ML20081J657
| ML20081J657 | |
| Person / Time | |
|---|---|
| Site: | Midland |
| Issue date: | 04/12/1983 |
| From: | CAROLINA POWER & LIGHT CO. |
| To: | |
| Shared Package | |
| ML20079G637 | List: |
| References | |
| FOIA-83-397 NUDOCS 8311090069 | |
| Download: ML20081J657 (117) | |
Text
{{#Wiki_filter:jh TEST PROGRAM STATUS AND REVISION 12 - TEST SCHEDULE t PREPARED BY: TECHNICAL DEPARTMENT MIDLAND ENERGY CENTER CONSUMERS P0k'ER COMPANY April 12, 1983 8311090069 830809 ~ PDR FOIA QARDE83-397 pop L
r~ l TABLE OF CONTENTS I. INTRODUCTION II. TEST PROGRAM SCHEDULE STATUS (AS OF 3-31-83)
- 1. System Turnovers 2.
Testing Activities Suc=ary
- a. Electrical
- b. Tnstrumentation and Control
- c. Nuclear Steam Supply Systems
- d. Auxiliary Systems
- e. Feedwater/ Condensate
- f. Turbine /HVAC
- g. Process Steam
~
- h. Programmatic Testing 3.
Procedure Development
- a. Status - Procedure Development and Approval
- b. Status - Tests Completed III. PROJECT TEST SCHEDULE - REVISION 12 A.
Rev 12 Test Schedule Philosophy
- 1. 95% of Unit 1 testing will be performed prior to Unit 2 Fuel Load
- 2. Inherent time frames are built into the merged schedule to absorb Punchlist Open Items following major Milestone Testing.
- 3. No two Unit 1 & 2 Milestone events are required to be performed simultaneously (except ILRT and HFT).
- 4. Separation of Fuel Loads.
- 5. LLRT/ILRT/ SIT are performed nearly piggy-back during the same time frames.
- 6. Integrated ESFAS Test would be a common Test Phase.
- 7. Rev 11 disadvantages have become less significant in Rev 12
- 8. Initial Turbine Roll - Milestone added to allow early testing prior to HFT.
B. Rev 12 Test Program Plans
- 1. Planned Activities Leading to the Next Target Milestones
- 2. Auxiliary System Flushes into Reactor Vessel
- 3. Refueling Canal Hydro and Wet Fuel Handling Test 1
- 4. Reactor Coolant System Cold Hydro
- 5. Feedwater System Flush
- 6. Condenser Vacuum
- 7. Initial Turbinc Roll
- 8. Hot Functional' Testing i
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- 9. Integrated Leak Rate Test
- 10. Integrated Safeguards Features Actuation System Test
- 11. Fuel Load C.
Manpower for Rev 12 List of Figures and Tables Figure 1 - Actual System Turnovers and Rev 12 Demand Turnover curve Table 1 - Procedure Development and Approval Status Report Figure 2 - Precedure Development - Curve of Actual vs Coal Table 2 - List of Tests Completed Figure 3 - Curve of Testing Completions - Actual and Rev 12 Projections Figure 4 - Plan for two unit startup, Rev 12 Table 3 - Rev 12 Listing of Test Procedures and Time Frames for Completion. Figure 5 - Manpower Curves \\ 9 e T ,i 1 e +
1 ~ CASE LOAD FORECAST REPORT - APRIL 1983 TEST PROGRAM I. INTRODUCTION This report contains; 1. The status of the Test Program Schedule as of March 31, 1983, and 2. Revision 12 of the Test Schedule based upon the Two-Unit startup concept. ( The basic premise in the development of this schedule ~is to estab-lish a safe, organized, and logical approach to meeting the Project Objectives in a timely manner without sacrificing quality. e t-
m i I. l i e II. TEST PROGRAM SCHEDULE STATUS The status of the Test Program $chedule as of March 31, 1983 is present-ed in this section in terms of System Turnovers, what we have accom-plished so far in the Test Program, and where we are relative to Test Program Milestones leading to initial fuel load. m t t o G = w y --t-- y- -wy n-9 e5
l. System Turnovers - Summary Total scoped Systems (approximate) - 850 Total System Turnovers Accepted 543 Remaining System Turnovers 307 % complete = 543 - 64% 850 .__.. - ~. Figure 1 shows a graph of actual number of systems accepted thru f f March 31, 1983. It also shqws the remaining system turnovers b_ased upon Revision 12 Turnover demand dates. The numbers in parenthesis show ACTUAL % complete. i 2. TESTING ACTIVITIE3
SUMMARY
The status of the Test Program Network as of 3-31-83 is presented-below. It should be noted that " checkout complete" as reported in this Section may not be necessarily 100% complete due to remaining punchlist open items such as design changes, corrective actions, and turnover exceptions requiring checkout and/or retest.
