?%0 li f 7% 74 11 94 09 1 1 01 22 h I ff 7 f% 94 16 6i 29' f 130 20 I 69 6) 56 09 9 4194L 10' 1 7% 72 74 14 8 10! Il 6 Et ?1 7 f) li 07 ' 6 ft ? )l Utt 20 if 7% 69 4 08 9 ) Gut 12 9 76 70 $4 14 1 2 Vtt 10 if 77 f2 61 14 4 5 0 Utt 20 90 7% 69 0 12 7 I Uti 20 91 76 69 49 16 11 4 Wat I% 91 79 74 40 14 1) i 1 240 1% li le 64  %) 09 7 2 bei 20 89 16 11  % 1% 8 6 250 to 17 71 7% 68 14 i D1 1 2$0 1% 42 71 69 64 0% )  % vet 1% 1 7% 12 70 16 6 1 250 10 42 7 72 12 I

           '24 10 250          10.                          79    74      72    19i il     7 to       9.     ?                   t     76 ?%          91 !6          to    to    it       1;                 79     7    74 Il          6 JWR lth                                                                       /De 9th                                            l JWe 7th C) 10          )$      3        18e             69     bl     U      9)   10  11    0     15    1%                    ?)    11     70      90! ?t           6  1 01     7                         77     f5   74 91l14        l'          !

26 9 90 1 8t 68 67 U 9f 00 6 10 110  % f  !? 11 70 94! 10 1 9 Il}i 10 10 16  !) 12 lii O4 4 1 D1 1 250 1% le 71 71 79 00 0 4 Cet 10 it I) 69 0 20 1 10 10' 1 tit 6 64 64 97 41 1% i, 12 7 2$0 ti 1) 74 69 6) Il 4 ) Utl IM 84 74 69 6t 14 10 10 50 6 86 6 44 64 10 0) 6-15 3 04! 20 46 M 70 49 09 4 4 Utt 14l 17 fl 70 47 16 11 1 110 1 %, 19 71 67 p 14 4: il ) Utl 20 14 74 ft 63 12 i ) Det IN 87 74 70 0 16 6 7 250 20I le 71 bl $f 19  %: 21 1 Utl 20 ft 71 67 69 11  % 6 WRL I) 7% it 67 09 ) 7 Vet 20! 76 70 6! f4 27, 3 : 24 2 ttt M . 71 . 71 , 70 90 11 ) t 10 1 %l' 4 79 74 1) IP '2 4 I unt W . fi 69 .60 90 12! 4 i JV4 1016 JU4 lith J04 12th 01 ) Unl 1% 68 66 11 00 0 1 12 10{ fl  !? 11 Of? ti ) 7 Gul Ilt  ?? l 10 69 90 00 0; 26 0 kai 1% 6f i, 6% 93 01 ) 10 7  % f 7% f) 12 90! 'i 4 10 15 10 69 164 67 9) 01 4i , 09 0 Utt 1% 10 73 69 H tl  ! 10 12 M f 19 74 f) I 2)  %  % URL 20 fi 11 65 72 09 }l l 2 1 Utt ti il  ?? 12 59 11 9 1 24 It il 78 74 6 't 6 t Wet 20 il 74 60 %? 01 4i

              %      4  URL    1%                          09     76      7t    %    18    7   $    Unl    10                   92     70
                                                                                                                                                       10                  1  Val     20                   91 76      69  49 1%           !
                                                                                                                                              ??                       1 Il        1 Wet    20                          69     76      70    $4 16      1   0     90    20                    74    U U             79 2%           4     2  Utt     1%                   90l'6       70 52   1% '

1 2 W 81 20, 0) 76 f) 12 16 7 7 to 1% 14 ft 69 il 02 ) ) Vet 14 84 j 16 I? 70 14 6' 4 f 42 t 4!  ?? 11 ft fl 0 ? 1 0 Otti 15 i: : 79 69 93 Of 1 1 utt t$ It iM 72 7 4. M 41 jut lith Jrt 14th jut 1$th D) 1 Ott 11 f6 7% 74 94 ff 4 10! 6 7 18 77 76 94l 17 8 9 14 to 70 7% 7) lil t ? 12 tb $ Get l' f 14 71 73 91 49 4 fi 25 7 fi le 7) 18!14 1 6 10 7 76 75 74 94' 12 8~ D9  % Vet i 11 7% 72 74 1%  % 1 It 10 11 il 72 74117 10 1 240 10 l) 7% 72 70 14 11 1  % Uut 10 Il 77 72 59 1) I i 1% to 66 77 71 6%it6 10 4 Utl 15 li 77  ?? $7 Il 10 l 5 Uhl 1% il 17 ) $2 16 10 4 Wtt 12 91 ft 7) %6: 1% tl I vel 1% 94 79 f) %t 10 4 Utt t it 76 ft % 14 9  % ytt il 19 71 14 6i 16 6 0 Ott 20 92 70 73 $4 16 0l11 16 21 0 Vet I le 16 71 16 '9 1  % ttt ti l) 70 16 10 1) 10 21 bet 14 14 78 76 77 13110 24 it i3 79 76  ?% lt! '6 . 7 10 12 f 81 ff 76 95_'s 6 t 03 M to to  ?? n 15 14 !t 7 JDt 16th Jyt lith JV4 tith D) 9 2% titf fl 7% 7) 44 14 9 9 il 1% i 17 74 72 ly 17 11 9 12 Ig 70  ;$  ;) ly gg i 26 9 25 10 FI 7% 11 14 16 9 10 12 1%  !? 14 7 til l! 10 10 2 15 ff f4 7 l$ il f 29 4 Utt 10 $1 1%  !? Ja il 9 6 29 12 12 ;g 7 12 17 11 7 -0 10 82 7% i 72 II 8 12 2 Utt 14 19 77 12 $7 17 Il 4 Utt 15 Il 17 12 59 il 11 6 44 20 90 76 70 $2 14 8 15 7 URL 0; 92 70  ?) 54 16 10  ? Utt 20 93 77 71 49 16 11 4 Utt 20 il 77 ft 49 14 0 Il 2 Utl 1 91 70 72 $4 14 11 2 Utt 20 91 76 70 50 14 10 1 Vet 20 92 76 69 47 t) 9 21 0 utt 82 7% 72  ?? 14 9 t ytt 14 0) 77 7% 77 t$ 11 1 ott 14 le 16 73 70 1% i 24 9. ih M. It 79 14 ft 14 10 9 12 M 78 75 74 Il 14 .11 0 Utt M ?t M 11 95 14 $ MAXIMUM SHORT DURATION PRECIP!1ATION

                                           !!M[ PERIOD IMl Wi[51                         5 l10              15         20       30         ;$

60l80 100l120 150 180 ' PRICIPlfAfl0Nl!NCH[Si 0.22 0.42 0.50 0.74 0.97 1 21 1.30 1. 3% 1.39 1.46 1.69 1,76l [WO WI 09 09 09 09 09 01 09 09 09 09 09 01 I@ DI 0947 0949 CPall0846 08%' 0*00 l 0914 9I91% ' 095% '1014 104%!titi i f at Httlpitatl04 480Vu15 700 tut teol(al(0 fle( lottavat$ nat 0((90 it att fle( 09 ties fut #Defw tut ting 1401( A1(01% 1*( (notts flat of t*( Ittilia6, Qatt an0 titt sat tot (41(s[0 fot 184(( A80941%. Mit 7

1o+ l.!'t "U' OBSERYM IONS Al M OUR INT [RVALS _ g, utn m uli hiti _ ljgc, u tn m oti .m _j g$'he.,,n.nmen { j .m a

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  • 0 vel 10 94 f5 69  %) t i O btL 10 19 76 70 44 84 7 .

