ML20217Q932

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Forwards Rev 12 to LaSalle County Station,Units 1 & 2 UFSAR, Reflecting Changes to Facility & Procedures Which Were in Effect as of 971001.Attachment a Provides Brief Summary of Changes.Index of Changes Also Included
ML20217Q932
Person / Time
Site: LaSalle  Constellation icon.png
Issue date: 04/08/1998
From: Dacimo F
COMMONWEALTH EDISON CO.
To:
NRC OFFICE OF INFORMATION RESOURCES MANAGEMENT (IRM)
Shared Package
ML20217Q935 List:
References
NUDOCS 9804130257
Download: ML20217Q932 (125)


Text

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Onnnuinweahh I thson Compan)

, - I.asalle Generating Station 2(dll North 'Ist Roatl Marseilles, IL (il 3 a I N's?

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April 8,1998 United States Nuclear Regulatory Commission Attention; Document Control Desk Washington, D.C. 20555 t .

Subject:

Updated Final Safety Analysis Report (UFSAR) r LaSalle County Station, Units 1 and 2 Facility Operating License NPF-11 and NPF-18

NRC Docket Nos. 50-373 and 50-374

References:

J. B. Hickman (NRC) letter to D. L. Farrar (Comed),

[ Commonwealth Edison Proposal for Updated Final Safety L Analysis Report Revision Submittal Frequency, dated June 15,1993 in accordance with the requirements of 10 CFR 50.71(e)(4) and Reference (1),

Commonwealth Edison submits Revision 12 to the Updated Final Safety Analysis Report (UFSAR) for the LaSalle County Station.

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Revision 12 reflects changes to the facility and procedures which were in effect as of October 1,1997. Attachment A provides a brief summary of the changes incorporated in UFSAR Revision 12. Also, attached is an "Index of Changes" explaining which pages of the UFSAR must be removed and which revised pages must be inserted.

If there are any questions or comments conceming this letter, please refer them to me at (815) 357-6761, extension 3600.

Re

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Fred Dacimo Site Vice President D

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LaSalle County Station 1

Enclosure cc: A. B. Beach, NRC Region ill Administrator M. P. Huber, NRC Senior Resident inspector - LaSalle l i

D. M. Skay, Project Manager - NRR - LaSalle .

F. Niziolek, Office of Nuclear Facility Safety - IDNS 9004130257 980400 PDR ADOCK 05000373 a i mconu .ompai

Attachment A UFSAR Revlin 12 Update '

Summ:ry cf Ch:nges Update of UFSAR Associated with the Mechanical Vacuum Pumo Licensina Amendments Amendment No.101 to Facility Operating License No. NPF-11 (Unit 1) and Amer.dment question related to the operation of main condenser mec)hanical vacuum pum receipt of a main steam line high radiation alarm. The UFSAR change is not associated with any design change.

The UFSAR sections that are revised due to this license amendment follow:

1. Section 2.3.4.1, " Objective of Short-Term (Accident) Diffusion Estimates,"

page 2.3-21.

2. Section 2.3.4.4, " Regulatory Guide 1.145 Methodology," page 2.3-25 (new section).
3. Section 10.4.2.2, " Main Condenser Evacuation System Description,"

page 10.4 5.

4. Section 11.5.2.1.4, " Main Steamline Radiation Monitor System," page 11.5-7.
5. Section 15.0.5, " Meteorological Parameters," pages 15.0-9 and 15.0-10.
6. Section 15.4.9, " Control Rod Drop Accident (CRBA)," pages 15.4 20 through 15.4-27, and associated Tables 15.4-7 through 15.4-13.

The proposed changes to sections 10.4.2.2,11.5.2.1.4, and 15.4.9 revise the UFSAR to agree with the actual design of the mechanical vacuum pump. Previously, UFSAR sections 11.5.2.1.4 and 15.4.9 incorrectly indicated or assumed that the mechanical vacuum pump automatically trips on high mair, steamline radiation, and UFSAR section '

10.4.2.2 incorrectly indicated that the mechanical vacuum pump also trips on high station vent stack radiation. Therefore, these UFSAR sections are revised to reflect the fact that this pump does not automatically trip on a signal from either the main steamline or station vent stack radiation monitors. In addition, UFSAR section 15.4.9 is revised to reflect the change in the consequences of the Control Rod Drop Accident (CRDA) since the original analysis assumed that the mechanical vacuum pump was automatically tripped at the beginning of the accident.

UFSAR sections 2.3.4 (items 1 and 2 above) and 15.0.5 are revised to reflect the changes in the meteorological parameters used in the new CRDA analysis. The previous CRDA analysis utilized the arbitrary meteorological parameters of Regulatory ,

Guide 1.3. The new CRDA analysis uses more realistic parameters which were -

, calculMed in accordance with Regulatory Guide 1.145.

The proposed changes to UFSAR sections 2.3.4 and 15.0.5 are based on the ges the to UFSA.R proposed chan section 15.4.9 are based on the C(RDA analysesRegulat performed by GE (Ref. 2 and 9).

The application for amendment to the Unit 1 and 2 operating licenses was submitted to the NRC per letter dated September 10,1993, with supplemental letter dated November 17,1993. The license amendments were approved by the NRC per letter 4 dated July 26,1994.

Attachment A UFSAR R; vision 12 Update Summ rycf Ch:nges Update of UFSAR Section 7.7.14 UFSAR Section 7.7.14.1.2.1 is revised to correct the description of the power supply to the offgas posttreatment monitors. The UFSAR incorrectly stated the power supply is 125-Vdc. The description is corrected to state + 24-Vdc Buses A and B. This is consistent with FSAR Section 11.5.2.1.2. There are no resultant changes to plant systems or components.

Revision to UFSAR Table 6.2-21 for Motor Operated Valve 1G33-F040. Gear Set and Sprina Pack Replacement. Desian Chance Packaae (DCP) 9400433 The design change improves'the reliability and operability of motor operated valve j 1G33-F040. Specific requirements relating to operability have been presented in NRC Generic i.etter 89-10. Several alternatives were considered to resolve the operability concems. This design change was selected as the preferred attemative because it has the lowest cost and provides the greatest benefit of improved valve reliability.

The 1G33-F040 valve was equipped with a Limitorqea SMB-00-10 operator with an overall actuator gear ratio (OAR) of 46.90:1. The design change increased the OAR to 82.00:1. This was accomplished by replacing the motor pinion and worm shaft pinion I gears. This enables the operator to provide the required torque and thrust to operate l the valve under all postulated operating conditions.

The net effect of the gear set change increases the 1G33-F040 stroke time from approximately 21 seconds to approximately 39 seconds. This new stroke time is l

outside of the standard operating time range for a motor operated gate valve. A note is I being added to UFSAR Table 6.2-21 specifying the approximate operating time for the 1G33-F040 valve.

Revision to UFSAR Table 6.2-21 for Exempt Chance E01-1-9500346 UFSAR Table 6.2-21 Sheets 1 and 24 include an editorial change to reflect a valve disc vent hole in the 1E12-F008 valve. Exempt Change E01-1-9500346 drilled a 1/4" vent hole in tne upstream (reactor recirculation) side of the valve disc. The purpose of the hole is to prevent pressure or hydraulic locking of the valve.

Update of UFSAR for Motor Operated Valve Thermal Overload Settinas UFSAR Section 6.3.2.2.13 is revised to indicate that the thermal overloads for the Hydrogen Recombiner (HG) system MOVs are not required to be bypassed under accident conditions, and to arovide the design bases for their trip setpoints. UFSAR Section 8.3.1 is revised to c elete redundant information, and to refer to 6.3.2.2.13 for information on MOV thermal overload circuit design. Revision to UFSAR Appendix B, Conformance to Regulatory Guides UFSAR Appendix B is revisad to reflect license amendments No.109 and 94 for Unit 1 and 2, respectively. The UFSAR change incorporates Regulatory Guide 1.9 Revision 3, and exceptions that LaSalle has taken to the Regulatory Guide.

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Atta:hment A UFSAR R:vizi:n 12 Updcte Summ:ry cf Ch nge3 .

Revision to UFSAR Table 3.8-1. Containment Penetrations.

UFSAR Table 3.8-1 is revised to reflect present plant design. It includes the latest information from the Containment Penetration Schedule Drawings (Mechanical, Electrical, instrument), Electrical Installation Drawings (Reactor Building), and UFSAR Table 6.2-21 (summary of lines penetrating the primary containment).

l Deletion of References to UFSAR Section 15.B The references to UFSAR Section 15.B are deleted in Sections 15.1,15.2,15.4, and 15.6. UFSAR Section 15.B was previously deleted.

Revision to UFSAR Section 2.3.3.1. Description of the Meteorolooical Tower .

The UFSAR is amended to state that the tower doesn't meet the siting criteria of l Regulatory Guide 1.23 and ANSI /ANS 2.5 (1984) for the 10 meter wind direction and  !

wind speed measurements.

1 Revision to UFSAR Section 6.2 to Reflect Revision 20 to LTS-300-5. Local Leak Rate T_est (LLRT) 0.6 L, Accountability Procram The LLRT program incorporates Option B of 10CFR50 Appendix J as we!! as associated regulatory and technical guidelines. Main Steam isolation Valve allowable leakage is increased per an approved licensing amendment for the Technical Specifications. Incorporate The ECCS Relief Valves' inboard / containment side flanges are incorporated in the program. Valves 1E51-F357. 2E51-F091, and 1E32-F001 A/E/J/N are deleted from the LLRT program.

Revision to UFSAR Table 8.3-2 due to Diesel Generator 1 A Differential Relav Replacement. Component Replacement C01-1-94-007-F The design change replaced the DG-1 A differential relay 1487-DG008. The previous I Basler type PRC-130 differential relay is obsolete. Parts and repair services are no longer available. The replacement relay is an ABBAVestinghouse type SA-1, model no.

290B225A10 differential relay. The new relay performs the same function as the previous relay and meets or exceeds the original equipment specifications.  ;

l UFSAR Table 8.3-2 is affected by this replacement, since the table lists the relay type i for the generator differential relay. However, instead of revising the table to identify the type of the replacement relay, the change consists of replacing the relay type with a note that refers the reader to the O-List to obtain the relay manufacturer and model number.

l l

Attachment A

., UFSAR R; vision 12 Updat]

Summ:ry of Ch:nges Chanae to UFSAR Table 8.3-2 to reflect Diesel Generator 1 A Reverse Power Relav Replacement. Exempt Chance E01-1-94-960-B The previous reverse power relay, Basler type PRP-110, was replaced due to '

obsolescence. Parts and repair services were no longer available for the relay. The replacement relay is a GE type ICW, model no.12lCW51 A2A, directional power relay.

The replacement relay performs the same function as the previous relay and meets or exceeds the original equipment specifications. UFSAR Table 8.3-2 is affected by this replacement, since the table lists the relay type for the reverse power relay. However, instead of revising the table to identify the type of the replacement relay, the change  ;

consists of replacing the relay type with a note that refers the reader to the Q-List to '

obtain the relay manufacturer and model number.

Update to UFSAR Chapters 9.10. and 11 Following several separate reviews of UFSAR chapters 9,10, and 11, discrepancies in i the following subsections are revised:

9.2.2.2, Service Water System Description 11.2.1.7.8, Refueling and Maintenance Outages 11.2.1.9.1, Normal Operations 11.2.1.10.b, Tank Level Control 11.2.1.10.c, Tank Level Control 11.2.2, Radwaste System Description '

11.2.2.4, Laundry Waste Subsystem -

11.2.2.5.5, Concentrator Waste Tanks 11.2.2.8, Control and Instrumentation Table 11.2-3 sheet 2, Liquid Radwaste System Components and Design Parameters 11.4.1.3, Types of Waste Table 11.4-2, Expected and Design Annual Volumes of Solid Waste Management System Output 11.2.2.5, Sludge Subsystems i 11.2.2.5.1, Spent Resin Tank 11.2.3.1, Criteria for Recycling 11.4.1.1, Solid Waste Management Power Generation Design Basis 11.4.1.2, Safety Design Basis i 11.4.2.2, Decanting Station '

11.4.2.3, Drumming Station 11.4.2.4, Drum Handling Equipment 11.4.2.5, Smear Test and Label Station Table 11.4-1, Solid Waste Management System Equipment and Storage Design Capabilities'-Radwaste Building ,

Figure 11.4-1, Radwaste Disposal System Flow Diagram j l

9.3.3.5, Floor and Equipment Drain System, Instrumentation Application '

10.4.6.5, Condensate Polisher System, Instrumentation Application 11.2.1.7.4, Condenser Tube Leakage ,

11.2.2.3, Chemical Waste Subsystem '

11.2.3.2, Release Assumptions l Table 11.2-6, Maximum and Expected inputs to Radwaste Systems i Table 11.4-2, Expected and Design Annual Volumes of (Units 1 & 2) Solid Waste Management System Output l

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Attachment A UFSAR R:visi:n 12 Update

  • Summ ry cf Ch:nge3 Revision to UFSAR Table 6.2-21 for Pressure Relief Hole in RHR Suction Coolino Outboard Isolation Valve 1E12-F008 Upstream Disc, Exemot Chance E01-1-9500346 The design change drilled a 1/4" vent hole in the upstream (reactor recirculation system) side disc of the 1E12-F008 valve. The purpose of the hole is to prevent pressure or hydraulic locking of the valve.

UFSAR Table 6.2-21, Summary of Lines Penetrating the Primary Containment, is revised to reflect that the 1E12-F008 valve has a vent hole drilled in its reactor / upstream side disc.

UFSAR Update for Diesel Generator 1 A Neutral Ground Relav Replacement Exempt Chanae E01-1-94-960-A The exempt change revised the DG-1 A neutral ground fault trip circuit. The previous neutral ground relay, a Basler type PRV-120 overvoltage relay, was replaced due to obsolescence. Parts and repair services are no longer available. The replacement -

voltage relay is a GE type IAV, model no.12iAV51D1 A. The new relay performs the same function and meets or exceeds the original equipment specifications.

UFSAR Table 8.3-2 is affected by this replacement, since the table lists the rolay type for the reverse power relay. However, instead of revising the table to identify the type of the replacement relay, the change consists of replacing the relay type with a note that refers the reader to the O-List to obtain the relay manufacturer and model number.

UFSAR Update for Diesel Generator 0 Neutral Ground Relav Replacement Exemot Chanae E01-0-94-960-D The exempt change replaced the DG-1 A neutral ground relay. The previous neutral ground relay, a Basler type PRV-120 overvoltage relay, was re alaced due to obsolescence. Parts and repair services are no longer availab e. The replacement voltage relay is a GE type IAV, model no.12lAV51D1 A. The new relay perferms the same function and meets or exceeas the original equipment specifications.

UFSAR Table 8.3-2 is affected by this replacement, since the table lists the relay type for the reverse power relay. However, instead of revising the table to identify the type of the replacement relay, the change consists of replacing the relay type with a note -

that refers the reader to the O-List to obtain the relay manufacturer and model number.

UFSAR Update for Diesel Generator 3 Differential Relav Replacement oer Exempt

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Chanae C01-0-94-007-J The exempt change revised the 0 DG differential relay. The Basler type PRC-130 relay was replaced due to obsolescence. Parts and repair services are no longer available.

The replacement is an ABB/ Westinghouse type SA-1, model no. 2908225A10 i differential relay. The new relay performs the same function and meets or exceeds the original equipment specifications.

UFSAR Table 8.3-2 is affected by this replacement, since the table lists the relay type for the reverse power relay. However, instead of revising the table to identify the type of the replacement relay, the change consists of replacing the relay type with a note that refers the reader to the O-List to obtain the relay manufacturer and model number.

1

Attachment A UFSAR Revi:lzn 12 Update -

Summ ry c'Ch:nges Motor Operated Valve 1B21-F019 Valve and Operator Replacement. Exempt Chanae E01-1-9400428 The design change replaced the flex-wedge gate valve with a double disc parallel slide gate valve manufactured by the Anchor / Darling Valve Company. The previous imitorque SMB-000-5 operator for valve 1B21-F019 was replaced with a Limitorque SMB-00-15 operator.

The valve was replaced because the hardfacing on its seats have been almost completely removed by extensive machining.1 he machining was required to refinish the seats uo that local leak rate test (LLRT) acceptance criteria could be met.

The valve operator was replaced because it was only marginally adequate to open and close the valve under all postulated operating conditions. The new operator has been selected to provide adequate design margin between the operator's capability and operational requirements.

The new valves have the addition of a vent hole in the reactor side disc. The intent of the vent hole is to eliminate the potential for pressure locking of the valve discs. With the vent hole installed, the valve will still seal effectively because the vented side of the valve is always ex aosed to a higher pressure. The higher pressure on the back side of the non-vented va ve disc will force the disc into its seat and provide flow shut-off.

UFSAR Table 6.2-21 is revised to indicate the installation of the vent hole in the reactor side disc.

UFSAR Update for Diesel Generator 0 Overcurrent Relav Replacement per Component Replacement C01-0-94-007-l The design change replaced the 0 Diesel Generator Overcurrent relay. The previous Basler type PRC-110-108 relay was replaced due to obsolescence. The rep acement is an ABB/ Westinghouse type CO-6, model no. 264C898A05 relay. The new relay performs the same function and meets or exceeds the original equipment specifications.

UFSAR Table 8.3-2 is affected by this replacement, since the table lists the relay type for the reverse power relay. However, instead of revising the table to identify the type of the replacement relay, the change consists of replacing the relay type with a note that refers the reader to the O-List to obtain the relay manufacturer and model number.

UFSAR Update oer Installation of Circulatino Water Hvoochlorite and Bromide Feeds.

Exemot Chanae E01-1-9500157 The design change installed a Chemical Feed skid, having air-operated pumps and valves, and associated instruments and controls, on an existing concrete pad in the Chemical Feed Building adjacent to the Lake Screen House. T he skid injects a combination of sodium hy 30 chlorite and sodium bromide (blocide) into the Circulating

  • Water (CW) system to rec uce micro-biological corrosion. This helps to extend the life of condenser tubes and reduces the scope of condenser tube cleaning during outages.

i Attachment A UFSAR Revi:lon 12 Update Summ2ry ef Ch:ng:s UFSAR Sections 9.2.12 (Chemical Feed System) and 10.4.5.2 (CW System Description) are revised to include the blocide injection into the CW System. .

UFSAR Update oer Drawino Chanae Reauest (DCR)94-030. Removal of Abandoned Pipe Whio Restraint 1R-50 The design change removed the abandoned pipe whip restraint. UFSAR Table 3.6-3 and Figure 3.6-14 are accordingly revised.