- a. ELECTRICAL SYSTEMS 321 of 371 Electrical Systems have been' turned over to CPCo.
(87 %). 8-[ % have been initially checked out and energi:ed. No
3 l Preoperational tests or Acceptance Tests have started. Significant activities completed and/or in progress include: BOTH UNITS' MAIN POWER XFMRS and STATION POWER XFMRS have been turned over and checked out. The Common Startup Power XFMRS are energized and in operation. Final " Pre-energize" testing will be -performed in 1983. Backfeed from 345 KV System is dependent on Turnover of Main Generator Protection and Microwave Systems. - all 6.9 KV BUSSES, 4.16 SV Busses, have been energized; maj or portions of 480 VAC Load Control Centers, 460 VAC Motor Control Centers, 250 VDC Motor Control Centers, 125 VDC Control Power Panels,120 VAC Instrument Power Panels, and 480 VAC Distribution Panels have also been energized and are in operation. QA overinspection of class lE cable routing is 91% complete. Electrical Reactor Building penetration repairs and replacement resulting from rodent damage and faulty Bunker-RAYMO modules is 95% complete.
- b. Instrumentation and control (I&C) Systems 36 of 69 I&C Systems have been turned over to CPCo (12 %).
i e
l l i. 37% of 18C Systems have been checked out. 1 l No Pre-operations / Acceptance Tests have started. Six specific (. [ procedures have been completed. l l l .1 Significant Activities completed and/or in progress include: - Plant computer installation, checkout, energization, and vendor i acceptance test are complete. Computer points input-verification I is in progress and vill continue throughout the Preoperational I Test Program. 1 Unit Control Room Annunciator Cabinets (both Units), Evaporator Building Annunciator Logic cabinets, and Radwaste annunciator logic cabinet, have been energized and logic verification completed. The HVAC Annunciator logic cabinet has been energized. Non-Nuclear Instrumentation (NNI Cabinets and Modules both units) The electrical checkout and initial energization of NNI cabinets are complete. Incore Monitor Remote Analog Peripherals (both' units) - partial I&C checkout is complete. The Incore Guide Tube Clearance checks have been completed. i f i j l m._
r-CRD Stator Preinstallation check was completed on both Units. ICS cabinets and Modules (both units) - The electrical checkout is complete, the pre-turnover calibration of codules is complete; initial energi:ation of ICS cabinets is in progress including the Evaporator System Development Demand (ESDD) Cabinets. Instrument Racks - (Note: Each instrument rack represents one system) - Electrical checkout and energization, of the following instrument racks are comp,lete: Balance of Plant Instr. Rack 1C-49, 2C-49 IC-53, 2C-53 1C-166, 2C-166 OC-180 2C-146 OC-343 Radwaste Instrument Rack OC-167 Evaporator Instrument Rack OC-168 OC-281 Analog Isolation Cabinets 1C46, 2C46 - Electrical and I&C check-out are complete. 9 L 8
u Digital Isolation Cabinets IC47, 2C47 - Electrical and I&C checkout are complete. Process Steam Transfer Instrument Rack, including power supply and peripheral - electrical checkout, I&C checkout of power supply, and energization of Instrument Racks OC391 and OC386 are _complate. Boron Recovery and Liquid Waste Programmatic Controller System including remote I/O Cabinets - Prepower checks, and electrical checkout of I/O cabinets are complete, ladder checks are essentially complete except for design. changes requiring recest. t Radwaste Gas System Programmatic Controller System including remote I/O cabinets - prepower checks, Part 1 - Power ON prelimi-nary checks, and Part 2 Ladder checks are complete. C. Nuclear Steam Supply Systems (NSSS) 9 14 of 56 systems have been turned over to CPCo (or 25 %.) No Preop or Acceptance Tests have been started. One specific procedure (Unit 2 Decay Heat Removal Initial Pump Run) has been completed. l i Significant Activities' completed or in progress includ,e: V.