H to 46 11 l 15  % m 20 ff 71 50! 14 9 1 6tt 10 u 77 70 41 1 7 %I uht M il n Ml69 16 60 46 o il 8: it i m 70 i9l 4 to 50 10  % e m to 7% 60 46 16 8 4! m

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J 0 m M f5 63 1% t utt il 6% 14 69 $4 tt 4 8%

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n n 71 6 to 74: 14 . ! 2! rtt n 16 11 169 69'2?  !! 41E n 70 it if 7  ? 240. 14 ft il at 24n ' 194 22 4 ave ?),4

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                                                                                                                                                                                                       #2 10 7

14 74 70 ! 61l n 7j E9 4! Vht 10 le 7% 11 6% 19 1 1 Ott 10 il  % 7: 91 69 49 20 1 Utt 1% il 76 70 $9 21 + Ol Wal 14 90 77 !! l %4' ?1

                                 .17     1   Det   17 M                          y 76 M        44 1%

1 94 11 ft (F 4 7 8 bat il 94 ff 70 < 44! 4 lo l Il 4 98L 67 1 tti 1) I vet H 76 ga s tei tt I;  ; il 4 Ctl t} il 74 67 of 16 i O utt ni il 76 68 44 13 la 8 1% 17 M 70 7t  ;

                                  ?!         VIL   M                          96    14   60  $$ 14                 i bet         MI                16   74    69   47             6      %   btL       15
                                                                                                                                                                                                                                           ?) [ gil 14 24 2.V4L      n                         81    n    69   61 il
                                                                                                          %        0   var t%I                     le   74    71   74    5        t      1   bel       n                   . 00 . M              ! f fU nn 2%n                                                                   ne nn                                                                   at na 10                         76    71   ft   15110       7      10t il          10                 77  74    71   ll! Il         6     19   750! Ml                       1 79     4 69 77             1)     6l D3
                                 $6 0 0ml 0 64t       il                        7%   U ft      97118       4        I      li     10                 71  74    73 11 f tl 14 67111 6

7 1 8 01 1 01 utt 20! {ll83 71 : 10 0 il 61 01 il J' l' 09 74 69 61' M 6 24 10 81  ?$ O o tti 0m to O! Il 91 76 69 4 % 20 i 1 7 250 M M 77 70 49l M 4 7 cet 2 01 91 76 '68 69 49 12 6' [t{ u 0! vnt 10 96 fB 4)( 16 8 JJ ytt M 94 71 70 46114 i 7 utt 20 0 74 166!4?ll) 7' Ill Ol usi M 94 il 76 43 14 9 W Utt 14 91 76 69 9 9 750 20 91 74 66 adiff  %- 64 4 ?l 11 b M ft 61 1) I 49 4 $ 71250 20 17 M' , 69 14 n l6t Hj n .i3. 8 Ol m $6 7 1012%0 1%! 11 76 11 pa r ett 14 .n )g n siit 90 t o! $ 0 n! si n 60 u te . ( li m M . n jut Ilth at 29th at 109 l  ?? = M it1 21 Pl ott 10 *7f n 71 17111 6 9 7%0 O! 71 68 66 44' 79 7 l! H 7'  ! 19 1% 6 26 4' Uni Il j ib 74 71 91 11 $ 4 get 1 01 73 68 6% 16 n T 10j f t1 % 'l 19 1% l8 1674l7414 14  % ti 6 11 il il 74 71 72 20 10 0 URL Mi 90 ft 69 67 24 0 Ili 1 71 1 13 ff 5 m ly  % 17 I M 77 13 14 6 71  !? 1 1{ im 0 is ll H 76 M 10 60 dood o 4 7 M 1%l M ll u n 74 61 uo  % 101,$0l10 u tn n y 7,0

                                                                                                                                                                                                                                      $616 %,16,4t   ,-         e 0,2, il     010tl 2 06                           il    76  61   44114       i         3  unt        1 01              91   79    14  le 11          %      t 130i I?                            19     76 i 71 ' M 18 9 21   10t 250, MI                            16    ft   14  60112        7        i vet         10l               g6   19    76   72             4            %0; !?                        8%     79 ! M 6 72 09             4' 24.10! 70! g:                   tte         U 69 .61       I?! 14 .11           0    Ut          t!              11   19    77  t hltt. 10 4          61 11    l80 g.                        31     713 ' gg            11 : $ _

SUMMARY

BY HOUR $ ay(psGt$ elutst] nWO ; WEMHER CODES i , i Sw Snow Swow(R$ GF GROUND FOG $ d 5 b e TORNADO *

                                                                                                                                                                                                ,             F      F   #       0      m                a i TwuNDER$f0RM                               SG SN0w GRalWS                              90 BLCM14 DUST                                       .-

Q ShALL SP SN0w PE LL C 75 BN BLowlNG SANO e " - g = 3 S E a i

                                                                                                                                                                                                                                                         ~

R RAIN lC 1C( (RYSTALS 95 $we!% SC a E. Ej 5 E 5 e O Rw RAIN $wCwt#5 IP IC[ P(LLITS 91 BL 0wi% SPR AT 3 Ov ~ * *

  • a 0 0 IR FRCCIING RAIN IRw ICE P(LL(7 Sw0w(R$ a SM0mE *
                                                                                                                                                                                  ,      3      33            3      5   $       $              $        5 L Dall!LE                                    A MAIL                                      w walt 26 FREEllhJ DR!!ZLC                          F F0G                                       D DUST                                             03         79                  B      72  71     46      67      17      4.1 S SN0w                                        IF ICC FOG                                                                                    06         7 b 02J   0M        74     71  70     89      5.6     14      32 09       5    29.Ma 80               73  70      72     76      16      46 CEILING: UNL INOICAf ts UNLIMlf(0                                                                                                              12     4    29.060 87              M   70     54      9.0 6 54 w!ND DIRCC7104: CIRCCfl0NS ARC fMCSE FROM wHICw Twf wlNO A0wS. IN010 ATED                                                                      15      3  29. <)00 91             76  70     50      1.7 It 64 IN ftNS OF 0(5Rits FROM TRut NORim 1 [.                                 09 FOR (AS% 10 FOR 50VfH                                              18      3  29 US ti M                  69     $1      8.4 tt ?J t    4         000       83     75  11      68     6,9 il 6.1
                                   ?? FOR wESL AN INTRY OF GO IN0!CAf(S CALM-                                                                                                    {4      6p28.011                    14  ??      82     72 '$ $9 SPECD: f ut 085tRvto AvtRAC,E ONt alNUTE VA LUE. EnR RCSSCO IN AN075                                                                         -
                                                                                                                                                                                  <                           71 imow=KN075 x 1.151.

mi) _ . - - ~ , . . . _ , - - . _,- - . _. _ . _ _ _ . _. ,,,, __ . , _ _ . _ . . . , . - _ . _ _ _ . ._ _ , _

_ = _ . . - .-. . _ _ . . _ - _ - . - . - _ . _ . _ . _ _ . _ . . - _ _- 4 On:::;N! ll*llt n!Na Na0 tina

                             ,a:;;:i"""".