Update to UFSAR Subsection 9.1.3.1.1 The wording in Section 9.1.3.1.1 associated with the fuel pool cooling system heat removal capability was corrected. Service water temperature pertains to fuel pool cooling capacity, not Maximum Normal Heat Losd. The change corrected the locatbn of the wording. The addition of the service water temperature assumed in the heat removal calculation for fuel pool cooling heat exchangers was incorrectly placed In the sentence conceming the Maximum Normal Heat Load to be removed from the fuel pool.

i UFSAR Update due to the Chanaeout of Intemal Parts for Primary Containment .

Ventilation Chillers per Alternate Replacement L-1996-48-0 The Alternate Replacement changed out the internal parts for the primary containment l 400 ton chillers to facilitate the change from refrigerant R-12 to R-134A. The I manufacture and use of R-12 is being phased out by the Clean Air Act of 1990. The i retrofitting of the machines with the non-CFC based R-134 refrigerant allows for future l continued use of the machines. ,

i UFSAR Section 9.2.9.2 is revised to reflect the Altemate Replacement. I UFSAR Update per Desian Chanae Packaae (DCP) 9400255. Replacement of Motor Operator and Sprino Pack on the 1E12-F017A Drywell Sorav Isolation Valve I

The subject valve is a 16" Anchor / Darling flex-wedge gate valve. The operator had an overall actuator ratio of 96.2:1. The design change replaced the valve's yoke and motor  ;

operator. The Limitorque SMB-0 motor operator previously installed on valve 1E12-F017A was replaced with Limitorque SMB-1 operator, having an overall actuator gear ratio of 124.1:1. The valve's molded case circuit breaker and thermal overload relay ,

were reset and replaced, respectively, to support the electrical requirements of a previously installed 25 foot-pound motor.

The operator change increased the valve's stroke time from approximately 75 seconds to approximately 95 seconds. This new stroke times is outside the standard operating time range for a motor operated gate valve. A note is added to Table 6.2-21 of the UFSAR specifying the approximate operating time for the Unit 1 RHR 17A valve.

The larger motor operator is required to inc:aase the available valve operator thrust.

This requirement is the result of motor operator design reviews performed in response to USNRC Generic Letter 89-10.

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Attachment A UFSAR R;vi:l:n 12 Update e Summ:ry cf Ch:nges UFSAR Update to reflect Desian Chance Packaae (DCP) 9400254. Replacement of Motor Operator and Sprina Pack on the 1E12-F017B Drywell Sprav ! solation Valve The subject valve is a 16" Anchor / Darling flex-wedge gate valve. The design change {

replaced the valve's yoke and motor operator. The Limitorque SMB-0 motor operator formerly installed on valve 1E12-F017B was replaced with a Limitorque SMB-1 operator l having an overall actuator gear ratio of 124.1:1. The valve's thermal overload relays j were replaced and its molded case circuit breaker was reset. l The operator change increased the valve's stroke time from approximately 75 seconds to approximately 95 seconds., This new stroke times is outside the standard operating time range for a motor operated gate valve. A note is added to Table 6.2-21 of the UFSAR specifying the approximate operating time for the Unit 1 RHR 17A valve.

UFSAR Update to reflect Modification M01-1-92-006. Control Rod Drive (CRD)

Recirculation Line Addition and Check Valve Replacement The Unit 1 CRD system previously contained a small recirculation bypass line (1-inch NPS) for each pump. The flow rate through the recirculation bypass line was limited to approximately 20 gpm by the restriction orifice (C11-D007A&B) located in this line. This flow rate is sufficient to prevent pum p over-heating and abnormal wear during normally expected, short duration, minimum f,ow rate, operating conditions. During refueling periods, however, there is a period of up to eight weeks when a higher minimum flow requirement specified by the pump manufacturer is not satisfied. During these operating penods the CRD system flow demand is greatly reduced. These operating ,

periods have resulted in a considerable amount of wear, damage, and degradation in pump performance to the point where pump replacement is being performed.

The modification installed a two-inch diameter recirculation line containing a Severe Service (Manual) Control Valve. This modificatir.,n provides additional flow aaths for the -

CRD pumps (1C11-C001 A&B) for operation during a unit outage when fue;is in the reactor but when the CRD system flow demand is greatly reduced. This recirculation line will provide a means of maintaining the pump manufacturer's recommended minimum flow during this reduced flow condition.

The Unit 1 CRD Pump discharge stop-check valves (1C11-F014A&B) were also replaced. The previous valves were free-floating disc type stop-check valves installed in a vertical run of piping. These valves may not have closed properly in reverse flow

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due to the vertical orientation of the valves. Spring loaded type stop-check valves were {

installed as a replacement to ensure closure on reverse flow. UFSAR Section 4.6 is l revised to reflect the recirculation line for the CRD pumps. l UFSAR Update to reflect Unit 1 Motor Operated Valve (MOV) 1821-F016 Valve and Operator Replacement per Desian Chance Packaae (DCP) 9400429 l

l The design change replaced the flex-wedge gate of MOV 1B21-F016 with ocuble disc I 3arallel slide gate valves manufactured by the Anchor / Darling Valve C ampany. The l 3CP also replaced the previous Limitorque SMB-000-5 operator with a Limitorque SMB-0015 operator. I The valve was replaced because the hardfacing on the valve's seats were almost completely removed by extensive machining. The machining was required to refinish the seats so that local leak rate test (LLRT) acceptance criteria could be met. j

1 Attachinent A UFSAR R vi i:n 12 Update J q

Summ ry cf Ch:nges  ;

The valve's operator was replaced because the previous operator was only marginally ,

adequate to open and close the valve under all postulated operating conditions. The new operator was selected to provide adequate design margin between the operator's capab lity and operational requirements.

A vent hole was added in the reactor side disc of the new valve. The vent hole is I intended to eliminate the potential for pressure locking of the valve's discs. With the l vent hole installed, the valve will still seal effectively because the vented side of the valves is always exposed to a higher pressure. The higher pressure on the back side of the non-vented valves discs will force the discs into their seats and provide flow shut-off.

UFSAR Section 6.2 (Table 6.2-21) is revised to reflect the design change associated l with valve 1821-F016. I l

UFSAR Update to reflect Exempt Chance E01-2-9500156 (Desian Chanae Packaae  ;

9500156). Install Circulatina Water Hypochlorite and Bromide Feeds l Micro-biological corrosion has been identified as the main reason that causes the pitting and subsequent tube plugging of condenser tubes and lost condenser efficiency. This l corrosion is due to sulfate reducing bacteria producing sulfuric acid that attacks the '

tubes. Injection of the combined Sodium Hypochlorite and Sodium Bromide (Biocide) into the Circulation Water will reduce this bio-activity. This will help to extend the life of condenser tubes and reduce the tube cleaning task during outages. Polyacrylate was previously injected into the Circulating Water to minimize silting and scalinci problems (not the bio-fouling 3roblem) in the main condensers. The desiro change installed a Chemical Feed skic to inject to Unit 2, consisting of air-operated pumps and valves, and associated instruments and controls in the Chemical Feed Euilding adjacent to the Lake Screen House.

l UFSAR Sections 9.2 and 10.4 are revised to reflect the installation of the chemical injection feeds for Unit 2.

i UFSAR Update Desian Chanae Packaae 9400257. Replacement of Motor Operator and Sprina Pack on the 1E12-F016A Drvwell Sorav Isolation Valve The subject valve is a 16" Anchor / Darling flex-wedge gate valve. The design change replaced the valve's yoke and motor operator. The Limitorque SMB-0 motor operator installed on valve 1E12-F016A was replaced with a Limitorque SMB-1 operator with an overall actuator gear ratio of 124.1:1. The valve's thermal overload relays were replaced and its molded case circuit breaker was reset.

The operator change increased the valve's stroke time from approximately 75 seconds to approximately 95 seconds. This new stroke times is outside the standard operating time range for a motor operated gate valve. A note is added to Table 6.2-21 of the UFSAR specifying the approximate operating time for the Unit 1 RHR 16A valve.

Attachment A UFSAR RLvision 12 Updat] 9 SummIry of Chr.nges UFSAR Update for Diesel Generator 1 A Overcurrent Relav Replacement per Component Replacement C01-1-94-007-E The design change replaced the 1 A Diesel Generator Overcurrent relay. The previous Basler type PRC-110-108 relay was replaced due to obsolescence. The replacement relay is an ABB/ Westinghouse type CO-6, model no. 264C898A05 relay. The new relay performs the same function and meets or exceeds the original equipment specifications.

UFSAR Table 8.3-2 is affected by this replacement, since the table lists the relay type for the reverse power relay. However, instead of revising the table to identify the type of the replacement relay, the change consists of replacing the relay type with a note that refers the reader to the Q-List to obtain the relay manufacturer and model number.

1 UFSAR Update for Continuous Operation of the Post LOCA H2/02 Monitorina Panels ,

UFSAR Section 6.2.4.2.2, Table 6.2-21 and Subsection 7.5.2.2.2.1 are revised to reflect the use of the panels for continuous sampling of primary containment oxygen concentration during normal operation. The post-accident design function of the panels is maintained by adhering to vendor recommendations and EQ requirements.

Update to UFSAR Section H.4.2.57 (Safe Shutdown Analysis for Unit 1 and 2 Fire Zones SC11) and Associated Tables UFSAR Section H.4.2.57 and associated tables are revised to reflect the new safe shutdown path that has been established for use in the event of a fire in either Unit 1 Fire Zone SC11 or Unit 2 Fire Zone SC11. UFSAR Tables H.4-50, H.4-51, H.4-55, H.4- l

56. H.4-57, H.4-59, H.4-60, H.4-62, H.4-64, H.4-65, and H.4-66 are revised to reflect l the safe shutdown equipment and cabling.

Update to UFSAR Subsection 9.2.2.2 for Service Water (WS) System Strainer Mesh Size l

UFSAR Section 9.2.2.2 was revised to indicate that the WS strainers will remove  ;

suspended matter which is greater than 1/8"in size. This changes the previous text which states that matter is greater than 1/16" is strained out.

UFSAR Update to Subsection G.2.2.1.3.1 for Bypassino Reactor Recirculation Pumo Cavitation Interlocks UFSAR Subsection G.2.2.1.3.1 is revised to describe the use of administrative!y controlled keylock switches to bypass RR pump cavitation interlocks for short periods of time while testing the pumps.

UFSAR Update per Unit 1 Desian Chanae Packaaes (DCP) 9500481. Relocate Main Steam Tunnel Thermocouples, and 9500482. Main Steam Tunnel Leak Detection Loaic Chance DCP 9500481 relocated ten thermocouples in the main steam tunnel (MST) leak detection system, and changed their high differential temperature setpoints.

Attachment A UFSAR R:: vision 12 Updat]

Summ:ry cf Chrnge3 DCP 9500482 made two significant changes to the MST leak detection system. First, l permanent jurnpe rs were installed to eliminate the Group 1 Main Steam Line isolation function associated with high ambient temperature in the MST. Secondly, key-lock bypass switches 'nere installed in the control room to allow bypassing the Group 1 isolation logic asacciated with high differential temperature in the MST. The switches replace the temp orary jumpers previously used.

i These design changes significantly reduce tne exposure to inadvertent reactor scrams l' related to the MST Ieak detection system response to Reactor Building Ventilation System (VR) oporating transients. These DCPs were incorporated for licensing amendment No.111 to Unit 1 license NPF-11.

UFSAR Chapter.s 5,7, and 7.A are revised to reflect these DCPs. The UFSAR changes reflect Unit 2 DCPs 9500487 (Relocate Main Steam Tunnel Thermocouples),

and 9500488 (Main Steam Tunnel Leak Detection Logic Change), which are installed and presently at testing.

UFSAR Update 1o reflect Unit 1 Main Steam Isolation Valve (MSIV) Leakaae Control System (LCS) Abandonment (Phase !) per Desian Chanae Packaae (DCP) 9500167 The DCP functicinally eliminated the Unit 1 LCS during the Unit 1 seventh refuel outage (L1R07). The scope consisted of physically isolating and abandoning the LCS in place, and electrically disabling the LCS instrumentation. This work was associated with the approval of licerising amendment No.112 to Unit 1 license NPF-11.

UFSAR sections 1.0,1.2, 3.2, 5.4, 6.0, 6.1, 6.2, 6.4, 6.7, 7.3,10.3,15.0,15.6, and Appendix H (pa t H.3) are revised. New section 6.8 is introduced.

UFSAR Update to reflect the storaae of Siemens Power Corporation (SPC) Fuelin the new fuel vault E.nd spent fuel pools UFSAR Subsections 3.1.2,4.3.2,9.1.1, and 9.1.2 are revised, and new UFSAR Reference subsection 9.1.5 is added to reflect the storage of Siemens fuel in the vault and pools. The Siemens fuel design is compatible with fuel handling equipment, as well as the vault and pool storage areas.

Analyses demonstrate that the higher enrichment SPC fuel may be safely stored in the new fuel vault and the spent fuel pools. Effects on the Unit 2 boraflex racks are independent of fuel design.

Update to UFSAR Section 7.7 and Fiaure 7.6-3 UFSAR Section 7.7 and Figure 7.6-3 are revised to reflect the actual plant configurat,on of the sourco range monitors (SRMs) and the intermediate range monitors (IRMs). The difference between alant configuration and the previous UFSAR description were evaluated as not sa"ety significant.

Clarification of UFSAR Resultina from Electrical Separation Desian Basis Document (DBD) Precaration UFSAR Subsections 7.1.3.4.3,8.3.1.4.2, and 8.3.3.1 were revised following the preparation of the subject DBD.

i Atta hment A UFSAR Revizion 12 Upd:ta

  • Summ rycf Chrnges Clarification to the UFSAR reaardina Emeraency Core Coolina System / Core Standbv -

Coolina System (ECCS/CSCS) Area Coolina UFSAR Subsection 9.4.5.3 and Table 9.4-20 were revised in order to clarify ECCS area temperature indication on the main control board.

Update to UFSAR Sections 9.1.13.1. and 13.2 to reflect Revisions to Administrative Procedures Administrative Procedures LAP-200-1 Revision 32, Operating Department Organization; LAP-200-3 Revision 28, Shift Change; LAP-200-5 Revision 7, Transfer of Control Room Command Functions Between the Control Room Unit Supervisors, The )

i Shift Manager and/or WCC SRO; LAP-200-10 Revision 3, NRC Operator License l Active Status Maintenance and Reactivation; and LAP-1600-2 Revision 51, Conduct of Operations, consisted of changing the title of " Shift Engineer" to Shift Mananer; the requirement for a Field Supennsor to hold an SRO license was removed; reierences to the Field Suoervisor fulfilling the minimum staffing positions were deleted; references to licensed Field Supervisor to were changed to Work Control Center (WCC) SRO; The reference to the Control Room Supervisor was changed to the Unit Supervisor. -

UFSAR Sections 9.1,13.1, and 13.2 were correspondingly revised.  !

These changes were done to make current plant staffing titles consistent, in order to remove con"usion related to what positions are qualified to fulfill the minimum manning )

requirements of the Technical Specifications.  !

UFSAR Revision to reflect Desian Chanae Packaae (DCP) 9600158 The DCP installed two additional isolation valves and a leakoff line on the fire protection supply header 0FPD2A-2.0" for the Technical Support Center filter train OVS11S charcoal adsorber. UFSAR Subsection H.3.9.7 is accordingly revised to reflect the DCP.

i UFSAR Update to Correct Editorial Errors in Section 9.4 Two errors which occurred during UFSAR Revisions 1 and 4 are corrected. In Section 9.4.1.2.2.b, the description of the auxiliary electric equipment room pressure is changed from "1/16 p 3/8" to "1/16 s p s 3/8". The second change adds " isolation on high -

radiation signals. The fuel pool exhaust ducts for Units 1 and 2 are required" in section 9.4.2.1.1.b.

UFSAR Update for Weld Repairs to Fuel Pool Emeraency Makeup Pumps 1FCO3PA and 2FC03PB The weld repairs were made to restore the original minimum wall thickness. Then a stainless steel overlay was applied in high corrosion areas. The weld repairs were performed in accordar'ce with Section XI of the ASME Boiler and Pressure Vessel Code. UFSAR Section 9.2.1.2 is revised to reflect the use of stainless steelin repairing the carbon steel casings.

Att:chment A

  • UFSAR Rsvizi:n 12 Upd ta Summiry cf Chrnge3 UFSAR Revision for Acceptance of Siemens Power Corporation (SPC) Powerolex Core Monitorino Code The General Electric (GE) Core Monitoring Code (CMC) is being replaced with the SPC Powerplex core monitonng code due to the transition to SPC fuel. Powerplex is the code which Siemens uses to monitor core thermal limits, and is NRC approved for monitoring core thermal limits. Powerplex will be installed for the Unit 2 Cycle 8 core loading, which consists of Siemens and GE fuel assemblies. The code will also be used for Unit 1 startup following the L1F35 forced outage.

UFSAR Subsections 7.7.7.1 and 7.7.7.2 are revised to reflect the use of the Powerplex core monitoring code.

UFSAR Revision for Siemens Power Corporation (SPC) Misloaded Bundle Analysis UFSAR Sections 4.4.2 and 15.4 are revised to reflect the Siemens Power Corporation (SPC) misloaded bundle analysis. The initial core anal no exposure, this section is outdated and unnecessary.ysis involves Other changes are a fuel associated reload w with the analysis of misoriented and mislocation of Siemens fuel bundles.

UFSAR Update to Reflect the Updated Low Power Rod Withdrawal Error Analysis UFSAR Subsection 15.4.1.2 describes the low power Rod Withdrawal Error (RWE event, its consequences, and the setpoints assumed in the analysis. Credit is take)n fo the Average Power Range Monitor (APRM) scram in the startup mode at 15% rated core thermal power (RCTP). Table 7.3-4 lists the trip setpoint as 15%, the allowable as 0% RCTP, and the analytical limit as 25% RCTP. The change is based on a General Electric analysis dispositioning this event for a setpoint of 25% RCTP. UFSAR Table 7.3-4 and Section 15.4.1.2 are revised to reflect an allowable scram value of 20%

RCTP.' ,

UFSAR Update for the Evaluation of Vessel Intemals and Fuel Loadinas for Siemens Fuel UFSAR Sections 3.0,3.7, and 3.9 are revised to incorporate the vesselintemals and fuelloadings for the introduction of Siemens Power Corporation (SPC) ATRIUM-98 fuel. Siemens evaluated seismic /LOCA loadings on the fuel and intemals, performed a bundle lift analysis, and evaluated structural deformation during a LOCA, with regards i to control blade insertability.

Correction to Tvnocraohical Error in UFSAR Section 11.3.2.1.1.11 A typographical error in UFSAR Section 11.3.2.1.1.11, Leakage cf Radioactive Gases, was corrected. The word " steam"in the context of "...using bellows steam seals"... is revised to "...using bellows stem saals...".

UFSAR Update to Correct Tvooaraphical Error in UFSAR Table 6 2-21 Sheet 4A Associated With Containment Penevation M-91 UFSAR Table 6.2 21 Sheet 4A was rtvised to correct a tyaographical error associated with containment penetration M-91. Ralief valve 1(2)E12 :020 is identified as the primary containment isolation valve lccated outside containment. Valve 1(2)E12-F020 is corrected to 1(2)E12-F030.