7 Turbine Bypass Valves - Unit 1 Electrical and IaC checkout complete; Unit 2 electrical checkout co=plete. - Unit 1 Reactor Vessel Internals Mcdification is in progress - Unit 2 Reactor Vessel Internals Modification complete; the HFT TToc~streen is installed / attached to the PLENUM; the CRD dummy guide assemblies being installed in the PLENUM. Unit 2 Reactor' Coolant Pump Motors - partial electrical checkout complete; all 4 RCPM's have been bumped for proper rotation and anti-rotation devices have been installed. Preparations are underway for initial motor runs. Unit 2 Decay Heat Removal System (portions in the Auxiliary Building) - Electrical and I&C checkout are essentially complete; Initial Pump Runs-Recire Mode, complete; Gravity flush to suction of DH Pumps and Velocity Flush of lines from pump discharge to BWST recirc lines complete. Unit 2 Makeup System (High Pressure Injection Pumps) - Gravity flush to MU pump suction complete; two of the 3 HPI pump motors have been run and preparations are underway to run the third HPI pump motor. e
s I,- Unit 1 & 2 Boronometer - Electrical checkout complete. l Unit 2 - Boric Acid Addition - The mix tank has been cleaned; i electrical and 180 checkout in progress Unit 1 & 2 Hydrazine and Lithium hydroxide - Electrical I&C, and mechanical checkouts complete. Nitrogen blow to hydrazine drum. complete. Unit 2 flush to suction of LIOH and Hydrazine Pumps complete. Unit 2 RB Spray suction piping - partial flush complete. Unit 2 Borated Water Storage Tank Outlet Piping - Flush to suction of DH pumps complete. The BWST Circulation pump initial run complete.
- d. AUXILIARY SYSTEMS i
26 of 84 Auxiliary systems have been turned over to CPCo (32 %). Preformance of two flush procedures (Unit 1 & 2 FH Bridge Air System Flush) and one Specific Procedure (Receipt of Dummy Fuel Assemblies and Control Rods) have been completed. N l 'f Significant Activities completed and/or in progress include:
y e Service Water Sluice Gates - I&C checkout complete; electrical checkout in progress. component cooling water - Portions of the system (B-Loop) required to provide cooling water to the RCP motors have been checked out and flushed; this includes piping to the CCW and JDecay. Heat Coolers and DH Pump Seal Coolers. Reactor Building Vent Header - Electrical checkout of valves complete. Radwaste pump seal water / headers - electrical checkout complete. Filter Handling - Electrical checkout complete. Primary Mixed Bed demineralizer - Electrical checkout complete. New Fuel Elevator - electrical checkout complete. Spent Fuel Pool Handling Bridge - electrical checkout complete Unit 1 Reactor Building Fuel Handling (FH) - electrical and IEC checkout compicte, portions associated with Dry Indexing Preoperational Test-(Hilestone LA) complete 8 9
10 I Unit 2 Reactor Building Fuel Handling - Electrical and I&C checkout complete, portions associated with Dry Indexing Preoper-ational Test (MILESTONE 2A) complete Unit 1 FH Transfer Mechanism - I&C checkout complete; Fuel Transfer Hydraulic System Flush in progress Unit 2 FH Transfer Mechanism - Electrical and I&C checkout complete FH Transfer Hydraulic System Flush in progress. Service Water Sy, stem - electrical c/o Main Header valves in progress, I&C checkout of common Header to the Turbine Building Service Water complete; electrical checkout Unit 1 & 2 Turbine Building Service water complete; electrical checkout Unit 2 Turbine Building service water complete. I Initial Pump and/or motor runs completed to date include: Primary Water Storage Transfer and Vacuum Pumps (Motor only), service water Travelling screens, four of the five service water pump motors, four of the five service water strainers, and one of the CCW pumps. e. Feedwater/ Condensate Systems i 55 of 100 ::s t.tems have been turned over to CPCo (55%).