tes012rn m,, e A,, F051 ACC AND f([5 PAID NOAA P(hat i a!!! !!6100 P(Mll G-19 i LCO-41-12921-PD-9306 l 45560 i OMEGA POINT LAP INC ATTht CLEDA PATTON 6668 ALAFC_ DOWNS PKhY , SAN ANTON!O 1X 76238 ll e nli ni n il iliillii ni ni nlilili nil o l o l e ll nl O .. ,,,, ,,,,, HOURLY PRECIPilA110N I W A T E R E QU I V Al. E N T I N I N C H E $ 1 $'0,",'I!",,'oh 43,,,iug , ,e y

                =                       A.M. HOUR ENDING Al                                                         P.M. HOUR ENDING AT                                            g E     1         2     3     4            5    6  7   8    9    10    11  12          1   2      3     4       5      6       7  l8           9 10          11i125 of   1         1    0.03 1            0.01 1    1   1                                                                                                               01 02 0.3% 0.5% 0.40 0.07 0.17 0.11                1                                                                                                                   02 03                                                                                                                                                                  03 04                                                                                                                                                                  04 05                                                                                                                                                                   05 06              i     I                                   f    0.01                                                                                                  06 01              1    0.7) 0.24 0.16 0.06         1                                                                                                                   01
                 !                                                 8.02 1.25 0.11 0.31 0.01        0.02 1                                                                           0 it                                                                                                                                                                   to 11                                                                                                          g.60                                                      11 12                                       1  0.10                                                                                                                      12 11 13 te                         i                                                                                                                                          14 15                                                                                                                                                                    15 16                                                                                                                                                                    16 17                                                                                                                                                                    17 la                                                                                                                                                                    la li                                                                                                                                                                    19 28                                                                                                                                                                   20 21                                                                                                                                                                   21 22                                                                                                                                                                   22 13                                                                                                                                                                   23 24                                                                                                                                                                   24 25                                                                                                                                                                   25 26                                                                                                                                                                   26 21                                                                                                                        -

21 i l 1 0.04 1 1 0.00 vie , 30

Septender 9,1992 1 ,, ,' , lleport No. 12340-93543b - Texas Utilities Electric APPENDICES O O Peak Seals Installation Data g,8?h ,s. 3

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( mAcuMon s.er 19 CONSTRUCTION VORK DOCUMDff. 8TIATION m. m eg.g seus emner

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1-4-ez PROCESS CONTR DOCUMENTS , l CWDR n- Axrdsr-muk- et , ! APPUCATION DESCRIPTIONIATTRIBUTE PROCEDURE / FIGURE # PAGE REY. YES NO PG.1 PG.2 PG.3 PG.4 PG.5 PG.S INSULATION CDP-CV-108 i THERMAL WSULATION MSTALLATION CHECKLIST FIG.7.1 REFLECTIVE MSULATION CHECKLIST FIG.7.2 MSULATION INSTALLATION RELEASE FIG.7.3 .j NSULATION REMOVAL REQUEST FIG.7.4  ; THERMOLAG COP-CV-107 351 PRIMER APPUCATION# REPAIR FIG.7.1 1 330-1 APPUCATION ON CABLE AND RACEWAY FIG.7.2 O O ' C7 ,

                         -1       FIRE STOP INSTALLATION                        FIG.7.3                  o    o

(. FIG.7.4 o o 1 330-400 APPUCATION / 330-1 APPUCATION ON STRUCTURAL STEEL FIG.7.5 RADIANT ENERGY SHIELD MSTALLATION FIG.7.8 J FIRE PROTECTION MSTALLATION RELEASE FIG.7.7 o  ; T-LAG #RES REMOVAL REQUEST FIG.7.8 k l QC DAILY MSPECTION RECORD FIG.7.9 o O l ELECTRICAL QC INSPECTION FIG.7.10 o .o ,

I CORE DRILUNG COP-CV-108 l CORE DRILUNGmE8AR CUTTNG FIG.7.1 STRUCTURAL EMBEDMENTS CQP-CV-109 .q HILTlINSTALLATION(NEW SUPPORT) FIG.7.1 .

l

HILTlINSTALLATQFQ8T NUT) FIG.7.2 RETORQUING FIG.7.3 RICHMOND INSERT- FIG.7.4 l! i.- EM3EDDEDfGROUTED(THROUGH BOLT (S) FIG.7.5 FIG.7.6 l POWER ACTUATED i EMBEDDED PLATE / ANGLE ATTACHMENTS FIG.7.7 l ,

BASE METAL DAMAGE FIG.7.8 REMOVAUREINSTALLATION HILTI FIG.7.9 SUBSTITUTIONfREPLACEMENT OF HILTI(S) FIG.7.10 i 1 PAGE 1 OF l ' TO ' 4 w

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O'1-o-s2 n PROCESS CONTROt' DOCUMENTS O ' CWDM n- rdr-rur -mck- oI APPLICATION DESCRIPTIONIATTRIBUTE PROCEDURE 1 FIGURE # PAGE REV. j YES NO PG.1 PG.2 PG.3 PG.4 PG.5 PG.S  ; FIRE EXTINGUISHERS CDP-CV-126  ; l INSTALLATION CHECKLIST FIG.7.1  ! GYPSUM CDP-CV-114 l GYPSUM INSTALLATION CHF.,CXLIST FIG.7.1 NNS FIRE PROOFING CDP-CV-133 - ( l NNS FIRE PROOFING INSTALLATION FIG.7.1 GROUT CQP-CV-102 GROUTING FIG.7.3 ) FIG.7.4 i C BASEPLATE GROUTING (CEMENT) FIG.7.5 BASEPLATE GROUTING (EPOXY) GROUTING UNUSED PIPE AND CONDUfT SLEEVE 8 FIG.7.7 CONCRETE COP-CV-103 EMBEDS AND FORMWORK FIG.7.2 ' PREPLACEMENT FIG.7.3 I PLACEMENTIFINISHING FIG.7.4 CURING FIG.7.5 REMOVABLE BLOCKWALLS FIG.7.5 -  ; CONCRETE BATCH TICKET FIG.7.7 REBAR COP-CV-104 .

FABRICATION FIG.7.1

, PLACEMENT FIG.7.2 t STRUCTURAL STEEL CQP-CV-10ti l I MATERIAL TRACEABILITY FIG.7.1 I ' ' FABRICATION FIG.7.2 4 ERECTION - FIG.7.3 i i ' BOLTING FIG.7.4 SKIDMOREtWILHEIM TORQUE CAL FIG.7.5 BASE METAL DAMAGE FIG.7.8

HANDRAll GRATING AND CURB FIG.7.7 -

i 1 ! PAGE 2 OF . p,) ! H  ; 4 C")

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          -s-s2       l              PROCESS CONTR . DOCUMENTS                                           O                                    I CWDM n- nx- 77sr-21xx ol                                                                                 ,

APPUCATION DESCRIPTIONfATTRIBUTE PROCEDUROFIGURE# PAGE FEV. t i YES NO PG.1 PG.2 PG.3 PG.4 PG.5 PG.S i i DOCUMENTATION PREP. COP-213 l CONSTRUCTION WORK AfD FIG.7.2  ; SPECIAL CHECKLIST FIG.7.4 ACTivlTY  ; ACTIVITY , t SLANK CHECKLIST FIG.7.5 j HOUSEMEEPW4G ECC 232 i jl HOUSEKEEPING CHECKLIST FIG.7.1 / / / 4 WELDING CQP-WD-OE9 , WELD RECORD FIG.7.1 , RPS REPAIR PROCESS SHEET FIG.7.2 i STUD GUN QUALIFICATION R G.7.3 ' DIR DAMAGE INSPECTION REPORT FIG.7.4 REMOVAL INSPECTION FIG.7.5 LOAD TESTING CQP-MS-222-2 CRANE LOAD TEST FIG.7.1 l MONORAllLOAD TEST FIG.7.2  : PAD EYE / LIFTING EYE LOAD TEST FIG.7.3 HOLLOW METAL DOORS CDP-CV-132 HOLLOW METAL DOORS FIG.7.1 i 3 PniefRnYne SvML CM?h c c P- as - lz G~ .3 0 L l h ? i i .i PAGE 3 OF w 1 i i