I

Attachment A UFSAR R;vi:lon 12 Update #

Cumm:ry of Ch nges UFSAR Update to reflect Unit Auxiliary Transformer (UAT) 141 CO-2. CO-7 & ITH Protective Relav Addition. Desian Chance Packaae (DCP) 9300071 (Modification M01-1-93-019)

The DCP modified the subject relay protection to the level required by the company standard specified in System Planning Department Memo 4-1. The following overcurrent relay additions were required:

A transformer low voltage (LV) lead differential scheme (CO-2 relays, ground differential), using high speed overcurrent relays, were installed as primary protection for phase to ground faults in the transformer LV windings or leads.

A time overcurrent relay (CO-7 relay, transformer low voltage breaker back-up) was installed to provide back-up protection in the event that the Unit Auxiliary Transformer LV breaker fails to interrupt for a LV bus multiphase fault, it also provides back-up protection for transformer internal or LV lead multiphase faults.

The transformers previously used differential relays which could saturate for heavy multiple intemal faults. To insure high speed operation for severe saturation, a solid state instantaneous overcurrent (IT-1) relay is provided for high speed overcurrent back-up protection. The ITH relay addition will arovide back-up protection to mitigate transformer damage due to heavy intema faults. -

The modification also installed a new panel 1PA18J, located in the Unit 1 Auxiliary Electric Equipment Room (AEER). UFSAR Figure H.4-1 is accordingly revised.

Diesel Generator 2A Overcurrent Relav Replacement per Component Replacement l C01-2-94-006-D. and UFSAR Update The design change replaced the 2A Diesel Generator Overcurrent relays 2451-DG011 A l

and B. The previous Basler type PRC-110-108 relays were replaced due to obsolescence. The replacement relay is an ABB/ Westinghouse type CO-6, model no.

264C898A05 relay. The new relays perform the same function and meet or exceed the original equipment specifications.

i UFSAR Table 8.3-2 is affected by this replacement, since the table lists the relay type l for the reverse power relay. However, instcad of revising the table to identify the type l of the replacement relay, the change consists of replacing the relay type with a note that refers the reader to the Q-List to obtain the relay manufacturer and model number.

Diesel Generator 2A Ground Relav Replacement per Exempt Chance E01-2-94-960E, and UFSAR Update The exempt change replaced DG-2A neutral ground relay 2459-DG012. The previous neutral ground relay, a Basler type PRV-120 ovelvoltage relay, was replaced due to l

obsolescence. Parts and repair services are no longer available. The replacement )

voltage relay is a GE type IAV, model no.12iAV51D1 A. The new relay performs the same function and meets or exceeds the original equipment specifications.

A;ta:hment A UFSAR R:,vi l::n 12 Update 6

Summ:ry cf Ch:ng:s UFSAR Table 8.3-2 is affected by this replacement, since the table lists the relay type for the reverse power relay. However, instead of revising the table to identify the type of the replacement relay, the change consists of replacing the relay type with a note that refers the reader to the Q-List to obtain the relay manufacturer and model number.

Unit 2 Diesel Generator A (DG 2A) Reverse Power Relav Replacement and UFSAR Chance. Exempt Chance E01-2-94-960-F and UFSAR Update {

l The exempt change replaced DG 2A reverse power relay 2432-DG009. The previous reverse power relay, Basler type PRP-110, was replaced due to obsolescence, and parts and repair services were no longer av&ilable for the relay. The replacement relay is a GE type ICW, model no.12lCW51 A2A, directional power relay. The new relay performs the same function as the previous relay and meets or exceeds the original equipment specifications.

UFSAR Table 8.3-2 is being revised since it lists the type of reverse power relay.

However, instead of revising this table to identify the type of the replacement relay, the proposed change replaces the relay type with a note in Table 8.3-2 that refers the reader to the Q-List to obtain the relay manufacturer and model number.

Storace of Radioactive Waste / Materials in Out Buildinas, and UFSAR Chanae i An evaluation was performed to assess the impact of storing radioactive waste and/or materialin any of the station's outbuildings. The evaluation does not apply to the interim storage of radioactive waste (i.e. the temporar packages pending resolution of disposal site issues). y storage of radioactive waste !l UFSAR Subsection 11.4.2.7 is revised to reflect the subject storage in various station outbuildings.

Update of UFSAR Associated with the implementation of Hydrocen Water Chemistry on LaSalle Unit 1. Desian Chanae Packaae (DCP) 9500085 j

Hydrogen Water Chemistry (HWC) is implemented at LaSalle County Station Unit 1 in .

1 order to reduce intergranular stress corrosion cracking (IGSCC) rates of reactor recirculation piping and reactor vessel lower intemals. Hydrogen injection into the i reactor condensate is the primary means of suppressing the concentration of free dissolved oxygen in reactor water.

UFSAR Sections 7.7 and 11.3 are revised to reflect the implementation of HWC on Unit 1.

UFSAR Update due to LaSalle Special Procedure LLP-97-007 Revision 1. Addina Carbon (Charcoal) To An Ecuipment Drain Demineralizer UFSAR Subsection 11.2.2.5 is revised to reflect the use of charcoal in the spent resin tank to reflect the use of procedure LLP-97-007 Revision 1. The procedure provides the steps necessary to add carbon (charcoal) to Waste Mixed Bed Demineralizer 1(2)WE01D. The charcoal overlay serves to protect the ion exchange resins from organic fouling.

h

Attachment A UFSAR Revi:lon 12 Upd:t]  :

)

Summ:ry cf Ch:nge3 i

l Evaluation of the Main Steam Tunnel delta-T Leak Detection Thermocouple Cable Electrical Separation. and UFSAR Chance The main steam tunnel delta-T leak detection circuit is designed to detect a main steam tunnel leak of 100 gpm. The leak detection main steam tunnel delta-T thermocouple cables, although functionally redundant, are assigned to the same electrical division and are not separated (existing condition). The cable routing deviates from the description of electrical separation in UFSAR Chapter 8. The UFSAR states that Class 1E components with redundant safety functions are assigned to separate divisions.

, Based on assignments to separate electrical divisions, the cables servicing redundant -

components would be routed in separate raceways.

Based on analysis, electrical separation of the thermocouple cables is not required to ensure functionality of the main steam tunnel delta-T circuit. The routing of the thermocouple cables in the same raceway does not affect the operability of the circuit or the safety margin.

UFSAR Section 8.3 and Appendix B are revised to reflect the evaluation of the as-built configuration.

Unitization of LaSalle County Nuclear Station Oraanization The organizational functions and responsibilities of the Operations, Maintenance, and Work Control organizations at LaSalle County Station were unitized. Unitizing these areas created a " Plant General Manager". The unitized organization's respective department heads for the Operations, Maintenance, and Work Control departments report direct:y to the Plant General Manager.

Unitization provided additional management focus to facilitate performance improvement of both LaSalle units. UFSAR Sections 9.5,11.5,12.1,13.1,13.2,13.5, 13.6, and Appendix L are revised to reflect various titles and responsibilities unique to the unitized organization.

_ Revision to UFSAR Subsection 3.7.3.2.2 to be Consistent with Paraaraoh 6.6.5 of IEEE-344-1975 UFSAR subsection 3.7.3.2.2 is revised to the make the discussion regarding the duration of seismic qualification tests consistent with that of paragraph 6.6.5 of IEEE-344-1975.

UFSAR update to reflect Procedure LAP-200-3 Revision 29, Shift Chanae The administrative controls specifying the conduct of Shift Change activities were clarified and strengthened by the procedure revision.

Log keeping activities were referenced to the appropriate administrative arocedure and removed from this procedure so that logkeeping expectations are not de"ined within the shift change procedure.

Elimination of Unnecessary log book initialing for the nuclear station operator (NSO) and radwaste operator watchstations were eliminated. Shift tumover attachments are provided to document required reviews.

m

Attachment A

., UFSAR R;vi:1 n 12 Updat] 6 Summ ry cf Ch:nge]

Unit Supervisor panel walkdown checklists were removed to reduce an unnecessary administrative load from the Unit Supervisor position.

)

Shift change direction has been added for the Work Control Center SRO and Shift Technical Advisor positions to provide a general enhancement to the shift change procedure. Changes to the procedure attachments related to shift designations reflect the current Operating Shift Schedule. This change updated the attachments to match the actual schedule.

Minor enhancements included correcting mis-soelled words and separation of lines to i more clearly convey meaning, improve readablity, and enhance procedure quality.

l UFSAR Subsection 13.5.1.3.6 (Procedures for Logbook) was accordingly revised.

gr.SAR Update for Weld Repairs to RHR Service Water Strainer 2E12-D300B Weld repairs to restore the flange mating surface wall thickness on strainer 2E12-D300B were previously completed, but have since been determined to be a design change. The stainless steel weld repair was originally considered a maintenance enhancement to significantly reduce corrosion effects. The subject strainer is safety related and conforms to the ASME Boiler and Pressure Vessel Code, Section ill, Class 3 requirements. The weld repair consisted of machining /grindin strainer mating flanges to remove corrosion, Non-Destructive Examination (NDE),g t welding to restore wall thickness and additional NDE to verify the quality of the welds.

The welding used carbon steel filler material to restore wall thickness. A thin layer of stainless steel metal was added to inhibit corrosion in the high corrosion areas.

Vendor drawings for the affected strainer will be "as-built" to show that carbon steel and stainless steel weld repairs have been made. A statement within the UFSAR Sectiori 9.2.1.2 indicating that the strainers are carbon steel is revised to indicate the strainers are ASME Code Section Ill components. The reference to " carbon steel"is removed.

UFSAR Update due to Replacement of Seismic Monitorina Panel OPA11J oer Desian Chanae Packaae (DCP) 9400128 The seismic monitoring instrumentation in Panel OPA11J (with the exception of the SWP-300 annunciator panel) was replaced with new instrumentation. S the previous seismic monitoring instrumentation are no longer available, and the pare parts for instruments have a history of spurious failures, especially during thunderstorms. This change will improve system reliability and to prevent an extended period of system unavailability due to lack of spare parts in the event of an instrument failure. Relocation of the instrumentation out of the technical specifications to the UFSAR was approved by licensing amendments 117 for Unit 1, and 102 for Unit 2. The relocation is in accordance with Generic Letter 95-10. UFSAR Subsection 3.7.4, Seismic Instrumentation, was correspondingly revised.

T 1 Atta:hment A UFSAR RIvi:lin 12 Upd t] 8 l Summ ry cf Ch:nge3 l

l UFSAR chance to reflect Unit 1 Division 2 Residual Heat Removal- Service Water Keep Fill Cross-Tie. Desian Chance Packaae (DCP) 9600195 The DCP added two cross-ties to Division 2 of the Unit 1 residual heat removal (RHR)-

service water (WS) system to ensure that it is kept filled and pressurized. One cross-tie is from the service water system, the other is from the diesel generator cooling water (DGCW) system.

The cross-tie from WS will keep the RHR-WS system filled during normal operation, l while the cross tie from the DGCW will keep it filled should failure of non-safety-related WS occur.

UFSAR Subsections 7.3.3.3.1,9.2.1.2,9.2.1.5,9.2.2, and 9.2.2.2 are revised to include ,

a discussion of the keep fill for Division 2 RHR-WS, addressing an overview of the keep fill system, interfaces with DGCW, and alarm annunciation.

UFSAR Revision Associated with Procedure LCP-310-33 Revision 3. Samplino At the Jet Pump Flow Transmitters Usino A Beckman Solu Como Conductivity Cell Module The procedure permits the sampling from jet pump #5 flow transmitter 1(2)B21-N034J, and Jet pump #15 flow transmitter 1(2)B21-NO34K with concurrence from the Operations and Chemistry departmen,ts. The, ability to sample at other jet pump sample instrumentation was an option in previous revisions of this procedure. This revision specifically identifies an altemate jet pump sampling location. This procedure strictly applies to the non-calibrated legs of jet pumps #5 and 15. UFSAR Subsection 9.3.2.3 is accordingly revised.

Revision to UFSAR Table 8.3-1 for Auxiliary Electric Eautoment Room (AEER)

Condenser Fan OVE03CA/B UFSAR Table 8.3-1, " Input Loading on 4160 SWGR 141Y,142Y and 242Y", ir, revised to reflect the increase in brake horsepower (BHP) of the AEER Condenser Fan '

OVE03CA/B.

Editorial Chanae to UFSAR Section 15.6.6.5 The last sentence of the second paragraph of UFSAR Subsection 15.6.6.5, Radiological Consequences, is revised to read "A schematic diagram of the leakage path for this accident is shown in Figure 15.6-6". The cunent text states Figure 15.6-19. This correction references the proper Figure.

UFSAR Chance to reflect Unit 1 RHR Heat Exchanaer Bypass Valve 1E12-F048B Control Circuit Chanae per Desian Chance Packaoe (DCP) 9600461 UFSAR Subsection 7.3.1.2.4.7 is accordingly revised to reflect the DCP. The DCP modified the interlock that prevents closure of the RHR Heat Exchanger Bypass Valve 1E12-F048B during a LOCA from a 10 minute timer interlock to a permissive interlock.

The interlock requires the Bypass Valve to be full open at the start of a LOCA. The I

thermal overload bypass arrangement for the motor operated valve (MOV) is bypassed continuously per the DCP as long as a LOCA signal is present.

l l 1

i

Attachment A l UFSAR R:vizi:n 12 Upd t] e l Summ:ry cf Ch:ngea l

! l UFSAR Chanae for RHR Service Water Pumps and Diesel Generator Coolina Water Pumps 1E12-C300A/B/C/D. 2E12-C300A/B/C/D. ODG01P.1DG01 P. and 2DG01P \ lent l Valves The subject vent valves were discovered to be in place during a walkdown associated with the core standby cooling system (CSCS) functional review. The vent valves do not l appear on piping and instrumentation drawings, there are no equipment part numbers i (EPNs), and they are not referenced in the fill and vent or pump test procedures. The l pump casing vent valves provide an additional system vent that can be used during l

, system filling or draining. The system may be filled or drained without these vents, l

however, the addition of the vent valves is helpful during these processes. P&lDs M-87 '

Sheets 1 & 2 and M-134 Sheets 1 & 2 and associated line and valve lists are revised. l The UFSAR is revised since the P&lDs are UFSAR drawings. I Clarification to UFSAR Subsection 3.1.2.6.1 UFSAR Section 3.1.2.6.1 is revised to clarify that solid waste which is shipped offsite may be stored temporarily prior to shipment. This is presently stated in UFSAR Section 11.4.

Revision to Drawina M-1450. Machine Shop Ventilation Drawing M-1450 was revised to remove references to specific devices serviced by machine shop ventilation exhaust filter package units OVJ02S and OVJ04S, to reflect the as-built condition of the plant.

Revision to UFSAR Table 6.2-21 Sheet 4A to reflect Penetration M-77 UFSAR Table 6.2-21 Sheet 4A, for Containment Penetration M-77, is revised. The information included in the column entitled "Line Isolated"is incorrect. It appears that the first two fields were swapped. The 14"line associated with 1&2E12-F-12 is the "LPCS Test Line", while the 4" line associated with 1&2E12-F011 is the "LPCS Min.

Flow Line". Additionally, although unlabeled, the 2"line associated with 1&2E12-F088A is the "RHR Suction RV".

Revision to UFSAR drawino M-66 Sheet 4. Drvwell Pneumatic System Drawing M-66 Sheet 4 for the Drywell Pneumatic System was revised to reflect Design Change Package (DCP) 9400259 which installed an isolation valve and vent valve on main steam isolation valve (MSIV) instrument nitrogen supply header 21N36A-1" of the drywell pneumatic system.

Revision to UFSAR drawina M-66 Sheet 4. Drywell Pneumatic System Drawing M-66 Sheet 4 for the Drywell Pneumatic System was revised to reflect Design Change Package (DCP) 9400260 which installed an isolation valve and vent valve on the instrument nitrogen main steam safety relief valve supply header 2lN09C-2" of the drywell pneumatic system.

j

1

~

Attachment A j

, UFSAR RIvi i:n 12 Updata "

SummIry of Ch:nge3 Revision to UFSAR Drawina M-72 Sheet 2 per Installation of a Leakoff Line on the Fire Protection (FP) Deluae Header to the Charcoal Filter Bed for 1VOO1S per Desian l Chance Packaae 9600103 The DCP installed additional isolation valves and a leakoff line on Fire Protection (FP) l I

supply header 1 FPC1 A-3" for the Primary Containment Purge Filter Unit 1VOO1S charcoal filter. Charcoal adsorbers at LaSalle have had a history of being exposed to

! accidental deluge initiations and leakage 3ast the deluge isolation valves j l 1FSV-VOOO5A/B. The water from the de uge washes chemicals from the impregnated i charcoal. The combination of the water and chemicals results in a corrosive solution, I which may potentially corrod.e the stainless steel screens that retain the charcoal!n the adsorber unit. The repairs to the screens are difficult. This DCP helps to ensure that ,

the charcoal adsorbers will not be unintentionally exposed to water from the FP system. l UFSAR Chanae to reflect Unit 1 RHR Hx Bvoass Valve 1E12-F048A Control Circuit l Chance oer Desion Chanae Packaae (DCP) 9600460 l UFSAR Subsection 7.3.1.2.4.6 is revised to reflect the DCP. The DCP modified the .

j interlock that prevents closure of the RHR Heat Exchanger Bynass Valve 1E12-F048A during a LOCA from a 10 minute timer interlock to a permissive interlock. The interlock removed the automatic open signal to the Bypass Valve when it reaches the full open .

position following a LOCA. The thermal overload bypass arrangement for the motor '

operated valve (MOV) is bypassed continuously per the DCP as long as a LOCA signal  !

is present.

UFSAR Chance for Lake Blowdown Flow Monitor Instrumentation modification per Desian Chance Packaoe (DCP) 9700195 The DCP provides attemate flow measurement of lake blowdown flow during radwaste discharge that will not be subject to fouling with debris from fluid stream as the previous flow measuring devices were. UFSAR Sections 2.4.8.4, Blowdown Waterline,7.7.11.3, Liquid Radwaste System Instrumentation and Control, and 11.2.2.6, Operating Procedures - Liquid Radwaste Systems, were revised to reflect the DCP.

UFSAR U_pdate to reflect discontinued use of the Decontamination Facility in the North Service Buildina ,

The facility is no longer used because egress is no longer allowed from the turbine building to the North Service Building. The flow of trafhe is now toward the south end of the Unit 1 turbine building (4 line) with the change to one controlled entrance and exit from the radiologically protected area (RPA). UFSAR Subsection 12.3.1.6.2 is appropriately revised.