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6. PROVIDE SINGLE LAYER OF INSTRUMENTATION, CONTROL AND POWER CABLE TO SCHEME 1 IN ACCORDANCE WITH CABLE BILL OF MATERIALS.
7. TO MAINTAIN CONTINUITY, SINGLE LAYER CABLE TO BE LOOPED INTO TEE SECTION.
8. FOR SCHEME #1 MOCK UP #1, 5-5/8" DIA. HOLES MAY BE DRILLED IN ONE TRAY RUNG TOP'TO FACILITATE ELASTOMER PLACEMENT.

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INSTRUMENTATION WO63 4SHLD TW PR 16AWG 8 36'-0" l

INSTRUMENTATION WO71 5/C 16AWG W/SHLD 12- 36'-0" l l L O

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                               - BROWN & ROOT SAFETY
                    -5             PEAK SEALS ADMINISTRATION                                                      ,

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                 #        INSTALLATION OF TEEltMOLAG (B & R)

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                     !             QCP-0050.CPT                      Ma /4 RESPIRATORY PROTIC'":'ON                                                       (RESPIRATOR 3M 9925)                                                                                 [
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CONTRACT NO. C-0040219-7C5 i

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PEAK SEALS 2 r"  ! ! CONTRACT NO. C-0040219-7C5 , 1 Q VERIFICATION OF COMPLIANCE - TO REQUIREMENTS OF CPSES STA 152 NAME: W/LLMm I I//u2 anpag g /kggyo SOC.SEC. No. M,[O ~// - $ b9 i

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                                                                                                                      '244 PEAK SEALS CONTRACT NO. C-0040219-7C5                                                                        :

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      !     QCP-0050.CPT                    N /I RESPIRATORY PROTECIION                     (RESPIRATOR 3M 9925)

[ PEAK SEALS SAFETY

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                                                         'a TITLE         PROJECT o_ c /0_           a         u1Mir rn DATE                  ~/   'i2
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LEVELS OF CAPABILITY INCLLOE:

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LEVEL I - s TWO YEARS EXPERIENCE IN QUALITY RELATED ACTIVITIES. HIGH SCHOOL GRADUATE (OR EQUIVALENT) PLUS SIX HONTHS QUALITY RELATED EXPERIENCE.

ASSOCIATES DEGREE IN A RELA 1ED DISCIPLIE PLUS THREE HONTHS QUALITY

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LEVEL II D E YEAR SATISFACTORY PERFORMANCE IN QUALITY P. ELATED ACTIVITIES AS A LEVEL I OR HIGER. HIGH SCHOOL GRADUATE (OR EQUIVALENT) PLUS THREE YEARS QUALITY RELATED EXPERIENCE. ASSOCIATES DEGREE PLUS DE YEAR QUALITY RELATED EXPERIEEE. O FOUR YEAR DEGREE PLUS SIX HONTHS QUALITY RELATED EXPERIENCE. HANAGEENT UPCRADE (ATTACH RECORD OF BASIS APO APPROVAL BY QUALITY ASSURANCE MANAGER).

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_ ._s======== LEVEL III O SIX YEARS EXPERIENCE PERFORHING QUALITY RELATED ACTIVITIES AS A LE TEN YEARS QUALITY :ILATED O HIGH SO OOL GRADUkTE (OR EQUIVALENT) PLUS: EXPERIENCE OR EIGHT YEARS QUALITY RELATED EXPERIENCE WITH AT LEAST TWO YEARS AS A LEVEL II APO TWO YEARS MJCLEAR RELATED. ASSDCIATES DEGREE PLUS SEVEN YEARS QUALITY RELATED EXPERIENCE WITH AT LEAST TWO YEARS MJCLEAR RELATED. x FOUR YEAR OEGREE PLUS FIVE YEARS QUALITY RELATED EXPERIENCE WITH AT LEAST TWD YEARS NUCLEAR RELATED. (]J

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                                          /

CSTABLISHED BY PROCEDURE NO. QAP-0010 APO IS EREBY CERTIFIED TO PERFORM LEVtt 2 rUNCTIONS AS DESCRIBED BELOW APO AS FURTER DETAILED IN i SUPPORTING TRAINING RECORDS.

                   ,   _:=========--------======================================a==============_.

LEVELS Or CAPA8ILITY INCLtOC: PERFORHING APO RECORDING INS"CCTION Ato TESTS IN ACCORDANCE WITH APPLI-CABLE PROCEDGtES.

;                          @ Pt.ANNING INSPECTIONS Ato TESTS, INCLUDING TE PREPARATION APO SET-UP OF RELATED EQUIPENT.

EVALUATING TE VALIDITY APO ACCEPTABILITY F INSPECTIGN Ato TESTING RESULTS.

                           @ REPORTING INSPECTION, EXANINATION, AND TESTING RESIA.TS.

( @ SUPERVISING APO TRAINING CQUIVALENT AND LOWER LEVEL PERSONNEL.

                           @ QUALIFYING APO CERTIFYING LDER LEVEL PERSONEL, j                              EVALUATING TE ADEQUACY OF SPECIFIC PROGRAMS USED TO TRAIN PERSONNEL.

r

                          % QUALIFYING AND CERTIFYING SAE LEVEL PERSDPN1.

t ==========-__-- _==== ============ _ _ ===

                                                                                = - , - __ ==_===== =======_

I TE BASIS FOR THIS ERTIFICATION INCLLEES: l

                         @ EDUCATION AND EXPERIENCE AS 00CLEGED ON FORM NO. QA-15.

O HANAGEENT LPGRADE AS DOCIENTED ON FORM NO. QA-15. PROGRA>NATIC APO ON-TE-JOB TRAINING AS 00CLMNTED ON FORN NO. QA-18. O caFIcIENCy itSTING AS 00CtwNTED tw r0Rn NO. QA-i,. _ __=__- - ___= - ._ _ PERICD F CERTIFICATION CERTIFIED BY PJ siga -rL 3 -is-om1 z. rRON 3 - 11 12 TO 3 i.r- 1.s

Q, .

P tA4 QA.17 Rury. 1 1/25/E7

                                                                                                                      ;,.I ' .'.
                     .                                REtEVANT EDUCATION AW EXPERIENCE                                                         - ' .    .

200 NAME: IfsIsl Av lAs+v Ax,/we/L INIIIAL HIRE DATCt .1 - f o . 92 l e l DATE OF BIRTH: 9 1/, 45 SSN: Vf 7 6 7. V4'4// O =============ma_---__===================--___=====================__==: LEVEL I

               ,       C TWO YEARS EXPERIENCE IN QUALITY RELATED ACTIVITIES.

HICH SCWOL GRADUATE (OR EQUIVALENT) PLUS SIX WNTHS QUALITY RELATED i EXPERIENCE. i . ASSOCIAIES DECREE IN A RELATED DISCIPLIE PLUS THREE HONTHS QUALITY . RELATED EXPERIENCE. MANAGEENT UPCRADE (ATTACH RECORD & BASIS AM APPROVAL BY QUALITY ASSURANCE MANAGER).

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

LEVEL II ! ONC YEAR SATISFACTORY PERFORMANCE IN QUALITY RELATED ACTIVITIES AS A LEVEL I OR HICER. i o , HICH SCHOOL GRA00 ATE (OR ECUIVALENT) PLUS THREE YEARS QUALITY RELATED

                            -Rma.

O ASSOCIATES DECREE PLUS GE YEAR QUALITY RELATED EXPERIENCE. FOUR YEAR DECREE PLUS SIX IMTHS QUALITY RELATED EXPERIENCE. C MANACOENT (PCRADE (ATTACH REIDRD & BASIS Am APPROVAL SY QUALITY ASSURANCE MANAGER).

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

LEVEL III SIX YEARS EXPERIENCE PERFORMING QUALITY RELATED ACTIVITIES AS A LEVEL II 1 . O HICH SCHOOL GRADUATE (OR EQUIVALENT) PLUS: TEN YEARS QUALITY RELATED EXPERIEEE OR EICHT YEARS EJALITY RELATED EXPERIENCE WITH AT LEAST Two YEARS AS A LEVEL II Am TWO YEARS MICLEAR RELATED. ASSOCIATES DEGREE PLUS SE' YEN YEARS QUALITY RELATED EXPERIENCE WITH AT LEAST TWO YEARS WCLEAR RELATED. TWO YEARS NUCLEAR RELATED.

                  - - - - - - - - - = = = = = = = = = = - - - - - - . -_=- -                  - ==--__                                   ---,=----========

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                                                             - . . . . .    < , , , , , - , .           , ,- . ,   n    . . _ , , , , _ ,

1 September 9,1992 "g-O 4 Report No.12340-93543b Texas Utilities Electric APPEND 1CES l

I 1

l 1 I

                                                                                                \

4 I l l Certifications of Calibration and Conformance I l i I i i i r 4g e ,0f Oj' g7 \A p (g (( ~ }. f. Y4 mtl' nw t 4AT I

n m#en z f,f: myt'E["@ m e.:g o m s~N N. n[e sy) *'$Is# (Y i p , aynsp;h*qly i g p #'O hb8 j(f:j SN e er  : a #g.A~A 3 { (' pg we c e SV4r.%>n.eaw 4RW e,u cc-1 a. a&S?eMe% l# iUXtUlih

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                                                                                                                                                                      "*W d il/d                                       Omega Point Laboratories, Inc.

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                           $                                                  6868 Alamo Downs Pkwy.

San Antonio, Texas 78238 NW[k h 19 _ g #L O h^ u N %e - 800-966-5253 FAX 512-647-0615 i@, ,# Le - Certificate of Calibration j (,. A & 4 .:k y-L,$d 3 Mff l 7si gye L Certification No.: g 910007 g%. ,,. p i t, ""f@ l 6-17-92 tl"i"%*$h Calibration Date: # %g# J o l lgo"je, ksRecalibration Date: 12-17 92 gl m a a i T %, ,t y Manufacturer: John Fluke Mfg. K q *nc g W j )' p" f g .

           . v.eo, ' y Model No.:

2289A .s,, , i me

4 t J ga$ve;gfSerial No.
431-5003 {r,g$ ,(r#

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                                                                                                                                                                         ~t f[j$ 'g$       M Equipment

Description:

HELIOS I Data Aquisition Unit, ,- y Computer Cart - 80 Channel Capacity l- jp *i[

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3.

                                                                                                                                                   ! f ~ **%                   JS .

8A*"f *gj Model #CL-466, Serial #703297

                                                                                                                                                   %. g '
             &x, M o*gk l                               H PERFORMANCE:

iG "% "'V gj(g hl , l g# Better than .46/+1.11 *F on all 80 channels gj]

         $5 f

Uh.y ,YgpAd n p Cailibra/on Iterke ed/ Approved by:

                                                                                                   ,g
3 h

un h i i Dei;ga6N. Priest, " N, '###I,fi$ Yfhhkh s p n President - pgg%j es

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i' I i! 1 Omega Point Laboratories, Inc. ) ,L , 'i 1 l 6868 Alamo Downs Pkwy. $."#'I/ d$"""h v '^" f San Antonio, Texas 78238 800-966-5253 FAX 512-647-0615

                                                                                                                       !          d' I Certificate Of Calibration                                    N, 4 Certification No.:        910008                                                              s 8

Calibration Date: G17-92 hoh'r j sh'""'4 yl

      ,gge                                                                                                                i 3'              hj8                 Recalibration Date:       12-17-92                                         1                <j 3%

John Fluke Mfg. $$ d' k[a ( Manufacturer: 1,1

                            *e jf::q?N             a   ,]             Model No.:                2289A                                           t;g*               3 Serial No.:               537 6000 s,k Equipment

Description:

HELIOS I Data Aquisition Unit, - k Computer Cart - 100 Channel Capacity { g$ $ 4 Calibration Sources: Digicator Digital Calibrator, ifit i Model # CIA 66, Serial #703297 b-) l ,( ' f ) . I l \ e

        ;s                                   PERFOIGIANCE:                                                               l s'j                 )

l ( / i- Better than - 1.35/+.51 *F on all 100 channels f 1 1

i I,

Ik'j i,' .d Cailibra Parf ed/ Approved by:  !! , .

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                                                                                           ~

[ Degi;arfN. Priest,

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2 J President .

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                                                     .==w ==           -=www m,wwn                      m= =. - -        - !              ;Q Omega Point Laboratories, Inc.                                       N8 "'fhj, i'g[f['@[*              f.             j              6868 Alamo Downs Pkwy.

San Antonio, Texas 7S238 U +.,'[ry "3 lll l ( %ggh 4 800-966-5253 FAX 512-647-0615 [l t We . jI! -,

                                      ?]       .                      Certificate of Calibration                                     (lA                     X
                                     $;n                                                                                          }lt
                               ,                      Certification No.:         910009 i

Calibration Date: July 6,1992 /

                      ,3 j[ 'l 8
                                      $          l    Recalibration Date:        January 6,1993                                           pk Manufacturer:              John Fluke Mfg.
                               /] /          f        Model No.:                 2289A                                                g+

k' Serial No.: 537-6000 g (V{g#[ N ' Equipment

Description:

HELIOS I Data Aquisition Unit,

                                                                                                                                      \t lj 4                s 1

Computer Cart - 100 Channel Capacity yg. i

                      \-               f"    f         Calibration Sources:      Digicator Digital Calibrator,                                                     x Model #CL-466, Serial #703297                                                   .l s1                                                                                                              h   4
                            \

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                       \.             ,
  • PERFORMANCE: ;g /

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                      \                           J    Better than -1.34/+0.45 'F on all 100 channels                                  f f

1 lj k( l 1 Cailibrat' Performed / Approved by: hg, l > _t' R> ~s ? -.