UFSAR Update per Procedure LOA RX-101 Revision 1. Unit 1 Control Room Evacuation Abnormal The procedure revision consisted of the following: Changed "L1017" to read "L1 (017)

(Grandmaster)" at Step B.1.17 and reworded Step C.S. This was an editorial correction for identification of key being obtained and clarification for status of lighting packs and flashlights.

1 Attachment A i

., UFSAR R;visi:n 12 Upd;t)

Summsrycf Chrngn 1

Deleted previous Revision 0 Steps B.1.18 and B.1.19 which allowed an option to allow for NOT opening RPS breakers CB2A and CB2B if MSIV closure, vesselisolation, and containment isolation was NOT desired. Also, deleted logic related to the option of t having MSIVs open from Steps B.1.28,31, and 34, since actions will now always be taken based on having the MSIVs closed.

This option was NOT in agreement with procedure actions stated in UFSAR Subsection 7.4.4.3.c which specifically discusses the opening of these breakers as a backup means of scramming the reactor and closing the containment and reactor vessel isolation valves. This option could NOT have been implemented anyway because LGA bag needed is located in the Control Room which is already evacuated 3er PCR LOA-96-031. The MSIVs will now always be closed by the opening of the RPS breakers.

Modified verbiage at Step B.1.23.4 (RNO) to " operate one SRV" for maintaining less than 1000 psig and Step B.1.34 (AER) to " operate two SRVs as necessary" for cooldown. This was done to be consistent with UFSAR section 7.4.4.3 discussion.

Changed "135 psig" to "100 psig" at Step B.1.36 (AER) and B.1.36.1 (RNO) to be consistent with Step B.1.34 and agree with UFSAR section 7.4.4.3 discussion.

UFSAR Subsection 7.4.4.3 paragraph I. was changed to comply with Emergency Operating Procedures (EOPs). UFSAR Subsection 7.4.4.3 paragraph p. is updated to reflect current operating practice.

UFSAR Chanae to Reflect Unit 1 Circulatina Water Pumo Gland Water Modification oer Desian Chanae Packaae (DCP) 9600455 UFSAR Subsections 1.2.3.6.3 and 9.2.2.2 are revised to reflect the DCP. The DCP -

changed the source of the gland water supply to the Circulating Water (CW) pumps to cool the lower bearing and provide lubrication to the stuffing box from the Clean Gland Water Head Tank (located at Aux. Building,786 feet) to being supplied from the discharges of the existing Service Water strainers located in the Lake Screen House.

The service water is further strained through a new automatic backwash strainer to ensure cleanliness (down to 0.005 inch solids) of gland water to the packing and lower bearing of the CW pumps. The original alping had become plugged with corrosion products over the years and is resolved ay the installation of the new system.

Revision to UFSAR associated with the Service Water System UFSAR Subsection 7.3.9.1.4 was revised to correct the description of the start of RHR Service Water system for Containment Spray. UFSAR Table 8.3-1 is revised to document that Division 1 RHR Service Water Pumps operate in post-accident mode -

and to revise load totals in Unit 1 Divisions 1 and 2 of Table 8.3-1. Miscellaneous i editorial changes to UFSAR Subsections 5.4.7.1, 5.4.7.2.2.2, 5.4.7.3.1, 6.3.2.8,9.2.1.3, I and 9.2.1.5 are included. '

UFSAR Section 7.3.9.1.4 was revised, because the current 7.3.9.1.4.c and 7.3.9.1.4.d state that RHR Service Water Pumps start automatically and RHR Heat Exchanger Service Water Discharge Valves 1(2)E12-F068A and B open automatica!!y in containment spray mode of RHR, whereas all other mention of these purnps and valves in the UFSAR states manual operation. These sections are changed to indicate manual operation of the pumps and valves.

l

Att:chment A UFSAR R;visi:n 12 Upd;t] ^

Summ:ry cf Ch;nges

  • Table 8.3-1, diesel generator loading is revised to show that both RHR Service Water Pumps operate in post-accident mode and update the load totals in Unit 1 Division 1 and Unit 2 Division 2 per current calculation.

Editorial changes: The change to Subsection 6.3.2.8 corrects a cross-reference. The other editorial changes improve legibility and clarity of the UFSAR sections listed.

Revision to UFSAR Section 12.1.1.3.k to Reflect Information from Health Physics Information Paper-071 The revision to UFSAR Section 12.1.1.3.k. reflects a policy which allows personnel who are not qualified as radiation protection technicians to survey hand-carried personal effects (e.g. flashlights and notebooks) that are subject to the same survey requirements as the individual possessing them. This provides for increased worker efficiency. Only hand-carried personal effects are allowed to be surveyed by non-radiation protection technicians.

Revision to UFSAR drawina M-124 Sheet 2. Turbine Buildina Closed Coolina Water System, per Desian Chance Packaae 9600323 The DCP increases the reliability of station air compressor (SAC) 2SA01C by modifying the cooling water supply to the compressor's Inter /aftercooler and oil cooler. Relief valve 2WT124 on the station air compressor inter /attercooler cooling water supply line was replaced. The new relief valve has a setpoint of 75 psig instead of the original 65 psig. Pressure regulator 2WT087 was installed on the WT supply line 2WT02D, upstream of the inter /aftercooler for the Unit 2 station air compressor. The regulator serves to establish a water supply pressure of 55 psig to the inter /attercooler. Relief valve 2WT125 was deleted. UFSAR drawing M-124 Sheet 2, Turbine Building Closed Cooling Water System, was appropriately revised.

Procedure LOP-RX-08 Revision 7. Startup Of Shutdown Coolina From The Remote Shutdown Panet The procedure outlines the steps necessary to startup shutdown cooling from the Remote Shutdown Panel. Revision 7 reflects an installed plant modification on the residual heat removal (RHR) service water keep fill system per Design Change Packages 9600195 and 9600198. UFSAR Subsections 7.3.3.3.1,9.2.1.2,9.2.1.5, 9.2.2, and 9.2.2.2 are revised.

i Editorial Chances to UFSAR Sections 8.2. 8.3. Tables 8.311. 8.3-12. and 8.3-13 I

UFSAR Section 8.2, Offsite Power Systems, and Section 8.3, Onsite Power Systems, l are revised to clarify the discussions in the text, and to correct typographical errors associated with vanous loads in Tables 8.3-11,8.3-12, and 8.3-13.

Revision to UFSAR Subsection 7.7.2.2.2.2 UFSAR Section 7.7.2.2.2.2 was editorially revised to reflect that there is one motor operated pressure control valve (as opposed to two), and two air operated flow control valves (as opposed to one) in the control rod drive hydraulic system control.

I I

Attachment A UFSAR R;vi:lon 12 Upd;t) -

Summ ry cf Ch;nges Revision to UFSAR Appendix B. Reaulatorv Guides UFSAR Appendix B is revised to reference Generic Letter 97-02, " Revised Contents of the Monthly Opera, ting Report" as an acceptable format for reporting the monthly operating information.

Revision to UFSAR Sections 1.1. 7.3. 7.6 and 7.7 l i

UFSAR Section 1.1, and Tables 7.3-4,7.3-5,7.6-2, and 7.7-6 are revised to achieve '

consistency with the requirements of 10CFR50.71(e) and the Unit 1 and Unit 2 technical specifications.

Revision to UFSAR Table 6.2-21 per Desian Chanae Packaae (DCP) DCP 9400437.

Installation of Anti-Cavitation Trim in the 1 521-F012 Valve The DCP installed friction element trim (anti-cavitation trim) in the 1E21-F012 [ Low Pressure Core Spray (LPCS) full flow test retum) valve, in order to reduce / eliminate l severe cavitation which is observed when the valve is used to throttle flow through the l LPCS full flow test loop. UFSAR Table 6.2-21 (Note 47) is revised to clarify the stroke I time of the 1E21-F012 valve.  !

Revie!on to UFSAR Subsection 15.6.6  !

UFSAR Subsection 15.6.6 was revised to delete the reference to particulate filtration by the turbine building ventilation (VT) system for the feedwater line break accident described in UFSAR Section 15.6.6. The change deletes the implication in UFSAR Section 15.6.6 that the VT system contains high efficiency particulate air (HEPA) .

exhaust filters. '

Revision to UFSAR Table 13.1-1 ,

UFSAR Table 13.1-1 is revised to change the title of " Lead Nuclear Engineer" to

" Station Reactor Engineer". The change in title does not change the meaning of the position.

Revision to UFSAR Description of Qualified Nuclear Enaineer (ONE) trainina oroaram in Subsection 13.2.2.3.e.1 UFSAR Subsection 13.2.2.3.e.1 is revised to include more comprehensive information clarifying the overall ONE training program.

Revision to UFSAR Drawino M-146 Sheet 3. Control Rod Drive Hydraulic Pipino Drawing M-146 Sheet 3 is revised to incorporate editorial changes for clarification of equipment part numbers (EPNs) as a result of the plant labeling effort. ,

l Att:chment A i UFSAR R:, vision 12 Updat] #

Summ:ry of Ch nga UFSAR Revision to reflect the replacement of the Anderson / Greenwood 2" Double Block Valves 1E21-F331 and 1E21-F332, Desian Chance Packaae (DCP) 9600374 l The block valves located on the low pressure core spray (LPCS) pump suction line were replaced with a single valve assembly. This was done since through-seat leakage approximated 0.5 gpm. The Anderson / Greenwood double block valve is also obsolete.

1 A gate valve was selected as a replacement since it is less susceptible to becoming a '

crud trap. UFSAR drawing M-94, LPCS, is accordingly revised.

Revision to UFSAR Section 12.5.3.3.1. Personnel Intemal Exposure Proaram Durina Accident Conditions UFSAR Section 12.5.3.3.1 is revised by removing specific reference to Corporate i Procedure CEPIP-3103-1, and adding reference to corporate implementing procedures.

Revision to UFSAR Section 13.3, Emeraency Plannino  !

The revision incorporates updated description to more accurately reflect the Generating  !

Station Emergency Plan (GSEP) in discussed in UFSAR Section 13.3. l Revision to UFSAR Section 9.2.1.3 per Operability Evaluation 97-058 UFSAR Subsection 9.2.1.3 describes flow velocity in the 54" bypass line around the traveling screens which provides an emergency source of water to the service water tunnelin the event of complete failure (blockage) of the traveling screens. Per UFSAR Subsection 9.2.1.3, the maximum flow velocity is 5 feet per second (fps), while calculation L-000671 determined that the actual flow velocity is 9.49 fps with the line i free of sediment, and 18.9 fps with the line 20% blocked with sediment. The specific flow velocity is not relevant to the issue of debris blockage. UFSAR Subsection 9.2.1.3 is revised to reflect the flow velocity being greater than that identified. The operation of the 54" bypass line and the systems which take suction off of the service water tunnel, including interfaces, remain unchanged.

Revision to UFSAR Chapters 15.0, Accident Analyses, and 15.A, Cycle Specific Safety Analyses UFSAR Sections 15.0.8,15.A.4,15.A.5,15.A.6, and Table 15.A-1 were revised to update documents referenced in those sections. The referenced documents consist of the Core Operating Limits Report, Reload Licensing Package, and station -

Administrative Technical Requirements.

Addition of Drain Connection to Pipeline 1RH59AB-16" per Desian Chance Packaae  :

(DCP) 9400406 The DCP was implemented to prevent pressure locking of valve 1E12-F017B as described in NRC Information Notices 92-26 and 95-14. The design added a drain line assembly to the residual heat removal (RHR) loop B drywell spray header line 1RH59AB-16" downstream of valve 1E12-F016B to drain the line between valves 1E12-F016B and 1E12-F017B. Pressure locking of valve 1E12-F017B will thus be prevented with the bonnet of the valve drained and downstream line empty. UFSAR drawing M-96 Sheet 2 for the Unit 1 RHR System will accordingly be updated.

Att:chment A

., UFSAR Rrvisien 12 Updata #

Summ ryof Ch ng:s UFSAR Update for ECCS Suction Strainer Replacement per Desian Chanae Packaae (DCP) 9700300 The DCP replaced the emergency core cooling system (ECCS) suction strainer on the Unit 1 "B" residual heat removal (RHR) system suction line in the suppression pool.

The replacement strainer has increased surface area to reduce pump net positive suction head (NPSH) loss due to accumulated strainer debris resulting from a design basis leak or loss of coolant accident (LOCA).

The strainer surface area is increased as is the available flow area of the strainer. The strainer installation partially addresses the actions required by NRC Bulletin 96-03.

UFSAR drawing M-96 Sheet 2 for the Unit 1 RHR system is revised to reflect the strainer replacement.

UFSAR Update for ECCS Suction Strainer Replacement per Deslan Chanae Packaoe (DCP) 9700301 The DCP replaced the emergency core cooling system (ECCS) suction strainer on the Unit 1 "C" residual heat removal (RHR) system suction line in the suppression pool.

The replacement strainer has increased surface area to reduce pump net positive suction head (NPSH) loss due to accumulated strainer debris resulting from a design basis leak or loss of coolant accident (LOCA).

The strainer surface area is increased as is the available flow area of the strainer. The strainer installation partially addresses the actions required by NRC Bulletin 96-03.

UFSAR drawing M-96 Sheet 3 for the Unit 1 RHR system is revised to reflect the strainer replacement.

Update to Neutron Monitorina discussion in UFSAR Subsection 7.7.6.1.3 UFSAR Subsection 7.7.6.1.3 is revised to remove the description that during startup withdrawal at least one control rod adjacent to all Source Range Monitors (SRMs) and .

neutron sources is fully withdrawn prior to reaching criticality. Reference to " sources" was correspondingly deleted. This revision reflects that LaSalle no longer has neutron sources in the core. A discussion of shadowing was revised as the reduction in source and detector shadowing is no longer applicable.

Update to UFSAR Tables 7.3-5 and 7.7-4 to reflect Desian Chance Packaae (DCP) 9700562 Per DCP 9700562, SRM Retract Permissive and Downscale Trip Setpoint Revision, the Unit 1 source range monitor (SRM) retract perm.1 and downscale tria setpoints were revised. The retract setpoint was revised to 306 counts per sec (C 3S) from 100 CPS, whereas the downscale trip setpoint was revised to 1.51 CPS from 1.18 CPS. UFSAR Tables 7.3 5, Control Rod Block Instrumentation Setpoints; and 7.7-4, SRM System Trips, were revised to reflect engineering setpoint calculation LOO 1343.

Attr'_hment A UFSAR R:;visi n 12 Upd:t:9 #

Summrry cf Ch:ngen Update to UFSAR Subsection 8.3.2.1.1 reflect Desian Chanae Packaaes (DCPs) 9400250. 9400251. 9400252, and 9400253 i

The DCPs removed the equalize interval timer from battery chargers 2DC03E (250 VDC Division 1 battery charger),2DC09E (125 VDC Division 1 battery charger),

2DC17E (125 VDC Division 2 battery charger), and 2DC19E (125 VDC Division 3 battery charger). The timers were expenencing a high rate of failure. The battery charging mode is to be switched manually via the existing equalize / float switch. UFSAR Subsection 8.3.2.1.1 line item o. is accordingly revised.

Update to UFSAR Subsection 4.6.1.1.2.4.2.6 to reflect the Installation of Threaded Joint Hydrolazina Ports to the Unit 1 and 2 Scram Discharae Volume (SDV) Headers The threaded ports were installed per modifications M01-1-84-059 and M01-2-84-094.

The safety evaluations for these modifications failed to identify the threaded joint issue with res aect to Commonwealth Edison LaSalle County Station Safety Evaluation Report (SER) NUREG-0519, Supplement 4, and NUREG-0803. The threaded hydrolazing ports allow for flushing and hydrotazing of the SDV piping during plant outages in preparation for planned maintenance activities for the purpose of dose reduction.

1 Chance to UFSAR Subsection 9.2.1.1.1.a.3 to Reflect Calculation L000579 Calculation L000579 Revision 0 evaluated the operation of the high pressure core spray (HPCS) diesel generator (DG) if the tube side flow is reduced from 7800 gpm to 650 gpm, and concluded that the associated shell side temperature rise of 5 F maximum is -

acceptable. If the 650 gpm value is corrected for minimum lake level and instrument inaccuracies, a measured DG engine flowrate of 696 gpm will provide adequate cooling. UFSAR Section 9.2.1.1.1.a.3 is revised to state the actual acceptable flow through the HPCS DG cooler.

UFSAR Revision to reflect Unit 1 Desian Chance Packaaes (DCPs) 9600032,9600034.

9600036. and 9600038 The purpose of the DCPs was to reduce noise in the Unit 1 SRM and IRM channels of l the neutron monitoring system. Raychem triaxial cables for the SRMs and IRMs were replaced with Rockbestos triple shielded cables. The SRM and IRM cables were rerouted in conduits dedicated solely for these signals. O-rings were installed at the SRM and IRM cable guards. Holes were drilled in the cable guards to prevent moisture from collecting and potentially affecting the detectors. UFSAR Subsections 7.6.3.2.2 and 7.7.6.1.2 are revised.

Update to UFSAR Table 6.2-28 (Sheet 5) reflect Unit 1 Main Steam Isolation Valve (MSIV) Leakaae Control System (LCS) Abandonment Design Change Package (DCP) 9500167 cut and capped the MSIV-LCS piping at the Unit 1 main steam lines during Unit 1 refuel outage L1R07. This work was associated with the approval of licensing amendment No.112 to Unit 1 license NPF-11. Valvec 1E32-F001 A, E, J, and N are no longer connected to the primary containment / reactor coolant pressure boundary, and are accordingly deleted from the list of Unit 1 primary containment isolation valves. UFSAR Table 6.2-28 (Sheet 5) is revised. I l

l

Att:chment A UFSAR Rcvi:icn 12 Upd t2

. 8 Summ:ry cf Chang;c Revision to UFSAR Tables 9.4-1 (Sheet 1) and 9.4-3 due to revised Filter Pressure Droo in conjunction with a change to an alternate supply air filter for use in the control room and the auxiliary electrical equipment room (AEER) HVAC systems, the filter pressure I drop, clean (inches water) parameter as listed in UFSAR Tables 9.41 (Sheet 1) and {

9.4-3 is increased from "0.35" to " < 0.8" inches water column for the control room and l AEER HVAC systems (VC and VE, respectively). Ti.e increase in the rated pressure .

drop clean value was made in association with an upgrade to safety related rating for the supply air filter for use in the control room and AEER HVAC systems.

Editorial chanaes to UFSAR Subsection 7.7.6.1.2 l UFSAR Subsection 7.7.6.1.2.b is revised to correct " low low, guartz-fiber-insulated j transmission cable" to " low-loss, quartz fiber insulated transmission cable". UFSAR subsection 7.7.6.1.2.d is revised by correcting "associaed" to " associated".

Editorial Chanae to UFSAR Subsections 3.1.2.3.8 and 3.1.2.3.9 UFSAR Subsections 3.1.2.3.8 and 3.1.2.3.9 are revised to reflect that the rod worth minimizer (RWM) is not part of the process computer.