                                                                                                                                        %r ,:                        >
  • Deggary3. Priest, 3
                                 ~

l, ( p President i y N o ,e b ;fg xg vgg,, : h =

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Omega Point Laboratories, Inc. !n y"',,) Q 6868 Alamo Downs Pkwy. J ;e r*js - t San Antonio, Texas 78238 b.S."i,J 9h *,.gh 800-966-5253 FAX 512-647-0615 [78 42 Y.,T4

       .m              J                                                                                                    9$p$e a
   .R;;,2, h                                    Certificate of Calibration                                                    j ;;gj{

h$h jypjg Certification No.: 910010 l f.b1 A( 3{ h?""U jh Calibration Date: July 9,1992 h gV 4 January 9,1993 9[%ig ."'"k,,,

                $             Recalibration Date:

M(tf

   %A e Manufacturer:                     John Fluke Mfg.                                              [
                                                                                                                             ;  [p#g,   igh
     ~.a p.     ' O..j        Model No.:                        2289A                                                        {   )r t
                                                                                                                                      ,4. cwa;h _.

f;fi hk Serial No.: 431 5003 (3 ' #W $ l M v Equipment

Description:

HELIOS I Data Aquistion Unit. t *} i t

                $p$pl    g                                      Computer Cart - 80 Channel Capacity                            b[?p
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q il Calibration Sources: Digicator Digital Calibrator, Model #CL-466, Serial #703297

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b e *e v i; PERFORMANCE: ve r Ng! p),,f,-d . y4, p Better than -0.60/+1.48 on all 80 channels {ggg f h$f y tjQw, Cailibra n Performed / Approved by: )4 y og Y h ala, ghJjg$*%{ Deggary N. Priest, Yh I'

        #            h      n                                                President n$
 ,et L                                                                   ,..s a yy                                = _ _ , = _                                 =              ,           ,   _                 qg g k   -          _h k~                                                      - _ { h,

O O O j+a^*o,g O/A RECEIVING REPORT CLIENT /PHOJECT NAME- Nb b- REPORT NUMBER //8 / / /2398 CLIENT / PROJECT NUMBER /#3 Vo- 73y_M DATE RECEIVED '7 / J 9 / 9 A g RECEIVED FROM Ndt4 ME DATE INSPECTED ' 7/I7/42-4AT PHOJECT LOCATION &#4 INSPECTED BY: d- -

                                                                                                                                  /

b_ < OUANTIIY CtJIR CERI. cot 4TAINER ACCEPTANCE P.O. tJO. Of t MATL RECD REMARKS l.D.710. EXCEPTIONS ITEM DESCRIPIlON Y/N Y/N ltJIEGRIIY Accept Hold Reled ORDER NO. Order Rec'd B.O.

   % %*, L ~             ersw             i    i 1:r% v Y                  s~s        &            x                   "2M;5"
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1 l Cmega Point Lchorntoritc. Ins. b b PURCHASE ORDER

         , ,, y, 6863 Alarno Downs Pcrkw:y, S:n Ant:nio TX 7823P g           g                                                      (512) 647 5253                 FAX: (512) 647 o615

(' s, 5 Iendor: PO Number: Rothe Development 92070 ! Attn: Peter Stemerman invoice, correspondence all 4614 Sinclair Road shipping pape s, and packages

                                                                                         '" " ' * * * 'O' "D*

San Aritonio TX 78222 BillTo: Ship To: Accounts Payable Constance A. Humphrey Omega Point Laboratories, Inc. Omega' Point Laboratories, Inc. 6868 Alamo Downs Parkway 6868 Alamo Downs Parkway San Antonio, TX 78238 San Antonio, TX 78238 Order Date Ship Vla F.O.B. Date Required Terms 6/5/92 Rothe Truck /,//o /12. Quantity Unit Itern No. Description Ordered Price Extension

1. Calibration Services for:
 ,Q                   Digital Temperature Calibr.t for                                 2      41.50               83.00
 d                  Model CL 466 Serial #703697 (2 Quality Checks of K input only.

Equipment to be returned for 2nd quality check approximately 7/1/ 9 2.) includes Tax and Shipping jIJ & h "See Special Instructicas Regarding Purchasing Spe:ikations for Quality Assurance Rcquireira .ts," p QA Approval _ d- A Date- d./s-/ W ' _ Scecial Instructions Order By: Constance A. Humphrey TOTAL See Attached Purchasing Project #: 12340 93543 Specifications N 4

 ~

2f VENDOR PURCHASING SPECIFICATION AND G V QUALITY ASSURANCE REQUIREMENTS 4AT Vendor Nosfe.dev PAGE 1 OF 3 Purchase Order No. c7RO 9 O Any or all of the following Quality Assurance requirements shall bo incorporated as conditions to this procurement when corresponding box is marked. Failure to comply with any requirement specified herein may result in rejection and/or return of shipment at sellers expense. 1.0 OUALITY PROGRAM

,               x      Seller shall fumish all items on this Purchase Order in accordance with Quality Program approved by Buyer.

2.0 QUALITY VERIFICATION When additional quality verification activities are required as a condition O to this procurement, invoices will not be paid until satisfactory completion of such activities. Excessive rejection rate may result in removal from buyers Approved Vendors Ust. Receiving Inspection - Buyer shallinspect items upon receipt to verify comp!!ance with purchase order requirements. Rejected items shall be retumed at sellers expenee. independent Laboratory Tests - Samples of materials furnisned shall be tested independently for conformance to specification requirements

proir to final acceptance. Rejected materials shall be retumed at sellers expense.

l @ Document Review - Final acceptance shall be based on satisfactory l review of required certifications and other supporting documents. 3.0 CERTIFICATIONS When certifiedJons are required as a condition to this procurement, the seller shall fumish one reproducible copy either with or prior to each shipment. Shipments will not be accepted and invoices will not be paid until certifications l p are in buyers possession. d FORM QP 1-2 10/C8 l l

2B! PURCHASING SPECIFICATIONS VENDOR don 6 _ DFM PAGE 2 OF 3 - PURCHASE ORDER NO. 9807 d Certificate of Compliance /Conformance Required - Certification that materials and/or services comply with purchase order requirements, Certification shall ' reference purchase order number and traceability numbers (when applicable). Certified Test Report Required - Certification that material complies with i applicable material specification (s) and the purchase order. Include actual 4 results of required tests. S Certificate of Calibration Required - Certification shall be traceable to National Bureau of Standards. (Renamed NIST, Nat. Institute of Science & Technology)- , I 4.0 AUDITS /RIGHT OF ACCESS g The buyer reserves the right to audit your facility to verify compliance with ! purchase order, code and specification requirements with minimum of ten (10) days notice. Shipments shall only originate from facilities approved by the buyer. l Buyer reserves the right to inspect any or all work included in this order !' at seller's facility with as early notice as practicable. i 1 5.0 IDENTIFICATION l Seller shall identify each item with a unique traceability number by physical > marking or tagging. Traceability numbers sha r. be traceable to certifications and pack!ng lists. Seller shall identify each container with a unique identification number. The identification number shall be traceable to certifications and packing lists. ! 6.0 10 CFR, PART 21 The material, equipment and/or services to be fumished under the provisions of this purchase order are basic components of a Nuclear Regulatory.Com-mission (NCR) licensed facility. Accordingly, the seller is subject to the provi-sions of 10 CFH, Part 21 (Reporting of Defects and Noncompliance). FORM Q& 1-2 10/88

27t PURCHASING SPECIFICATIONS VENDOR oN/6 N W. . . PAGE 3 OF 3 PURCHASE ORDER NO, 9M7@ 7.0 PACKING / SHIPPING All materials shall be packaged in air tight, moisture free containers and shall be free from all foreign substances such as dirt, oil, grease or other deleter. 3 lous mata*8 All materials and equipment shall be suitably crated, boxed or otherwise prepared for shipment to prevent damage during handling and shipping. Wherever practical, equipment shall be palletized for ease of unloading and storage at destination. each container shall be clearly marked with buyer's purchase order number. QUALITY ASSURANCE APPROVAL b ' (J F

                                                                                    "A DATE

( 6h9L LO

_ FORM O/P 1-2 10/sa ,

l -' i c

                            - - . - - - .            - - -                   -.c.    . . . .    ._     _ . . , . . . . . . . _ _ - . . , . , . . . . .

EQUIPMENT DELIVERY RECE!PT OP 4 i Rothe Dev 'o**ent, Inc. Compant Doesa Point Laboratories

  ' Metrolost Services Division                                    Contact Ms. Humehrev 4614 $1nclair Rd.                          Date: 07/27/92      Addresst 6868 Alamo Downs Parkway D ntonio, TI 78222-2099                    Control:    556         City San Antento, TI 78238
          #648-3131                                                   Phonet 647-5253 Iten      W.0, B  Customer P.O. Mfsr. Model            Serial No.          Description

,i 1 32949 92070 Omsa CL-466-t-1 703297 Disital Teme Calibratot 6 l 4 A e

    /**

Date: (sjived N. bY RDI 3003 Pase 1 of 1 pase(s)

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

METROLOGY SERVICES DIVISION O[ h epa' Of7(P1 cts [, #8 (*. PRECISION MEA $t. CEMENT EQUIPMENT LABORATORY g, TRACEABLE TO NIST f 4614 StHCLtJR RO. SAN ##TONio, TEXAS r8222 2099 512 648 3131 FAX. 512 648-4091 CHARGE

  • 107 CONTROL * $$6 g477.

WORK ORDER e 37 4 RECE!VED FROM Deega Point Laboratories 0^T8 MFG 06/09/92. Deega l U ADoREss 5868 Al n o ta ns Parkway PHONE

  • 647-5253 uOCEL C'.*466 I IS San Antonio, it. 78238 I lT COmACT mE, Ms. Huachrey rAx, 647-0615 T sERuu , 703297 -
!O                                                                                                                                                E
,E M               PURCHASE ORDER ,         92070 y          rypt      Wat her 06orw 1AIABLE 8. 51 CUSTOMER COMMENTS                                                                                                                          ACg j

[ REPAIR OPERATIONAL CHECK CAUBRATION DATE Il 1'W YE RECEIVED IN SPECS. d4ECEIVED INOPERAtNE

2 CAUBRATION DATE DUE
                                                                                                                                               '"'                L_] RECEIVED OUT CF SPECS e

CKT REF

  • OTY. MFG PART
  • DESCRIPTION COST '

ROTHE TECH. CUR P O.- LU i 7%>A LA80A HAS SEAwCE CC i 1,O 3 PARTS TOTAL . j REPATR LABOR g3 , f- sHMNQ TEAR DOWN CHARGE

TAX -

. CAUBRATON M Q[

                                                                                                                                                            . TOTAL TR #s
                              /-Q CN 0

! couvenis 5dudii&V d&&iwM , WORK PERFORMED: M fft d- h /,} yg;/t / p ff [ Q 4 { g g cf a f( (A] -Sj2C*A b f f./17h4lc & t M f s ? dc sY C. ) l jeyb a.s rep M c/. T 'F y ' ", RH. l . Roi2 coa

      ~-SHIP VIA:                                            DATE:                                                  RECEIVED BY:

~ gv ROTHE DEVELOPMENT METROLOGY SERVICES CAllBRATION DATA: OMEGA CL-466-L-1 t' b) CUSTOMER Duey hv 66 S~ahA DATE: \\ b 9L

                                                                 *O WO NUMBER :                                TECH:

SERI AL : WSES7 CONDlil0N WHEN RECEIVED IN TOLERANCE v 4 OUT OF TOLERANCE INOPERATIVE C AL DATA TAKEN INCOMING v OUTGOING 4 5 i SPECI AL PERFORMANCE VERIFICATION TEST -TYPE K SECTION DEG F MIN READING MAX

        -100                                            -98.8    - 100 L     -101.2 32                                            31.2       M9       32.8 100                                            99.2       99.2     100.8 300                                            299.2      299.7     300.8 500                                            499.2     999 1      500.8 750                                            749.2       N9b      750.8 1000                                           999.2      M 94 __. 1000.8 1250                                         1249.2     \ t% 9. R   1250.8 1500                                         1499.2     M99 9        1500.8 1750                                          1749.2     175D 0      1750.8 2000                                          1999.2     lomi        2000.8 2250                                          2249.2     2a so. L    2250.8 2500                                          2499.2      2 soc.4    2500.8 DEG C                                             MIN   READING       MAX
        -100                                            -99.2     -99 7      -100.8 0                                               .5           D   +5.

100 99.5 99 T 100.5 300 299.5 199 8 300.5

         -500                                           499.5       499 ~1   500.5

(] 750 749.5 P9E 750.5 1000 999.5 t 000.O 1000.5 1250 1249.5 1150 L 1250.5 1350 1349.5 G 5D L 1350.5

 -4      . _ . .        _ _ _ . . - . . -              .m.       _. . . . . _ . ~ . .          .     . _ _                 -      _ . . . _ _                              _  ___ _ . . .

L'.ETROLOQY SERVICES OtVI!!ON ' O[ t ##f off m cri[, 18 C. PHECISION MEASUREMENT EQUIPMENT Lt.80RATORY - (")

  • TRACEAILE TO NIST 4614 SINCLAJR RD. $AN ANTONIO. TEXAS 78222 2099
                                               $12 648 3131 FAX: 512 648-40S1                                      CHARGE
  • 107 CONTROL * $M - - 977 '

WORK ORDER

  • 32$49 RECE!VEDFROM0neet Poir,t Laboratories cATE 07/15/92 ufo b st C

U Ados - J Alan Downs Puken ~ PHONE

  • 647-5253 uOoEL DAM-t.-l 4 G  : n Antonio. TI 78256 I

, T cONTACi tNAus3Ms. H w ntey FAxe 647-%15 T SEniAt

  • 70 W O E M punesis, onogn , m """ # I E M TYPE R CusTouEncovueNTs T AIAAE 83 g f

REPAlR OPEPdllONAL CHECK CAllBRATION DATE - E [ RECENED IN SPECS RECEIVED INOPERATNE [ CAUEidATION ATE DUE RECENED OUT OF SPECS CKT REF

  • OTY. MFG PART
  • DESCRIPTION COST ROTHE TECH OUR P.O
                                                                                                                                                            ,U AEPA4A tAEk_,A HAS                SEAV E g-                           -

I .v.. - O _ go. , nePARtreOR - 4 SHIPPtNG TEAR OOWN OHARGE , TAX 1 ,_ i i CAueRATION f/44GN h TOTAL q ~[ l . TR #'s /So, /E/ so,30 s. , i N ENTS $/gc(a jg gggfgh WORK PERFORMED: (

                                                                                        ' 1                               -

( g , ,; e ) p i %ua s. raw 4egf 0s R6ae.s/e/,p i

  - TR 7/          *F gg,            b     g rot 2002 SHIP VIA:                                               DATE:                                 RECEIVED BY:

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ROTHE DEVELOPMENT METROLOGY SERVICES l 27! CAllBRATION DATA: OMEGA CL-466-L-1 , r CUSTOMER N % b'* M s. DATE: # 27 'f fd WO NUMBER : Mse TECH: // SERI AL : 783847 I CONDITION WHEN RECEIVED IN TOLERANCE /

;                                                                                         OUT OF TOLERANCE ,

4 INOPERATIVE ! CAL DATA TAKEN INCOMING / . OUTGOING . a SPECI AL PERFORMANCE VERIFICATION TEST -TYPE K SECTION DEG F MIN READING MAX

           -100                                       ,                                               -98.8                  -10Q 4                                        101.2 I

32 31.2 3I' 8 32.8 ! 100 99.2- 997 100.8 2 O 3x 500 2ee.2 499.2 299., N7 3x.e 500.8 750 749.2 Nb .750.8 l 1000 999.2- M7 1000.8 1250 1249.2 /dM '7 1250.8 I500 1499.2 /099 1500.8 l 1750 _1749.2 /7.60.o i750.8 2000 1999.2 2004.2 2000.8 i- 2250 2250 3 2249.2' 2250.8 j 2500 .2499.2: 3500.5 2500.8 DEG C MIN. READING MAX

                                                                                                                          ~@?
           -100                                                                                       -99.2                                                           -100.8 O                                                                                          .5                     0                                   .+5  .