Revision to UFSAR Subsection 9.5.1.5.3 and Table 13.1-1 UFSAR Subsection 9.5.1.5.3 is revised to allow a c ualified individual (other than a Field Supervisor) to assume the duties of the Fire Brigac e Leader. UFSAR Table 13.1-1 is revised to allow specific Shift Manager of Unit Supervisor Administrative duties to be performed by a qualified individual with either an RO or SRO license if the" meet minimum ANSI N18.1-1971 qualifications for supervisors requiring an NRd license.

l 4

t d

INDEX OF CHANGES j

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INDEX OF CHANGES REMOVE INSERT VOLUME I PAGE 1.0-1 REV. O PAGE 1.0-1 REV. 12 PAGE 1.1-1 REV. O PAGE 1.1-1 REV. 12 PAGE 1.2-16 REV. 1 PAGE 1.2-16 REV. 12 PAGE 1,2-29 REV. O PAGE 1.2-29 REV. 12 PAGE 2.0-11 REV. 7 PAGE 2.0-11 REV. 12 PAGE 2.3-16 REV. 10 PAGE 2.3-16 REV. 12 PAGE 2.3-21 REV. 7 PAGE 2.3-21 REV. 12 PAGE 2.3-25(a) REV. 12 PAGE 2.3-25(b) REV. 12 PAGE 2.3-25(c) REV. 12 PAGE 2.4-18 REV. O PAGE 2.4-18 REV. 12 VOLUME III PAGE 3.0-xxix REV. O PAGE 3.0-xxix REV. 12 PAGE 3.1-27 REV. 1 PAGE 3.1-27 REV. 12 PAGE 3.1-28 REV. O PAGE 3.1-28 REV. 12 PAGE 3.1-47 R5'V. O PAGE 3.1-47 REV. 12 PAGE 3.1-49 hi,7. 6 PAGE 3.1-49 REV. 12 TABLE 3.2-1(19) REV. O TABLE 3.2-1(19) REV. 12 TABLE 3.2-1(19 (a) ) REV. 12 TABLE 3.6-3 (1) REV. O TABLE 3.6-3 (1) REV. 12 TABLE 3.6-3 (la) REV. 12 FIGURE 3.6-14 REV. O FIGURE 3.6-14 REV. 12 PAGE 3.7-18 REV. O PAGE 3.7-18 REV. 12 PAGE 3.7-33 REV. O PAGE 3.7-33 REV. 12 PAGE 3.7-41 REV. O PAGE 3.7-41 REV. 12 PAGE 3.7-42 REV. O PAGE 3.7-42 REV. 12 PAGE 3.7-43 REV, O PAGE 3.7-43 REV. 12 PAGE 3.7-44 REV. O PAGE 3.7-44 REV. 12 FIGURE 3.7-36(a) REV. 12 FIGURE 3.7-36(b) REV. 12 TABLE 3.8-1(1) REV. O TABLE 3.8-1(1) REV. 12 TABLE 3.B-1(2) REV. O TABLE 3.B-1(2) REV. 12 TABLE 3.8-1(3) 'REV. O TABLE 3.8-1(3) REV. 12

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- TABLE 3.8-1(8) REV. 12 TABLE 3.8-1(9) REV. 12 TABLE 3.8-1(10) REV. 12 VOLUME IV PAGE 3.9-21 REV. 4 PAGE 3.9-21 REV. 12 PAGE 3.9-22 REV. 11 PAGE 3.9-22 REV. 12 PAGE 3.9-22(a) REV. 12 PAGE 3.9-31 REV. O PAGE 3.9-31 PAGE 3.9-32 REV. 12 REV. O PAGE 3.9-32 REV. 12 PAGE 3.9-32(a) REV. 12 PAGE 3.9-33 REV. 4 PAGE 3.9-33 REV. 12 PAGE 3.9-33(a) REV. 12

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! TABLE 6.2-21(1B) REV. 11 TABLE 6.2-21(1B) REV. 12 TABLE 6.2-21(4A) REV. 11 TABLE 6.2-21(4A) REV. 12 TABLE 6.2-21(6D) REV. 11 TABLE 6.2-21(6D) REV. 12 TABLE 6.2-21(8D) REV. 11 TABLE 6.2-21(8D) REV. 12 TABLE 6.2-21(9) REV. 4 TABLE 6.2-21(9A) REV. 12 TABLE 6.2-21(9B) REV. 12

. TABLE 6.2-21(12) REV. 4 TABLE 6.2-11(12) REV. 12 TABLE 6.2-21(20) REV. 1 TABLE 6.2-?1(20) REV. 12 TABLE 6.2-21(24) REV. 11 TABLE 6.2-22f24) REV. 12 TABLE 6.2-21(24(a)) REV. 11 TABLE 6.2-21(24(a)) REV. 12 TABLE 6.2-23 REV. O TABLE 6.2-23 REV 12 TABLE 6.2-28(5) REV. 11 TABLE 6.2-28(5) REV. 12 PAGE 6.3 REV. O PAGE 6.3-11 REV. 12 PAGE 6.3-11(a) REV. 12 PAGE 6.3-16 REV. 5 PAGE 6.3-16 REV. 12 PAGE 6.7-1 REV. O PAGE 6.7-1 REV. 12 PAGE 6.7-2 REV. O PAGE 6.7-2 REV. 12 PAGE 6.7-3 REV. O PAGE 6.7-3 REV. 12 PAGE 6.7-4 REV. O PAGE 6.7-4 REV. 12 e

f "' PAGE 6.7-5 REV. O PAGE 6.7-5 REV. 12 PAGE 6.7-6 REV. O PAGE 6.7-6 REV. 12 PAGE 6.7-7 REV. O PAGE 6.7-7 REV. 12 p:\procs\ufsar\rev12\riloep12.wpf 4

INDEX OF CHANGES 6 REMOVE INSERT (D

! \_ l PAGE 6.7-8 REV. O PAGE 6.7-8 REV. 12 PAGE 6.7-9 REV. O PAGE 6.7-9 REV. 12 l PAGE 6.7-10 REV. O PAGE 6.7-10 REV. 12 TABLE 6.7-1(1) REV. O TABLE 6.7-1(1) REV. 12 l FIGURE 6.7-1 REV. O FIGURE 6.7-1 REV. 12 I

FIGURE 6.7-2 REV. O FIGURE 6.7-2 REV. 12 FIGURE 6.7-3 REV. O FIGURE 6.7-3 REV. 12 PAGE 6.8-1 REV. 12 PAGE 6.8-2 REV. 12 PAGE 6.8-3 REV. 12 l

l VOLUME VI

! PAGE 7.1-13 REV. 1 PAGE 7.1-13 REV. 12 PAGE 7.1-14 REV. 1 PAGE 7.1-14

)

REV. 12 PAGE 7.3-18 REV. 7 PAGE 7.3-18 REV. 12 PAGE 7.3-31 REV. 1 PAGE 7.3-31 REV. 12 PAGE 7.3-34 REV. 1 REV. 7'.3-34 REV. 12 PAGE 7.3-35 REV. 4 PAGE 7.3-35 REV. 12

)

PAGE 7.3-38 REV. 1 PAGE 7.3-38 REV. 12 PAGE 7.3-40 REV. 1 PAGE 7.3-40 REV. 12 PAGE 7.3-65 REV. 1 PAGE 7.3-65 REV. 12 TABLE 7.3-2(3) REV. 7 TABLE 7.3-2 (3) REV. 12 TABLE 7.3-4(1) REV. 11 TABLE 7.3-4 (1) REV. 12 TABLE 7.3-5 REV. 7 TABLE 7.3-5 REV. 12

! FIGURE 7.3-7(2) REV. 11 FIGURE 7.3-7(2) REV. 12 PAGE 7.4-17 REV. 1 PAGE 7.4-17 REV. 12 PAGE 7.5-7 REV. 5 PAGE 7.5-7 REV. 12 s- PAGE 7.6-10 REV. 1 PAGE 7.6-10 REV. 12 l

PAGE 7.6-10(a) REV. 12 l PAGE 7.6-12 REV. 9 PAGE 7.6-12 REV. 12 PAGE 7.6-13 REV. 10 PAGE 7.6-13 REV. 12 PAGE 7.6-13 (a) REV. 12 l PAGE 7.6-18 REV. 5 PAGE 7.6-18 REV. 12 l TABLE 7.6-2 REV. 11 TABLE 7.6-2 REV. 12 FIGURE 7.6-1 REV. 1 FIGURE 7.6-1 REV. 12 FIGURE 7.6-3 REV. O FIGURE 7.6-3 REV. 12 PAGE 7.7-13. REV. 1 PAGE 7.7-13 REV. 12 l

PAGE 7.7-48 REV. 2 PAGE 7.7-48 REV. 12 i

PAGE 7.7-49 REV. 6 PAGE 7.7-49 REV. 12 PAGE 7.7-58 REV. 6 PAGE 7.7-58 REV. 12 PAGE 7.7-63 REV. 5 PAGE 7.7-63 REV. 12 PAGE 7.7-64 REV. 6 PAGE 7.7-64 REV. 12 PAGE 7.7-70 REV. 1 PAGE 7.7-70 REV. 12 PAGE 7.7-71 REV. 3 PAGE 7.7-71 REV. 12 PAGE 7.7-71(a) REV. 12 l PAGE 7.7-72 REV. 1 PAGE 7.7-72' REV. 12 l PAGE 7.7-75 REV. 1 PAGE 7.7-75 REV. 12 i

PAGE 7.7-82 REV. 1 PAGE 7.7-82 REV. 12 PAGE 7.7-91 REV. 6 PAGE 7.7-91 REV. 12 TABLE 7.7-4 REV. 3 TABLE 7.7-4 REV. 12 TABLE 7.7-6 REV. 10 TABLE 7.7-6 REV. 12 PAGE 7.A.2-8 REV. 1 PAGE 7.A.2-8 REV. 12 PAGE 8.2-5' REV. O PAGE 8.2-5 REV. 12 gj

('-

g PAGE 8.2-6 PAGE 8.3-7 PAGE 8.3-17 REV. 9 REV. O REV. O PAGE 8.2-6 PAGE 8.3-7 PAGE 8.3-17 REV. 12 REV. 12 REV. 12 i

p:\proes\ufsar\rev12\riloep12.wpf 5 .

INDEX OF CHANGES &

BEliOME INSERT PAGE 8.3-18 REV. O PAGE 8.3-18 REV. 12 PAGE 8.3-19 REV. O PAGE 8.3-19 REV. 12 PAGE 8.3-20 REV. O PAGE 8.3-20 REV. 12 PAGE B.3-25 REV. O PAGE 8.3-25 REV. 12 PAGE 8.3-34 REV. 11 PAGE 8.3-34 REV. 12 PAGE 8.3 REV. O PAGE 8.3-36 REV 12 PAGE 8.3-41 REV. 9 PAGE 8.3-41 REV. 12 TABLE 8.3-1(1) REV. 9 TABLE 8.3-1(1) REV. 12 TABLE 8.3-1(1(a)) REV. 12 TABLE 8.3-1(1(b)) REV. 12 TABLE 8.3-1(2) REV. 9 TABLE 8.3-1(2) REV. 12 TABLE 8.3-1(2 (a)) REV. 12 TABLE 8.3-1(2(b)) REV. 12 TABLE 8.3-2 (1) REV. 11 TABLE 8.3-2(1) REV. 12 TABLE 8.3-2(la) REV. 11 TABLE 8.3-2(2) REV. 11 TABLE 8.3-2(2) REV 12 TABLE 8.3-2 (3) REV. 11 TABLE 8.3-2 (3) REV. 12 TABLE 8.3-2 (3a) REV. 11 TABLE 8.3-11(1) REV. 11 TABLE 8.3-11(1) REV. 12 TABLE 8.3-11(2) REV. 11 TABLE 8.3-11(2) REV. 12 TABLE 8.3-12 (3) REV. 7 TABLE 8.3-12(3) REV. 12 TABLE 8.3-12(3a) REV. 12  ;

TABLE 8.3-13 (3) REV. 5 TABLE 8.3-13(3) REV. 12 TABLE 8.3-13(3a) REV. 12 VOLUME VII PAGE 9.1-2 REV. 11 PAGE 9.1-2 REV. 12 PAGE 9.1-2(a) REV. 12 PAGE 9.1-4 REV. 10 PAGE 9.1-4 REV. 12 PAGE 9.1-4 (a) REV. 12 PAGE 9.1-9 REV. 6 PAGE 9.1-9 REV. 12 PAGE 9.1-12 REV. 11 PAGE 9.1-12 REV. 12 PAGE 9.1-25 REV. 6 PAGE 9.1-25 REV. 12 PAGE 9.1-25(a) REV. 12 PAGE 9.2-1 REV. 10 PAGE 9.2-1 REV. 12 PAGE 9.'2-4. REV. 11 PAGE 9.2-4 REV. 12 1 PAGE 9.2-4(a) REV. 8 PAGE 9.2-4(a) REV. 12 )

PAGE 9.2-5 REV. O PAGE~9.2-5 REV. 12 PAGE 9.2-6 REV. O PAGE 9.2-6 REV. 12

. PAGE 9.2-7 REV. O PAGE 9.2-7 REV. 12 PAGE 9.2-8 REV. 8 PAGE 9.2 REV. 12 i PAGE 9.2-9 REV. 7 PAGE 9.2-9 REV. 12

! PAGE 9.2-29 REV. 5 PAGE 9.2-29 REV. 12 PAGE 9.2-34 REV. 8 PAGE 9.2-34 REV. 12 l PAGE 9.3-6 REV. O PAGE 9.3-6 REV. 12 PAGE 9.3-10 REV. 1 PAGE 9.3-10 REV. 12 PAGE 9.4-10 REV. 1 PAGE 9.4 REV. 12 PAGE 9.4-13 REV. 4 PAGE 9.4-13 REV. 12 PAGE 9.4-39 REV. O PAGE 9.4-39 REV. 12 TABLE 9.4-20 REV. O TABLE 9.4-20 REV. 12 PAGE 9.5-20 REV. 9 PAGE 9.5-20 REV. 12 PAGE'9.5-21 REV. 9 PAGE 9.5-21 REV. 12 PAGE 9.5-21a REV. 9 O PAGE 10.3-1

PAGE 10.3-2

'RinT. O REV. 6 PAGE 9.5-21(a)

PAGE 10.3-1 PAGE 10.3-2 REV. 12 REV. 12 REV. 12 p:\procs\ufsar\rev12\riloep12.wpf 6

INDEX OF CHANGES REMOVE INSERT t

! PAGE 10.4-5 REV. O PAGE 10.4-5 REV. 12 l PAGE 10.4-11 REV. 8 PAGE 10.4-11 REV. 12 PAGE 10.4-16 REV 7 PAGE 10.4-16 REV. 12 PAGE 10.4-17 REV. O PAGE 10.4-17 REV. 12 j

PAGE 11.2-5 REV. O PAGE 11.2-5 REV. 12 l

PAGE 11.2-5(a) REV. 12 I PAGE 11.2-6 REV. O RAGE'11.2-6 REV. 12 I PAGE 11.2-7 REV. 7 PAGE 11.2-7 REV. 12 PAGE 11.2-8 REV. 0 PAGE 11.2-8 REV. 12 PAGE 11.2-10 '

REV. 11 PAGE 11.2-10 REV. 12 s PAGE 11.2-13 REV. 6 PAGE 11.2-13. REV. 12 PAGE 11.2-14 REV. O PAGE 11.2-14 REV. 12 PAGE 11.2-15 REV. 11 PAGE 11.2-15 REV. 12 PAGE 11.2-16 REV. 7 PAGE 11.2-16 REV. 12 l PAGE 11.2-17 REV. 3 FAGE 11.2-17 REV. 12 l FAGE 11.2-18 REV. 3 PAGE 11.2-18 REV. 12 L PAGE 11.2-19 REV. O PAGE 11.2-19 REV. 12

. TABLE 11.2-3(2) REV. O TABLE 11.2-3 (2) REV. 12 TABLE 11.2-6(2) REV. O TABLE 11.2-6(2) REV. 12 j PAGE 11.3-6 REV. 8 PAGE 11.3-6 REV 12 PAGE 11.3-7 REV. O PAGE 11.3-7 REV. 12 PAGE 11.4-1 REV. 11 PAGE 11.4-1 REV. 12 PAGE 11.4-1(a) REV. 9 PAGE 11.4-1(a) REV. 12 j PAGE 11.4-2 REV. 11 PAGE 31.4-2 .REV. 12 PAGE 11.4-3 REV. 11 PAGE 11.4-3 REV. 12 PAGE 11.4-4 REV. 6 PAGE 11.4-4 REV. 12 j

PAGE 11.4-4(a) REV. 12 PAGE 11.4-5 REV. 11 PAGE 11.4-5 REV. 12 PAGE 11.4-6 REV. 11 PAGE 11.4-6 REV. 12 PAGE 11.4-6(a) REV. 11 PAGE 11.4-6(a) .REV. 12 TABLE 11.' 4-1(1) REV. 11 TABLE 11.4-1(1) REV. 12 TABLE 11.4-2 REV. O TABLE 11.4-2 REV. 12 FIGURE 11.4-1 REV. 5 FIGURE 11.4-1 REV. 12 PAGE 11.5-4 REV. 10 PAGE 11.5-4 REV. 12 PAGE 11.5-7 REV. 10 PAGE 11.5-7 REV. 12 L PAGE 12.1-1 REV. 11 PAGE 12.1-1 REV. 12 PAGE 12.1-3 REV. 11 PAGE 12.1-3 REV. 12 FIGURE 12.1-1 REV. 11 FIGURE 12.1-1 REV. 12 PAGE 12.3-7 REV. 11 PAGE 12.3-7 REV. 12 PAGE 12.3-8 REV. 11 PAGE 12.3-8 REV. 12 PAGE 12.5-5 REV. 11 PAGE 12.5-5 REV. 12 VOLUME VIII PAGE 13.1-7 REV. 10 PAGE 13.1-7 REV. 12 PAGE 13.1-9 REV. 10 PAGE 13.1-9 REV. 12 PAGE 13.1-13 REV. 11 PAGE 13.1-13 REV. 12 TABLE 13.1-1(1) REV. 11 TABLE 13.1'-1(1) REV. 12 TABLE 13.1-1(2) REV. 11 TABLE 13.1-1(2) REV. 12 PAGE 13 2-1 REV. 11 PAGE 13.2-1 REV. 12 i PAGE 13.2-5 REV. 11 PAGE 13.2-5 REV. 12 PAGE 13.2-7 REV. 11 PAGE 13.2-7 REV. 12 TABLE 13.2-1 REV. 11 TABLE 13.2-1 REV. 12 PAGE 13.3-1 REV. 4 PAGE 13.3-1 REV. 12 PAGE 13.3-1(a) REV. 12 PAGE 13.5-1 O PAGE 13.5-4 REV.' 11 REV. 11 PAGE 13 5-1 PAGE 13.5-4 REV. 12 REV. 12 p:\procs\ufsar\rev12\riloep12.wpf 7 1

INDEX OF CHANGES e REMOVE INSERT O

k/

s PAGE 13.5-11 REV. 11 PAGE 13.5-11 REV. 12 PAGE 13.5-11(a) REV. 11 TABLE 13.5-1 REV. 11 TABLE 13.5-1 REV. 12 PAGE 13.6-1 REV. 2 PAGE 13.6-1 REV. 12

' PAGE 15.0-v REV. O PAGE 15.0-v REV. 12 PAGE 15.0-ix REV. 4 PAGE 15.0-ix REV. 12 PAGE 15.0-x REV. 4 PAGE 15.0-x REV. 12 PAGE 15.0-xiv REV. 10 PAGE 15.0-xiv REV. 12 PAGE 15.0-9 REV. O PAGE 15.0-9 REV. 12 PAGE 15.0-9(a) REV. 12 i PAGE 15.0-10 REV. 10 PAGE 15.0-10 REV. 12 PAGE 15.0-10(a) REV. 12 l

IwuE 15.2-7 REV. 4 PAGE 15.2-7 REV. 12 PAGE 15.2-15 REV. 4 PAGE 15.2-15 REV. 12 PAGE 15.2-20 REV. 4 PAGE 15.2-20 REV. 12 PAGE 15.4-4 REV. 10 PAGE 15.4-4 REV. 12 PAGE 15.4-6 REV. O PAGE 15.4-6 REV. 12 PAGE 15.4-11 REV. 4 PAGE 15.4-11 REV. 12 i- PAGE 15.4-17 REV. 4 PAGE 15.4-17 REV. 12 l PAGE 15.4-18 REV. O PAGE 15.4-18 REV. 12 PAGE 15.4-19 REV. 4 PAGE 15.4-19 REV. 12 PAGE 15.4-20 REV. 10 PAGE 15.4-20 REV. 12 PAGE 15.4-21 REV. 10 PAGE 15.4-21 REV. 12 PAGE 15.4-21(a) REV. 12 PAGE 15.4-23 REV. 4 PAGE 15.4-23 REV. 12 l PAGE 15.4-24 REV. O PAGE 15.4-24 REV. 12 l PAGE 15.4-25 REV. 7 PAGE 15.4-25 REV. 12 l

/\ PAGE 15.4-26 REV. 0 PAGE 15.4-27 REV. 4 1 TABLE 15.4-4 REV. O TABLE 15.4-4 REV. 12 TABLE 15.4-6 REV. O TABLE 15.4-6(1) REV. 12 TABLE 15.4-6(2) REV. 12 TABLE 15.4-7 REV. O TABLE 15.4-7 REV. 12 TABLE 15.4-8 PEV. O TABLE 15.4-8 REV. 12 TABLE 15.4-9 REV. O TABLE 15.4-9 REV. 12 TABLE 15.4-l's REV. O TABLE 15.4-10 REV. 12-TABLE 15.4-11 REV. O TABLE 15.4-11 REV. 12 TABLE 15.4-12 REV. 12 TABLE 15.4-13 REV. 12 FIGURE 15.4'-13 REV. O FIGURE 15.4-13 REV 12 PAGE 15.6-13 REV. 4 PAGE 15.6-13 REV. 12

. FAGE 15.6-16 REV. O PAGE 15.6-16 REV. 12 PAGE 15.6-18 REV. 7 PAGE 15.6-18 REV. 12 PAGE 15.6-21 REV. 4 PAGE 15.6-21 REV. 12 PAGE 15.6-21(a) REV. 12 TABLE 15.6-11a REV. O TABLE 15.6-11a REV. 12 l TABLE 15.6-12 REV. O TABLE 15.6-12 REV. 12 '

TABLE 15.6-18 REV. O TABLE 15.6-18 REV. 12  ;

PAGE 15.A-2 REV. 11 PAGE 15.A-2 REV. 12 PAGE 15.A-3 REV. 10 PAGE 15.A-3 REV. 12 I PAGE 15.A-4 REV. 11 PAGE 15.A-4 REV. 12 PAGE 15.A-7 REV. 8 PAGE 15.A-7 REV. 12 PAGE 15.A-8 REV. 11 PAGE 15.A-8 REV. 12 TABLE 15.A-1(1) REV. 10 REV. 12 O TABLE 15.A-1(3)

'PAGE B 0-1 REV. 8 REV. 11 TABLE 15. A-1(1)

TABLE 15.A-1(3)

PAGE B.0-1 REV. 12 REV. 12 p:\procs\ufsar\rev12\riloep12.wpf 8

INDEX OF CHANGES REMOVE INSERT l

f~

(_ PAGE B.0-1(a) REV. 11 PAGE B.0-1(a) REV. 12 PAGE B.0-2 REV. 11 PAGE B.0-2 REV. 12 l

PAGE B.0-2(a) REV. 12 PAGE B,0-2(b). REV. 12 1 PAGE B.0-2(c) REV. 12 PAGE B.0-2(d) REV. 12 PAGE B.0-2(e) REV. 12 PAGE G.2.2-3 REV. O PAGE G.2.2-3 REV. 12 VOLUME IX PAGE H.3-28 REV. 9 PAGE H.3-28 REV. 12 PAGE H.3-157 REV. 3 PAGE H.3-157 REV. 12 PAGE H.3-222 REV. O PAGE H.3-222 REV. 12 PAGE H.4-36 REV. 3 PAGE H.4-36 REV. 12 PAGE H.4-37 REV. 3 PAGE H.4-37 REV. 12 TABLE H.4-50(8) REV. 5 TABLE H.4-50(8) REV. 12 TABLE H.4-51(6) REV. 5 TABLE H.4-51(6) REV. 12 TABLE H.4-55(4) REV. 3 TABLE H.4-55(4) REV. 12 TABLE H.4-56(4) REV. 3 TABLE H.4-56(4) REV. 12 TABLE H.4-57 (3) REV. 3 TABLE H.4-57 (3) REV. 12 TABLE H.4-59(5) REV. 9 TABLE H.4-59(5) REV. 12 i TABLE H.4-60(7) REV. 5 TABLE H.4-60(7) REV. 12 TABLE H.4-62(5) REV. 5 TABLE H 4-62 (5) REV. 12 TABLE H.4-64(6) REV. 3 TABLE H.4-64(6) REV. 12 TABLE H.4-65 (5) REV. 3 {'

"' TABLE H.4-65(5) REV. 12 TABLE H.4-66(4) REV. 7 TABLE H.4-66(4) REV. 12

( 's)

'~

FIGURE H.4-1 FIGURE H.4-2 REV. 3 REV. 3 FIGURE H.4-1 REV. 12 FIGURE H.4-2 REV. 12 PAGE L-1 REV. O PAGE L-1 REV. 12 VOLUME X - DRAWING INDEX PAGE DI-2 REV. 11 PAGE DI-2 REV. 12 PAGE DI-3 REV. 11 PAGE DI-3 REV. 12 PAGE DI-4 REV. 11 PAGE DI-4 REV. 12

~

PAGE DI-5 REV. 11 PAGE DI-5 REV. 12 PAGE DI-6 REV. 11 PAGE DI-6 REV. 12 PAGE DI-7 REV. 11 PAGE DI-7 REV. 12 VOLUME X - DRAWINGS M-INDEX SHEET 1 REV. X M-INDEX SHEET 1 REV. Y  !

M-INDEX SHEET 2 REV. N M-INDEX SHEET 2 REV. Q l M-INDEX SHEET 3 REV. V M-INDEX SHEET 3 REV. W M-7 REV. Q M-7_REV. R M-8 REV. L M-8 REV. N M-11 REV. K M-11 REV. L M-54 SHEET 1 REV. S M-54 SHEET 1 REV. T M-55 SHEET 1 REV. N M-55 SHEET 1 REV. P M-55 SHEET 2 REV. N M-55 SHEET 2 REV. Q M-55 SHEET 5 REV. S M-55 SHEET 5 REV. U M-55 SHEET 6 REV. N M-55 SHEET 6 REV. P M-55 SHEET 7 REV. T M-55 SHEET 7 REV. V

/N M-55 SHEET 8 REV. N

( ,) M-55 SHEET 10 REV. F M-55 SHEET 8 REV. P M-55 SHEET 10 REV. H p:\procs\ufsar\rev12\riloep12.wpf 9

INDEX OF CHANGES l

REMOVE INSERT i

I

) M-56 SHEET 1 REV. F M-57 REV. AC M-56 SHEET 1 REV. G M-57 SHEET 1 REV. A M-57 SHEET 2 REV. A i M-58 SHEET 1 REV. 2 M-58 SHEET 1 REV. AB l M-58 SHEET 2 REV. D M-58 SHEET 2 REV. E M-59 REV. Q M-59 REV. S M-60 SHEET 1 REV. M M-60 SHEET 1 REV. P M-60 SHEET 2 REV. L M-60 SHEET 2 REV. P j M-60 SHEET 3 REV. M M-60 SHEET 3 REV. N M-60 SHEET 6 REV. S M-60 SHEET 6 REV. T M-61 SHEET 2 REV. L M-61 SHEET 2 REV. M i M-63 SHEET 1 REV. AC M-63 SHEET 1 REV. AE I l M-63 SHEET 4 REV. C M-63 SHEET 4 REV. E M-66 SHEET 1 REV. V M-66 SHEET 1 REV. W e M-66 SHEET 2 REV. M M-66 SHEET 2 REV. N

! M-66 SHEET 3 REV. W M-66 SHEET 3 REV. X M-66 SHEET 4 REV. R M-66 SHEET 4 REV. S l M-66 SHEET 5 REV. J M-66 SHEET 5 REV. K I l M-66 SHEET 6 REV. J M-66 SHEET 6 REV; L M-66 SHEET 7 REV. K M-66 SHEET 7 REV. L l M-68 REV. Y M-68 REV. Z i l M-69 SHEET 1 REV. AC M-69 SHEET 1 REV. AD

! M-69 SHEET 4 REV. C M-69 SHEET 4 REV. D M-71 SHEET 2 REV. S M-71 SHEET 2.REV T M-72 SHEET 2 REV. AA M-72 SHEET 2.REV. AC M-75 SHEET 1 REV. AF M-75 SHEET 1 REV. AG M-80 SHEET 1 REV. J M-80 EMEET 1 REV. K

) -

M-80 SHEET 3 REV. E M-80 SHEET 3 REV. F l M-82 SHEET 1 REV. S M-82 SHEET 1 REV. W l M-82 SHEET 5 REV. L M-82 SHEET 5 REV. M

M-82 SHEET 6 REV. G M-82 SHEET 6 REV. J M-83 SHEET 1 REV. AE M-83 SHEET 1 REV. AF M-83 SHEET 3 REV. AH M-83 SHEET 3 REV. AJ '

M-86 SHEET 2 REV. B M-86 SHEET 2 REV. C M-87 SHEET 1 REV. AB M-87 SHEET 1 REV. AD M-87 SHEET 2 REV. W M-87 SHEET 2 REV. Z i M-88 SHEET 2 REV.'JUK M-88 SHEET 2 REV. AL l M-89 REV. AB M-89 REV. AC M-91 SHEET 2 REV. D M-91 SHEET 2 REV. F M-91 SHEET 4 REV. AA M-91 SHEET 4 REV. AC t M-91 SHEET 5 REV. Y M-91 SHEET 5 REV. AB l M-91 SHEET 6 REV. M M-91 SHEET 6 REV. Q M-93 SHEET 3 REV. G M-93 SHEET 3 REV. H M-93 SHEET 4 REV. AG M-93 SHEET 4 REV AH M-93 SHEET 5 REV. AC M-93 SHEET 5 REV. AE M-94 REV. AD M-94 REV. AE M-96 SHEET 1 REV. AJ M-96 SHEET 1 REV. AM i

M-96 SHEET 2 REV. AJ M-96 SHEET 2 REV. AL M-96 SHEET 3 REV. AG M-96 SHEET 3 REV. AK  ;

M-96 SHEET 4 REV. AA M-96 SHEET 4 REV. AB i M-97 SHEET 1 REV. AB M-97 SHEET 1 REV. AD i M-97 SHEET 3 REV. U M-97 SHEET 3 REV. V M-98 SHEET 1 REV. AD M-98 SHEET 1 REV. AH i M-98 SHEET 2 REV. P M-98 SHEET 2 REV. Q M-100 SHEET 1 REV. V M-100 SHEET 1 REV. Y O M-100 SHEET 2 REV. U M-101 SHEET 1 REV. AQ M-100 SHEET 2 REV. V M-101 SHEET 1 REV. AT p:\procs\ufsar\rev12\riloep12.wpf 10 l

INDEX OF CHANGES I-l EEliQYE 3UiEEI O M-101 SHEET 2 REV. AD M-102 SHEET 1 REV. T M-101 SHEET 2 REV. AE M-102 SHEET 1 REV. U M-102 SHEET 10 REV. L M-102 5HEET 10 REV. M M-102 SHEET 11 REV. H M-102 SHEET 11 REV. J M-103 SHEET 2 REV. P M-103 SHEET 2 REV. R M-103 SHEET 3 REV. L M-103 5EEET 3 REV. N M-103 SHEET 6 REV. L M-103 SHEET 6 REV.'M M-103 SHEET 7 REV. K M-103 SHEET 7 REV. L M-103 SHEET 8 REV. L M-103 SHEET 8 REV. M M-103 SHEET 10 REV. T M-103 SHEET 10 REV. U M-103 SHEET 13 REV. N M-103 SHEET 17 REV. K M-103 SHEET 17-REV. L M-103 SHEET 19 REV. M M-103 SHEET 19 REV. P M-103 SHEET 20 REV. U. M-103 SHEET 20 REV. V M-103 SHEET 25 REV. AD M-103 SHEET 25 REV. AE l M-103 SHEET 26 REV. P M-103 SHEET 26 REV..Q M-104 SHEET 1 REV. N M-104 SHEET 1 REV. P M-104 SHEET 2 REV. M M-104 SHEET 2 REV. N M-104 SHEET 3 REV. F M-104 SHEET 3 REV. H M-105' SHEET 2 REV. J M-105 SHEET 2 REV. K M-106 SHEET 4 REV. M M-106 SHEET 4 REV. N M-106 SHEET 6 REV. P M-106 SHEET 6 REV. Q M-106 SHEET 8 REV. P M-106 SHEET B REV. Q M-106 SHEET 9 REV. L M-106 SHEET 9 REV. M M-106 SHEET 10 REV. E M-106 S9EET 10 REV. F M-115 SHEET 4 REV. F M-115 SHEET 4 REV. G M-115 SHEET 6 REV. E M-115 SHEET 6 REV. F M-115 SHEET 14 REV. E' O M-116 SHEET 5 REV. N M-116 SHEET 10 REV. F M-118 REV. AC M-115 SHEET 14 REV. F M-116 SHEET 5 REV. P M-116 SHEET 10 REV. G M-118 SHEET 1 REV. A M-118 SHEET 2 REV. A M-119 SHEET 1 REV. Y M-119 SHEET 1 REV. AA i M-120 REV. N M-120 REV. P L M-121 SHEET 1 REV. L M-121 SHEET 1 REV. P i M-121 SHEET 2 REV. H M-121 SHEET 2 REV. L M-121 SHEET 3. REV. P M-121 SHEET 3 REV. Q M-124 SHEET 2 REV. N M-124 SHEET 2 REV. P M-125 SHEET 1 REV. V M-125 SHEET 1 REV. W M-126 SHEET 2 REV. V M-126 SHEET 2 REV. W M-128 SHEET 1 REV. F M-128 SHEET 1 REV. G M-128 SHEET 3 REV. G M-128 SHEET 3 REV. H I

M-128~ SHEET 6 REV. S M-128 SHEET 6 REV. T M-133 SHEET 1 REV. AC M-133 SHEET 1 REV. AD M-133 SHEET 2 REV. A M-133 SHEET 2 REV. B M-134 SHEET 2 REV. S' M-134 SHEET 2 REV. T M-136 SHEET 2 REV. N M-136 SHEET 2 REV. Q M-137 SHEET 4 REV. AA M-137 SHEET 4 REV. AC M-137 SHEET 5 REV. N M-137 SHEET 5 REV. Q M-137 SHEET 6 REV. L M-137 SHEET 6 REV. M M-139 SHEET 1 REV. AE M-139 SHEET 1 REV. AG lM-139 SHEFT 2 REV. AF M-139 SHEET 2 REV. AG

! VOLUME XI,- DRAWING INDEX PAGE DI-9 REV. 11 PAGE DI-9 REV. 12 PAGE DI-10 REV. 11 PAGE DI-10 luN. 12 p:\procs\ufsar\rev12\riloep12.wpf 11

INDEX OF CHANGES REMOVE INSERT PAGE DI-11

[sV) PAGE DI-12 REV. 11 REV. 11 PAGE DI-11 PAGE DI-12 REV. 12 REV. 12 PAGE DI-14 REV. 11 PAGE DI-14 REV. 12 PAGE DI-15 REV. 11 PAGE DI-15 REV. 12 PAGE DI-16 REV. 11 PAGE DI-16 REV. 12 PAGE DI-17 REV. 11 PAGE DI-17 REV. 12 PAGE DI-18 REV. 11 PAGE DI-18 REV. 12 VOLUME XI - DRAWINGS M-140 REV. AG M-140 REV. AH M-141 REV. AJ M-141 REV. AK M-142 SHEET 2 REV. AG M-142 SHEET 2 REV. AJ M-142 SHEET 3 REV. AK M-142 SHEET 3 REV. AM M-143 SHEET 1 REV. Z M-143 SHEET 1 REV. AA M-143 SHEET 2 REV. R M-143 SHEET 2 REV. S M-143 SHEET 3 REV. P M-143 SHEET 3 REV. Q M-143 SHEET 4 REV. S M-143 SHEET 4 REV. T M-144 SHEET 1 REV. AD M-144 SHEET 1 REV. AE M-144 SHEET 2 REV. R M-144 SHEET 2 REV. S M-146 SHEET 2 REV. W M-146 SHEET 2 REV. X M-146 SHEET 3 REV. M M-146 SHEET 3 REV. N M-147 SHEET 1 REV. AL M-147 SHEET 1 REV. AP M-149 SHEET 2 REV. H M-149 SHEET 2 REV. J M-149 SHEET 3 REV. E M-149 SHEET 3 REV. F M-151 SHEET.6 REV. D M-151 SHEET 6 REV. E M-153 SHEET 1 REV. K M-153 SHEET 1 REV. L M-153 SHEET 6 REV. G M-153 SHEET 6 REV. H

>7m) M-155 SHEET 1 REV. M V N-155 SHEET 1 REV. P M-155 SHEET 2 REV. G M-155 SHEET 2 REV. H M-157 SHEET 1 REV. H M-157 SHEET 1 REV. J l

M-158 SHEET 4 REV. F M-158 SHEET 4 REV. G )

M-159 SHEET 2 REV. B M-159 SHEET 2 REV. C M-1450 SHEET 1 REV. G M-1450 SHEET 1 REV. H M-1455 SHEET 2 REV. J M-1455 SHEET 2 REV. K M-1455 SHEET 3 REV. E M-1455 SHEET 3 REV. F M-1459 SHEET 1 REV. C M-1459 SHEET 1 REV. D M-1459 SHEET 2 REv. L M-1459 SHEET 2 REV. M I M'1462 SHEET 1 REV. G M-1462 SHEET 1 REV. H I M-1463 REV. G M-1463 REV. H M-1467 SHEET 2 REV. D M-1467 SHEET 2 REV. E M-2096 SHEET 5 REV. J M-2096 SHEET 5 REV. K M-3443 SHEET 31 REV. E M-3443 SHEET 31 REV. F 1E-1-4205AA REV. L 1E-1-4205AA REV. M 1E-1-4205AB REV. M 1E-1-4205AB REV. N 1E-1-4205AC REV. G 1E-1-4205AC REV. H 1E-1-4205AG REV. L 1E-1-4205AG REV. M 1E-1-4205AM REV. Q 1E-1-4205AM REV. R 1E-1-4205AN REV. J 1E-1-4205AN REV. L 1E-1-4205AQ REV. J 1E-1-4205AQ REV. K 1E-1-4205AS REV. M 1E-1-4205AS REV. N 1E-1-4601AC REV. Z 1E-1-4601AC REV. AA 1E-1-4602AH REV. E 1E-1-4602AH REV. F 1E-1-4603AR REV. H 1E-1-4603AR REV. J 1E-2-4205AA REV. J 1E-2-4205AA REV. K r~ 1E-2-4205AB REV. L 1E-2-4205AB REV. M

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1 INDEX OF CHANGES f

REMOVE INSERT

() 1E-2-4205AD REV. D 1E-2-4205AM REV. P 1E-2-4205AD REV. E.