100 99.5 M8 100.5

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j ROTHE DEVELOPMENT METROLOGY SERVICES 27E - CAllBRATION DATA:.0MEGA CL-466-L-1 CUSTOMER D%y hv 66 DATE: l\ b 9'

W0 NUMBER : Wh4 TECH: * \\
SERI AL : '? W7  ;

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INOPERATIVE CAL DATA TAKEN INCOMING V l

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. 750 749.2 1%k s750.8-

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500 499.5-  %%T 500.5L LO 750 1000 749.5 999.5 t eco.o 750.5
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  • g METROLOGY SERVICES OfVISION
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TRACEABLE TO NfST p 4614 SINCLAIR RD. SAN ANTOPaO, TEXAS 78222 2099 512-648-3131 FAX 512-648-4091 CHARGE

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                                                                                                                                                                         - TRACE ABLE To test '

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939 1 o OMEGA POINT LABORATORIES V CALIBRATION DATA SHEET FLUKE VOLT-OHMMETER Fluke Model 8062A SN# 4405196 Date //07/7 2- Next Cal. Due on or before: / /0 3/9'5 Calibration Frequency: At least annually (every twelve months). Equipment to be returned to: Fluke Technical Service Center g ., 34## ' #"~ Suite Dallas, Te a g 229 y

 ,-         Attach all documentation to this form.

Documentation should include: ! Data Record "as received" and "as returned" by Fluke i Technical Center. Calibration Performed by: FMa NodMM ded44 4t M A I ?/3e/7 / AMA

                           &&~i                   ij s/g e & Gr&~

i/0r/ n u h ~ r4 9 o V

F:LU KE , JOHN FLUKE MFG CO., INC.E OMEGA POINT LAB 6868 ALAMO DOWNS PARKWAY p M B R FLUKE TECHNICAL CENTER i o 2104 HUTTON DRIVE, SUITE 112 216783 t/ 3 M CARROLLTON. TX 75006-6807

        ' V IAN ANTONIO                                           TX 78238                                                                 REFERENCE "'

T ACCOUNTS PAYABLE OMEGA POINT LAB o 3 6868 ALAMO DOWNS PARKWAY H l P SAN ANTONIO TX 78238 s OMEGA POINT LAB T CONSTANCE A. HUMPHREY

= o 6868 ALAMO DOWNS PARKWAY o caaros2-L D

T SAN ANTONIO TX 78238 o cust eo ) 9162Q

                                   -...                   .x u .... e                     sea   ase.                 *=issc.us ...rs muo SROW         8062A                                                          PROBES 44051J6           ,                               ,        ,
           "' CSS
                        )12/30/91              IN TOLERANCE ~                                                                           23 AETUT.Nm > 01/03/92                   IN , TOLERANCE                MIL-STD-45662A APPLIES                                     40 *aal i

SERVICE INFORM ATION VERIFIED OPERATION OF ALL FUNCTIONS CALIBRATED UNIT - TRACEABLE TO N.I.S.T. SPECIAL DATA PROVIDED AS REQUESTED NO CALIBRATION ADJUSTMENT REQUIRED y

                 .v           somo      ciacun      auf No                                       orscRiproN j

8 i 696534 BATTERY. PRIMARY

                       .......<,o.m DC VOLTS                       100051 AC VOLTS                       100052 RESISTANCE                     100053 TEMPERATURE                    100054 FREQUENCY                      100055 l                cAusaAToeoATA               REMARKS:

l ~ 4405196 NO CLIPS RECEIVED WITH UNIT.

                   =        JAN-03-92           60 l
                 ==         JAN-03-93
              ~~~

SHIP VIA: UPS CUSTOMER

281 i EE!3!TETEE

                                                                             !. FLUKE TECHNICAL CENTER F 2104 HUTTON DRIVE, SUITE 112                                      216783 I      CARROLLTON, TX 75006-6807 d . . }\ .. ...                                         .. .b              OMEGA POINT LAB 0 6868 ALAMO DOWNS PARKWAY g

O,,H " i I SAN ANTONIO TX 78238

                                                                               $ CONSTANCE A. Hur1PHREY A131K10N anode s , P Apr arO                   5E niam aevv6E A                ACCE S50 pies / **F'S W:wOtD i

FOR ) 8062A 4405g6_,,,,, PPOPES

                                                                                                                                                    *C i

RECEIVED

                                ) INTOLERANCE                                                                                               23 l  RETURNED                    > IN TOLERANCE                        MIL-STD-45662A APPLIES                                                40 ' aa g                                           The John Fluke Mfg. Co., Inc. certifies V                                        that the above listed instrument meets or exceeds all published specifications. It has 1

been calibrated using standards whose accuracles are traceable to the National Institute of Standards and Technology. Alternatively, accuracles have been derived from accepted values of natural physical constants, or have been derived by the ratio type of self-calibration techniques. NtST REFERENCE NUW8EAS DC VOLTS 100051 AC VOLTS 100052 RESISTANCE 100053 TEMPERATURE 100054 FREQUENCY 100055 TECM NO 60 g

                                                                        .                           _ m CERTIFIED BY                        I J%NNIE WINTERS                                  JAN-03-92 SERVICE MANAGER                                                       CAUBRATON QATE l            CAUBRATON DATA D 4405196

[d =>JAN-03-92

          -                           60 ous>JAN-03-93 4

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9 om.s3 Potst Leber tori.:, :=, ' b PURCHASE ORDER 6868 Al:mo Downs Pcrkway, San Antonio TX 78238 (512) 647 5253 FAX: (512) 647 0615 O Vendor PO Number: 91620 Repalt Dept. John Fluke Mfg. Invoice, correspondence, all 1801 Royal Lane Ste 307 shipping papers, and packages g must reference P.O. number. BillTo: Ship To: Accounts Payable Constance A. Humphrey Omega Point Laboratories, Inc. Omega Point Laboratories, Inc. 6868 Alamo Downs Parkway 6868 Alamo Downs Parkway San Antonio, TX 78238 San Antonio, TX 78238 Order Date Ship Via F.O.B. Date Required Terms 12/23/991 UPS Blue Label 30 Ousntity Unit item No. Descripw Ordered Price Extension 1 Calibrate,i d O<3.e Volt Olimmeter 4 CT Sn #4405156 1 35.00 35.00 U 2 Data Showing Cone.lon as Rece}ved 1 25.00 25.00 3 Data Showing Condtion as Returned 1 25.00 25.00 Sent with Test leade amtellp6 i . . . L  %

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Special Instructions TOTAL Please include Certification of $85.00 Conformance with Order Project #: OPL Equip O

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