1E-2-4205AM REV. Q l 1E-2-4205AN REV. G 1E-2-4205AN REV. J 1E-2-4205AP REV. F 1E-2-4205AP REV. G 1E-2-4205AS REV. K 1E-2-4205AS REV. L 1E-2-4205AT REV. A 1E-2-4205AT REV. B 1E-2-4601AB SHEET 1 REV. AB 1E-2-4601AB SHEET 1 REV. AC 1E-2-4602AR REV. C 1E-2-4602AH REV. D 1E-2-4603AR REV.' D 1E-2-4603AR REV. F l

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O p:\procs\ufsar\rev12\riloep12.wpf 13

P_t 82593 LcLQ9BrgY SW110N UPDATED FINAL SAFETY ANALYSIS REPORT (UFSAR)

LTRTTnto OP rerr t rive PMFC PAGE 69 REV. 12 VOLUME 1 PAGE 70 REV. 12 g PAGE 71 REV. 12 f Document PAGE 72 REV. 12

  • Control Tab N/A PAGE 73 REV. 12 PAGE 74 REV. 12 PAGE 1 REV. 12 PAGE 75 REV. 12 PAGE 2 REV. 12 PAGE 76 REY. 12 PAGE 3 REV. 12 PAGE 77 PAGE REV. 12 4 REV. 12 PAGE 78 REV. 12 PAGE 5 REV. 12 PAGE 79 REV. 12 PAGE 6 REV. 12 PAGE
  • 80 REY. 12 PAGE 7 REV. 12 PAGE 01 REV. 12 PAGE, 8 REV. 12 PAGE 82 PAGE 9 REV.. 12 REV. 12 PAGE- 83 REV. 12 PAGE 10 REV. 12 PAGE 84 PAGE REV. 12 11 REV. 12 PAGE 85 REV.

PAGE 12 12 REV. 12 PAGE 86 PAGE REY. 12 13 REV. 12 PAGE B7 PAGE REV. 12 14 REV. 12 PAGE 88 PAGE REV. 12 15 REV. 12 PAGE 99 REV. 12 PAGE 16 REV. 12 PAGE 90 REV. 12 PAGE 17 REV. 12 PAGE RE1, .

91 12 PAGE 18 REV. 12 PAGE 92 RE\ . 12 PAGE 19 REV. 12 PAGE 93 REV. 12 PAGE 20 REV. 12 PAGE 94 REV. 12 l PAGE 21 REV. 12 PAGE 95 i REV. 12 PAGE 22 REV. 12 PAGE 96 REV. 12 PAGE 23 REV. 12 PAGE 97 PAGE REV. 12 24 REV. 12 PAGE 98 REV. 12 PAGE 25 REV. 12 PAGE 99 REV. 12 PAGE 26 REV. 12 PAGE 100 REV. 12 PAGE 27 REV. 12 PAGE 101 REV. 12 i PAGE 28 REV. 12 PAGE 102 REV. 12 l PAGE 29 REV. 12 PAGE 103 REV. 12 PAGE 30 REV. 12 PAGE 104 REV.

PAGE 12 1 31 REV. 12 'PAGE 105 REV. 12

\ PAGE 32 REV. 12 PAGE 33 REV. 12 PAGE 34 REV. 12 PAGE 35 REV.

Table of Contents 12 Tab N/A PAGE 36 REV. 12 PAGE 37 REV. 12 i 0 PAGE 38 REV. 12 11 9 PAGE 39 REV. 12 iii 9 PAGE 40 REV. 12 iv 0 PAGE 41 REV. 12 v 10 PAGE 42 REV. 12 vi 2 PAGE 43 REV. 12 PAGE 44 REV. 12 PAGE 45 REV. 12 PAGE 46 REV. 12 PAGE 47 REV. 12 PAGE 48 REV. 12

.PAGE 49 REV. 12 PAGE 50 REV. 12 PAGE 51 REV. 12 PAGE 52 REV. 12 PAGE 53 REV. 12 PAGE 54 REV. 12 PAGE 55 REV. 12 PAGE 56 REV. 12 PAGE 57 REV. 12 PAGE 58 REV. 12  !

PAGE 59 REV. 12 PAGE 60 REV. 12 PAGE 61 REV. 12 PAGE 62 REV. 12 PAGE 63 REV. 12 PAGE 64 REV. 12 PAGE 65 REV. 12 PAGE 66 REV. 12 PAGE 67 REV. 12 PAGE 68 REV. 12 l p:\proes\ufsar\rev12\1oep.wpf REV. 12 - MARCH 1998

VOLUME I Chaptsr 1 T b N/A #

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T 3.10-1 (216) Deleted T 3.10-1(217) Deleted T 3.10-1(218) Deleted T 3.10-1 (219) Deleted T 3.10-1 (220) Deleted T 3.10 1(221) Deleted T 3.10-1(222) Deleted T 3.10-1(223) Deleted T 3.10 1(224) Deleted T 3.10 1(225) Deleted T 3.10-1 (226) Deleted T 3.10-1(227) Deleted T 3.10-1 (22 8) Deleted T 3.10 1(229) Deleted l

T 3.10-1 (230) Deleted I

T 3.10-1 (231) Deleted T 3.10 1 (232) Deleted

  • T 3.10-1 (23 3 ) Deleted T 3.10-1(234) Deleted T 3.10-1 (235) Deleted T 3.10-1 (236) Deleted T 3.10-1 (237) Deleted T 3.10-1 (238) Deleted T 3.10-1(239) Deleted T 3 10-1(240) Deleted T 3.10-1 (241) Deleted T 3.10-1 (242) Deleted T 3.10-1(243) Deleted T 3.10 1(244 ) j Deleted T 3.10-1(245) Deleted T 3.10-1 (24 6) Deleted T 3.10-1 (247) Deleted 7 3.10-1(248) Deleted

'N T 3.10 1 (24 9) Deleted T 3.10-1 (250) Deleted T 3.10-1 (251) Deleted  :

pt\procs\ufsar\rev12\loep.wpf REV. 12 - MARCH 1998

&7CSMAMt32 RAGE REVISION g

T 3.10'-1(252) Deleted T 3.10 1(253) Deleted T 3.10-1 (254)

'[ 'h T 3.10-1(255)

Deleted Deleted

( ,,/ T 3.10-1(256) Deleted T 3.10-1(257) Deleted T 3.10-1(258) Deleted T 3.10-1 (259) Deleted 7 3.10-1(260) Deleted T 3.10-1(261) Deleted T 3.10-1 (262) Deleted T 3.10-1(263) Deleted T 3.10-1(264) ' Deleted T 3.10-1(265) Deleted T 3.10-1(266) Deleted T 3.10-1(267) Deleted T 3.10-1(268) Deleted T 3.10-1(269) Deleted T 3.10-1(270) Deleted T 3.10-1(271) Deleted T 3.10-1(272) Deleted T 3.10-1(273) Deleted T 3.10-1(274) Deleted T 3.10-1(275) Deleted T 3.10-1(276) Deleted

  • T 3.10-1(277) Deleted T 3.10 1(278) Deleted T 3.10-1(279) Deleted ,

T 3.10-1(280) Deleted T 3.10-1 (281) Deleted T 3.10 1(282) Deleted T 3.10-1(283) Deleted T 3.10-1(284) Deleted T 3.10-1(285) Deleted l

T 3.10-1(286) Deleted T 3.10-1(287) Deleted T 3.10-1(288) Deleted i

O T 3.10-1(289)

T 3.10-1(290)

T 3.10-1 (291)

Deleted Deleted Deleted T 3.10-1 (292) Deleted T 3.10-1 (293) Deleted T 3.10-1(294 ) Deleted T 3.10-1(295) Deleted T 3.10-11296) Deleted T 3.10-1 (297) Deleted T 3.10-1 (298) Deleted T 3.10-1 (299) Deleted T 3.10-1 (300) Deleted T 3.10-1(301) Deleted T 3.10-1(302) Deleted T 3.10-1 (303) Deleted T 3.10-1(304 ) Deleted T 3.10-1(305) Deleted

- T 3.10-1 (3 06 ) Deleted T 3.10 1(307) Deleted T 3.10 1(308) Deleted T 3.10-1 (3 09) Deleted T 3.10-1 (310) Deleted T 3.10-1 (311) Deleted T 3.10-1 (312) Deleted T 3 .10-1 (313 ) Deleted T 3.10-1(314) Deleted T 3.10-1 (315) Deleted T 3.10-1 (316) Deleted T 3.10-1 (317) Deleted T 3.10-1(318) Deleted T 3.10-1(319) Deleted T 3.10-1(320) Deleted T 3.10-1 (321) Deleted T 3.10-1(322) Deleted  ;

[

t T 3.10-1(323) Deleted T 3.10-1(324) Deleted p:\procs\ufsar\rev12\loep.wpf REV. 12 - MARCH 1998

m EAGE REVISf0N j

T 3.10'-1(325) Deleted T 3.10-1 (326) Deleted

/' T 3.10-1 (327) Deleted

(,_,h / 7 3.10-1(328) Deleted T 3.10-1(329) Deleted T 3.10-1(330) Deleted T 3.10-1(331) Deleted T 3.10-1(332) Deleted T 3 .10-1 -(3 3 3 ) Deleted T 3.10-1(334) Deleted T 3.10-1(335) Deleted T 3.10-1 (336) Deleted T 3.10-1(337) Deleted T 3.10-1(338) Deleted T 3.10-1(33 9) Deleted

. T 3.10-1 (340) Deleted T 3.10-1(341) Deleted I

T 3.10-1(342) Deleted T 3.10-1(343) Deleted T 3.10-1(344) Deleted T 3.10-1(345) Deleted T 3.10-1 (346) Deleted T 3.10-1(347) Deleted T 3.10-1(348) Deleted T 3.10-1 (34 9) Deleted T 3.10-1(350) Deleted T 3.10-1(351) Deleted T 3.10-1(352) Deleted T 3.10-1(353) Deleted T 3.10-1 (354 ) Deleted T 3.10-1 (355) Deleted T 3.10-1 (3 56) Deleted T 3.10-1 (357) Deleted T 3.10-1 (358) Deleted T 3.10-1 (359) Deleted T 3.10-1 (3 60) Deleted T 3.10-1 (361)

, fN T 3,10-1(362) Deleted Deleted

[

l () T 3.10-1(363)

T 3.10-1(364)

Deleted l Deleted L

T 3.10-1 (365) Deleted T 3.10-1(366) Deleted T 3.10-1 (367) Deleted T 3.10-1(368) l Deleted T 3.10-1 (369) Deleted T 3.10-1(370) Deleted T 3.10-1 (3 71) Deleted T 3.10-1 (3 72) Deleted T 3.10-1 (373 ) Deleted

  • T 3.10-1 (374 ) Deleted T 3.10-1(375) Deleted T 3.10-1 376) Deleted T 3.10-1 (377) Deleted T 3.10-1 (378 ) Deleted T 3.10-1 (379) Deleted T 3.10-1 (3 80) Deleted T 3.3 0-1(381) Deleted T 3.10-1 (3 82) Deleted  !

T 3.10-1 (3 8 3 ) Deleted j

T 3.10-1 (3 84 ) Deleted T 3.10-1(3 85) Deleted T 3.10-1 (3 86) Deleted ,

T 3.10 1 (3 87) Deleted j T 3.10-1(388) Deleted i T 3.10-1(389) Deleted T 3.10-1 (390) Deleted T 3.10-1 (391) Deleted T 3.10-1 (392) Deleted T 3.10-1 (3 93) Deleted i

T 3.10 1(394) Deleted f'T 7 3.10-1(395) Deleted T 3.10-1 (396) Deleted

( } T 3.10-1(397) Deleted pr\procs\ufsar\rev12\loep.wpf REV. 12 - MARCH 1998

uscF%%S R&gg REVISION T 3.10'-1 (398) Deleted T 3.10-1(399) Deleted

/ \ T .3.10-1 (4 00) Deleted (s_,/ T 3.10-1(401) Deleted T 3.10-1(402) Deleted T. 3.10-1 (4 03 ) Deleted T 3.10-1(404 ) Deleted T 3.10-1(405) Deleted T 3.10-1(406) Deleted T 3.10-1(407) Deleted T 3.10-1(408) Deleted T 3.10-1(4 09) Deleted T 3.10-1(410) Deleted T 3.10-1 (411) Deleted T 3.10-1 (412) . Deleted I T 3.10-11413) Deleted T 3.10-1 (414) Deleted T 3.10-1 (415) Deleted T 3.10-1(416) Deleted T 3.10-1(417) Deleted 1 T 3.10-1(418) Deleted )

T 3.10-1(419) Deleted T 3.10-1(420) Deleted T 3.10-1(421) Deleted T 3.10-1(422) Deleted T 3.10-1 (423) Deleted T 3.10-1 (424) Deleted T 3.10-1(425) Deleted T 3.10-1(426) Deleted T 3.10-1(427) Deleted T 3.10-1(428) Deleted T 3.10-1(429) Deleted T 3.10-1(430) Deleted T 3.10-1 (4 31) Deleted T 3.10-1(432) Deleted T 3.10-1 (4 33) Deleted

(~'N T 3.10-1(434 ) Deleted T 3.10-1 (4 35)

( ,f Deleted T 3.10-1 (4 36) Deleted T 3.10-1(437) Deleted T 3.10-1 (438) Deleted

- T 3.10-1 (4 3 9) Deleted T 3.10-1 (44 0) Deleted T 3.10-1 (441) Deleted T 3.10-1 (442) Deleted T 3.10-1 (44 3) Deleted T 3.10-1 (444 ) Deleted T 3.10-1 (44 5) Deleted T 3.10-1 (4 4 6) Deleted T 3.10-1 (44 7) Deleted T 3.10-1 (44 8) Deleted T 3.10-1 (44 9) Deleted T 3.10-1 (4 50) Deleted T 3.10-1 (4 51) Deleted

- T 3.10 1 (4 52) Deleted T 3.10-1(453) Deleted T 3.10-1 (454 ) Deleted T 3.10-1 (4 57) Deleted T 3.10-1 (4 55) Deleted T 3.10-1(4 58) Deleted T 3.10-1 (4 56) Deleted T 3.10-1 (4 59) Deleted T 3.10-1 (4 6 0 ) Deleted T 3.10-1 (4 61) Deleted T 3.10-1 (462) Deleted T 3.10-1(463) Deleted T 3.10-1 (464 ) Deleted T 3.10-1 (4 6 5) Deleted T 3.10-1 (466) Deleted T 3.10-1(467) Deleted T 3.10-1 (4 6 8 ) Deleted O T 3.10-1 (4 68)

T 3.10-1 (469)

-Deleted Deleted p:\procs\ufsar\rev12\loep.wpf REV. 12 - MARCH 1998

e#5Nb%2 EAGE REviEIQH 4

7 3.10 21(470) Deleted T 3.10-1 (471) Deleted T 3.10-1 (4 72) Deleted km T 3.10-1(473) Deleted #

T 3.10-1(474) Deleted T 3.10-1(475) Deleted T 3.10-1 (476) Deleted T-3.10-Il477) Deleted T 3.10-1(478) Deleted T 3.10-1(479) Deleted T 3.10-1(480) Deleted

. T 3.10-1(4 81) Deleted T 3.10-1(482) Deleted T 3.10-1(4 83) ' Deleted T 3.10-1(4 84 ) Deleted T 3.10-1(485) Deleted T 3.10-1(486) Deleted T 3.10-1 (487) Deleted T 3.10-2 (1) 0 T 3.10-2 (2) 0 T 3.10-2 (3 ) 0 T 3.10-2 (4) 0 T 3.10-3 0 T 3.10-4 (1) 0 T 3.10-4 (2) 0 T 3.10-4 (3) 0 F 3.10-1 0

.F 3.10-2 0 F 3.10-3 0 F 3.10-4 0 3.11-1 3 3.11-2 0 3.11-3 11 3.11-4 0 3.11-5 0 i

r 3.11-6 0 l 3.11-7

( 3.11-8 0

0 3.11-9 0 3.11-10 t

! 0 3.11-11 0 3.11-12 0 3.11-13 0 3.11-14 0 3.11-15 0 3.11-16 0

- 3.11-17 3 3.11-18 0 T 3.11-1(1) Deleted T 3.11-1 (2) Deleted T 3.11-1(3) Deleted {

T 3.11-1 (4 ) Deleted T 3.11-1(5) Deleted

  • T 3.11-1(6) Deleted T 3.11-1 (7) Deleted T 3.11-1(8) Deleted T 3.11-1(9) Deleted T 3.11-1 (10) Deleted T 3.11-1(11) Deleted T 3.11-1(12) Deleted T 3.11-1 (13 ) Deleted T 3.11-1 (14 ) Deleted T 3.11-1 (15) Deleted i T 3.11-1 (16) Deleted 1

T 3.11-1 (17) Deleted T 3.11-1(18) Deleted T 3.11-1 (19) Deleted j T 3.11 1(20) Deleted i

T 3.11-1 (21) Deleted T 3.11-1(22) Deleted

[\

(p) T 3.11-1 (23 ) Deleted T 3.11-1(24) Deleted p \procs\ufsar\rev12\1oep.wpf REV. 12 - MARCH 1998

I 2&GE REVISION  !

T 3.11 11(25) Deleted T 3.11-1 (26) Deleted T 3.11-1(27) Deleted

\s,)) T 3.11-1 (28) Deleted T 3.11-1 (29) Deleted T 3.11-1(30) Deleted T 3.11-1(31) Deleted T 3.11-1(32) Deleted T 3.11-1(33) Deleted l T 3.11-1 (34 ) Deleted T 3.11-1(35) Deleted T 3.11-1 (36) Deleted T 3.11-1(37) Deleted T 3.11-1(38) Deleted T 3.11-1(39) Deleted T 3.11-1 (4 0) Deleted T 3.11-1(41) Deleted T 3.11-1 (42) Deleted T 3.11-1(43) Deleted '

T 3.11-1(44) Deleted T 3.11-1(45) Deleted 3 T 3.11-1(46) Deleted l T 3.11-1(47) Deleted l

T 3.11-1(48) Deleted l T 3.11-1(49) Deleted i T 3.11-1(50) Deleted l

i T 3.11-1(51) Deleted T 3.11-1(52) Deleted T 3,11-1(53) Deleted T 3.11-1(54) Deleted T 3.11-1(55) Deleted

'T 3.11-1(56) Deleted T 3.11-1(57) Deleted T 3.11 1(58) Deleted T 3.11-1(59) Deleted T 3.11-1(60) Deleted T 3.11-1(61) Deleted 3 T 3.11-1(62) Deleted T 3.11-1 (63) Deleted T 3.11-1(64 ) Deleted T 3.11-1 (65) Deleted T 3.11-1(66) Deleted T 3.11-1(67) Deleted 7 3.11-1(68) Deleted 4 T 3.11-1 (6 9) Deleted T 3.11-1 (70) Deleted l 7 3.11-1(71) Deleted T 3.11-1(72) Deleted T 3.11-1 (73 ) Deleted T 3.11-1(74)

Deleted T 3.11 1 (75) Deleted T 3.11-1(76) Deleted  !

T 3.11-1(77) Deleted T 3.11 1 (78) Deleted

  • T 3.11-1(79) Deleted T 3.11-1(80) Deleted T 3.11-1(81) Deleted T 3.11-1 (82 ) Deleted T 3.11-1 (83) Deleted T 3.11-1 (84 ) Deleted T 3.11-1(85) Deleted T 3.11-1(86) Deleted i

T 3.11-1(87) Deleted T 3.11-1 (8 8) Deleted

( T 3.11-1(89) Deleted l T 3.11-1 (90) Deleted T 3.11-1 (91) Deleted T 3.11-1(92) Deleted T 3.11-1(93) Deleted T 3.11-1(94) Deleted T 3.11-1(95) Deleto3 I T.3.11-1(96) Deleted T 3.11-1(97) Deleted p:\procs\ufsar\rev12\1oep.wpf REV. 12 - MARCH 1998

uME-T99@S R&GE REVISION T 3.11-1(98) Deleted T 3.11-1(99) Deleted T 3.11-1(100) Deleted T 3.11-1(101) Deleted k T 3.11-1(102) Deleted T 3.11-1 (103 ) Deleted T 3.11-1(104) Deleted T 3.11-1(105) Deleted T 3.11-1(206) Deleted T 3.11-1(107) Deleted T 3.11-1(108) Deleted T 3.11-1(109) Deleted T 3.11-14110) Deleted T 3.11-1(111) Deleted T 3.11-1(112) Deleted T 3.11-1(113) Deleted T 3.11-1(114) Deleted T 3.11-1(115) Deleted T 3.11-1(116) Deleted T 3.11-1(117) Deleted T 3.11-1(118) Deleted T 3.11 1(119) Deleted T 3.11-1(120) Deleted T 3.11-1(121) Deleted T 3.11-1(122) Deleted T 3.11-1(123) Deleted T 3.11-1(124) Deleted T 3.11-1(125) Deleted T 3.11-1(126) Deleted T 3.11-11127) Deleted T 3.11-1(128) Deleted T 3.11-1(129) Deleted T 3.11-1(130) Deleted' T 3.11-1(131) Deleted T 3.11-1 (132) Deleted T 3.11-1(133) Deleted T 3.11-1(134) Deleted T 3.11-1(135) Deleted T 3.11-1 (136) Deleted T 3.11-1(137) Deleted T 3.11-1 (13 8) Deleted T 3.11-1(139) Deleted T 3.11-1(140) Deleted T 3.11-1 (141) Deleted l

T 3.11-1(142) Deleted 7 3.11-1(143) Deleted l

i T 3.11-1(144) Deleted

! 7 3.11-1(145) Deleted T 3.11-1 (146) Deleted T 3.11 1(147) Deleted T 3.11-1 (14 8) Deleted T 3.11 1(14 9) Deleted T 3.11-1(150) Deleted T 3.11-1 (151) Deleted

- T 3.11-1 (152) Deleted T 3.11 1(153) Deleted T 3.11-1 (154) Deleted T 3.11-1 (155) Deleted T 3.11-1 (156) Deleted T 3.11-1 (157) Deleted T 3.11-1 (158) Deleted T 3.11-1 (159) Deleted T 3.11-1 (160) Deleted

,T 3.11-1(161)

Deleted T 3.11-1(162) Deleted T 3.11-1 (163) Deleted T 3.11-1(164) Deleted T 3.11-1 (165) Deleted T 3.11-1(166) Deleted T 3.11-1(167) Deleted T 3.11-1(168) Deleted T 3.11-1 (169) Deleted T 3.11-1(170) Deleted p:\procs\ufsar\rev12\1oep.wpf REV. 12 - MARCH 1998

N Pang trviEION 6

T 3.11-1 (171) Deleted

<- T 3.11-1(172) Deleted

\,)

T 3.11-1(173)

T 3.11-1 (174)

  • 3.11-1(175)

Deleted Deleted Deleted 1 3.11-1(176) Deleted T 3.11-1(177) Deleted T 3.11-2 (178) Deleted T 3.11-1(179) Deleted T 3.11-1 (180) Deleted T 3.11-11181) Deleted T 3.11-1(182) Deleted T 3.11-1(183), Deleted T 3.11-1(184) Deleted T 3.11-1 (185) Deleted T 3.11-1(186) Deleted T 3.11-1 (187)- Deleted T 3.11-1 (188) Deleted T 3.11-1(189) Deleted T 3.11-1(190) Deleted T 3.11-1-(191) Deleted T 3.11-1 (192) Deleted T 3.11-1(193) Deleted T 3.11-1(194) Deleted T 3.11-1(195) Deleted

  • T 3.11-1(196) Deleted T 3.11-1 (197) Deleted T 3.11-1(198) Deleted T 3.11-1(199) Deleted T 3.11-1(200) Deleted T 3.11-1 (2 01.) Deleted T 3.11-1(202) Deleted T 3.11-1 (203) Deleted T 3.11-1 (204) Deleted T 3.11-1(205) Deleted T 3.11-1 (206) Deleted T 3.11-1(207) Deleted

( T 3.11-1(208) Deleted T 3.11-1 (209) Deleted T 3.11-1(210) Deleted T 3.11-1(211) Deleted T 3.11-1 (212 ) Deleted T 3.11-1 (213 ) Deleted 7 3.11-1(214) Deleted T 3.11-1(215) Deleted T 3.11-11216) Deleted T 3.11-1 (217) Deleted T 3.11-1 (218) Deleted T 3.11-1 (219) Deleted T 3.11-11220) Deleted T 3.11-1 (221) Deleted T 3.11-1 (222) Deleted T 3.11-1(223) Deleted T 3.11-1 (224 ) Deleted

  • T 3.11-1 (225) Deleted T 3.11-1 (226) Deleted T 3.11-1 (227) Deleted T 3.11-1 (228) Deleted T 3.11-1(229) Deleted T 3.11-1(230) Deleted T 3.11-1 (231) Deleted T 3.11-1(232) Deleted

! T 3.11-1(233) Deleted T 3.11-1 (23% ) Deleted T 3.11-1(235) Deleted

'T 3.11-1 (236) Deleted T 3.11-1(237) Deleted T 3.11-1 (23 8) Deleted T 3.11-1 (23 9) Deleted T 3.11-1 (24 0)~ Deleted T 3.11-1 (241) Deleted O .

T 3.11-1 (242)

T 3.11-1 (243)

Deleted Deleted p \procs\ufsar\rev12\1oep.wpf REV. 12 - MARCH 1998

c895'W5?S g REVISION T 3.11-1 (244) Deleted T 3.11-1 (24 5) Deleted

.gg T 3.11-1 (246) f Deleted T 3.11-1 (24 7) Deleted T 3.11-1 (24 8) Deleted T 3.11-1(24 9) Deleted T 3.11-1 (250) Deleted T 3.11-1 (251) Deleted T 3.11-1(252) Deleted T 3.11-1(253) Deleted T 3.11-1 (254 ) Deleted T 3.11-1(255) Deleted T 3.11-1(256) Deleted T 3.11-1(257) Deleted T 3.11-1(258) Deleted -

T 3.11-1(259) Deleted T 3.11-1 (260) Deleted T 3.11-1 (261) Deleted T 3.11-1(262) Deleted T 3.11-1(263) Deleted T 3.11-1(264) Deleted T 3.11-1(265) Deleted T 3.11-1 (266) Deleted T 3.11-1(267) Deleted T 3.11-1(268) Deleted T 3.11-1(269) Deleted i

T 3.11-1 (270) Deleted

' T 3.11-1 (271) Deleted i

T 3.11-1 (272) Deleted T 3.11-1(273) Deleted

[

T 3.11-1(274) Deleted T 3.11-1(275) Deleted T 3.11-1 (276) Deleted T 3.11-1 (277) Deleted T 3.11-1 (278 ) Deleted T 3.11-1 (279) Deleted T 3.11-1 (2 8 0) Deleted

,(

l T 3.11-1 (2 81)

T 3.11-1 (282)

Deleted Deleted T 3.11-1(283) Deleted T 3.11-1 (284 ) Deleted T 3.11-1(285) Deleted T 3.11-1 (286) Deleted T 3.11-1 (287) Deleted T 3.11-1 (288) Deleted T 3.11-1(289) Deleted i

' T 3.11-1(290) Deleted T 3.11-1 (291) Deleted

{ T 3.11-1 (2 92) Deleted

  • T 3.11-1 (293 ) Deleted T 3.11-1 (294) Deleted T 3.11-1 (295) Deleted T 3.11-1 (296 ) Deleted T 3.11-1 (2 97) Deleted T 3.11-1 (2 9 8) Deleted l T 3.11-1 (299) Deleted T 3.11-1 (3 00) Deleted T 3.11-1 (3 01) Deleted T 3.11-1 (302) Deleted i

T 3.11-1(303) Deleted T 3.11-1 (3 04 ) De.leted T 3.11-1 (305) Deleted T 3.11-1(306) Deleted T 3.11-1 (3 07) Deleted T 3.11-1 (3 08) Deleted T 3.11-1 (309) Deleted T 3.11-1 (310) Deleted T 3.11-1 (311) Deleted T 3.11-1(312) Deleted T 3.11-1 (313) Deleted

/'~' T 3.11-1(314) Deleted T 3.11-1(315) Deleted

( , T 3.11-1(316) Deleted p:\procs\ufsar\rev12\1oep.wpf REV. 12 - MARCH 1998

cecQFL47b14 R&gg- REVISION j

T 3.11'-1 (317) Deleted T 3.11-1(318) Deleted T 3.11-1 (319) Deleted

\s_j/ T 3.11-1(320) Deleted T 3.11-1 (321) Deleted T 3.11-1 (322) Deleted T 3.11-1(323) Deleted T 3.11-1(324) Deleted T 3.11-1(325) Deleted T 3.11-1(326) Deleted T 3.11-1 (327) Deleted T 3.11-1(328) Deleted

, T , 3.11-1 (32 9) Deleted T 3.11-1(330) Deleted T 3.11-1 (331) .

Deleted T 3.11-1(332) Deleted T 3.11-1(333) Deleted T 3.11-1(334) Deleted T 3.11-1(335) Deleted T 3.11-1(336) Deleted T 3.11-1 (337) Deleted T 3.11-1(338) Deleted 4

T 3.11-1 (339) Deleted T 3.11-1(340) Deleted T 3.11-1(341) Deleted T 3.11-1(342) Deleted T 3.11-1(343) Deleted T 3.11-1(3 44) Deleted T 3.11-1 (34 5) Deleted T 3.11-1 (346) Deleted T 3.11-1 (347) Deleted T 3.11-1(.148) Deleted T 3.11-1 (34 9) Deleted T 3.11-1 (3 50) Deleted T 3.11-1 (3 51) Deleted T 3.11-1 (3 52) Deleted

[\ T 3.11-1 (353) Deleted T 3.11-1 (354 )

(,,j/ T 3.11-1 (355)

Deleted Deleted T 3.11-1 (356) Deleted T 3.11-1 (357) Deleted T 3.11-1(358) Deleted T 3.11-1 (3 59) Deleted T 3.11-1 (360) Deleted T 3.11-1 (361) Deleted T 3.11-1(362) Deleted T 3.11-1 (3 63) Deleted T 3.11-1 (364 ) Deleted T 3.11-1 (365) Deleted T 3.11-1 (366) Deleted l

T 3.11-1 (367) Deleted l T 3.11-1 (3 68) Deleted T 3.11-1 (36 9) Deleted T 3.11-1 (370) Deleted T 3.11-1 (371) Deleted T 3.11-1 (3 72) Deleted T 3.11-1 (373) Deleted ,

l T 3.11-1(374) Deleted

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T 3.11-1 (3 80) Deleted l T 3.11-1 (3 81) Deleted T 3.11-1(382) Deleted T 3.11-2 (1) Deleted T 3.11-2 (2) Deleted T 3.11-2 (3) Deleted T 3.11-2 (4 ) Deleted T 3.11-2(5) Deleted T 3.11-2(6)

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T 3.11 2 (22) DELETED T 3.11-2 (23) DELETED T 3.11-2 (24) DELETED T 3.11-2 (25) DELETED T 3.11-2 (26) DELETED T 3.11-2 (27) DELETED T 3.11-2(28) DELETED T 3.11-2 (29) DELETED T 3.11-2 (30) DELETED T 3.11-2 (31) DELETED T 3.11-2 (32) DELETED T 3.11-2 (33) DELETED T 3.11-2 (34) DELETED T 3.11-2 (35) DELETED T 3.11-2 (36) DELETED T 3.11-2 (37) DELETED T 3.11-2 (3 8) DELETED T 3.11-2 (3 9) DELETED T 3.11-2 (4 0) DELETED T 3.11 2 (41) DELETED T 3.11 2 (42) DELETED T 3.11 2 (43) DELETED T 3.11-2 (44 )

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P:\Procs\ufsar\rev12\1oep wpf REV. 12 - MARCH 1998

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1 4.4-15 0 4.4-16 4 4.4 17 4 4.4-18 4 4.4-19 7 4.4-20 4 4.4-21 4 4.4-22 8 4.4-23 DELETED 4.4-24 DELETED T 4.4 -1 (1) 4 T 4.4-1(2) 0 T 4.4-2 0 T 4.4-2a 4 74.4-3(1) 4 T 4.4-3 (2) 0 7 4.4-4 4 T 4.4-5 0 T 4.4-6 (1) 4 T 4.4-6 (2) DELETED

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. VOLUME VI Chapter 7 Tab N/A 7.0 1 1 7.0-11 1

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' l H.3-157 12 H.3-158 9 H.3-159 10 H.3-160 0 H.3-161 10 H.3 162 0 H.3-163 10 H.3-164 0 H.3-165 10 l H.3-166 0 i

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l H.3-221 H.3-222 12 H.3-223 3 H.3-224 0 H.3-225 0 H.3-226 9 H.3-227 9 l H.3-228 9 H.3-229 0 H.3-230 0 H.3-231 0 I \ H.3-232 0 l j H.3-233 0 H.3-234 9 H.3-235 0 T H.3-1(1) 0 T H.3-1(2) 0 T H.3-1(3) 0 T H.3-1(4) 0 T H.3-1(5) 0 T H.3-1(6) 0 T H.3-1(7) 0 T H.3-1(8) 0

  • T H.3-1(9) 0 T H.3-1 (10) 0 T H.3-1 (11) 0 T H.3-1(12) 0 T H.3-1 (13 ) 0

. T H.3-2 (1) 9 T H.3 2 (2) 11 l T H.3-2 (3) 9 I T H.3-2 (4) 11 T H.3-2 (5) 9 I T H.3-2 (6) 9 T H.3-2(7) 10 I. T H.3-2 (8) 9 T H.3-2 (9) 9 i T H.3-2 (10) 11 T H.3-2 (11) 9 T H.3-2(12) 11 T H.3-2(13) 9 l T H.3-2 (14) 9 l T H.3-2 (15) 9 T H.3-2 (16) 9 T H. 3-2 (17) 9 T H.3-2 (18) j T H.3-2 (19) 9 9

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' T H.4 -18 (1) 3 T H.4-18 (2) 7 T H. 4 -18 (3 ) - 5 T H.4-18 (4) 5 T H.4-19 (1) 10 T H 4-19 (2) 5 T H.4-20 (1) 7 T H.4-20(2) 3 T H.4-20 (3) 3 T H.4-20 (4) 5 T H.4-21 (1) 7 T H.4 21(2) 3 T H.4-21(3) 4 -

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T H.4 24 (3) 3 T H.4-24 (4) 3 T H.4-24 (5) 3 T H.4-25(1) 9 T H.4 25 (2) 9 T H.4 26 3 T H.4-27 (1) 9 T H.4-27 (2) 9 T H.4-28 3 T H.4 29 9 T H.4-30 3 T H.4-31 3 T H.4-32 (1) 3 T H.4-32(2) 3 T H.4-32 (3) 3 T H.4-33 (1) 0 T H.4-33 (2) 3 T H.4-34 3 T H.4-35 (1) 0 T H.4-35(2) 3 k, T H.4-36 9 p:\procs\ufsar\rev12\1oep.wpf REV. 12 - MARCH 1998

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T H.4-125 3 T H.4-126 3 F H.4-1 12 F H.4-2 12 F'H.4-3 3 F H.4-4 3 H.5-1 0 Appendix I Tab N/A l

l I.0-1 11 t Appendix J Tab N/A l

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