~ 11 Performance of one Specific Procedure (Aux Boiler Initial Operation and Boilout) and 6 Flush ?rocedures, described below, have been completed. Significant Activities completed and/or in progress include: -9 nit 2-Condensate supply and Low Pressure Feedwater Heating - Electrical, I&C, and mechanical checkouts complete; condensate pumps initial run complete. Unit 1 & 2 Hotwell makeup and Rejection - Electrical and I&C checkout complete except for Unit 2 I&C checkout which is in progress. 6 Unit 1 & 2 Main Condenser - I&C checkout complete. Unit 1 & 2 Condenser Hotwell sampling - Electrical checkout complete. Common Feedwater crossconnect - electrical C/0 complete. Unit 2 Condensate Demineralizers and Associated Systems - Electrical and I&C C/0 in progress. Makeup Demineralizers - all checkouts complete, system is functional. e M
u l Demineralized Water Storage and Transfer - all checkout essentially complete; system is functional and providing primary source of Flush Water; Fluetes associated with the storage and transfer header branch lines to all hose stations, and Unit 1 & 2 Reactor Building piping, complete. Makeup Demineralizer Chemical Storage and Transfer - all system checkout and flushes complete; system is functional. { Condensate storage (common system) - partial electrical and IEC c.neckout complete, flush to Unit 1 &2 Auxiliary Feedwater Pump t recire lines complete. ( Unit 1 Condensate Storage - Tank has been cleaned; I&C C/0 complete. Unit 2 Condensate Storage - all system C/0 complete except for electrical C/0; tank has been cleaned; flush from tank to Hotwell complete (Milestone 2E). - Condensate Transfer - For the common system, all electric'l and a I&C C/0 complete; condtasate jockey and transfer pumps have been run; flush of the system is complete. Unit 1 system electrical and I&C C/0 complete. I i h l -l
13 Ammonium Hydroxide Storage and Transfer - The com=on unit electrical and I&C C/0 complete; chemical addition pumps have been coupled. The Unit 1 & 2 systems electrical and I&C C/0 complete. Hydrazine Addition System - Unit 1 & 2 Electrical and I&C C/O 6mple~t e. c Hogging / Exhaust Piping Vacuum Relief - Unit 1 & 2 I&C C/0 complete. - Circulating Water Supply - Unit 1 & 2 initial mot'or run of g circulating water pump motors complete. - Water Box Scavenging - Unit 1 & 2 Electrical and I&C C/0 complete. Acid Storage, Supply Distribution - Electrical checkout complete; pumps have been coupled. - Auxiliary Boiler - all system C/0 complete; both boilers have been fired and Auxiliary System flushes completed; boiler tuning and load test is in progress. Auxiliary Boiler Steatu Distribut$on - all system C/0 complete ~ .= team blow of main headers complete. i
A4 1 1 1 1 Air Compressors / Instrument Air Dryer - all system C/O complete; compressors are functional; presently clearing punchlist open items; air blows main header complete. Service Air Distribution - all system C/0 of the Unit 1, 2 and common headers complete; air blows to subheaders and branch lines fm progress. - Instrument Air Distribution - All system C/O complete; Instrument air is available to Evap, Bldg, Miscellaneous Buildings Dow pump house, Turbine Building (both units), and portions of the Auxiliary Building. Fire Water Supply / Distribution - System C/0 complete; Diesel Fire and electric pump initial runs is complete. System is supplying, site fire water protection. Transformer Deluge - I&C C/0 complete. Carbon Dioxide Fire Protection - I&C and Electrical C/0 in progress on those portions that are turned over. Building Deluge Protection - Electrical and I&C C/0 for portions of the system turne:d over is complete. I II
15 Hose Station Protection - Checkout of Hose Stations complete (to Warehouse 2. Turbine Building, Reactor Building, and Miscellaneous Buildings. - Nitrogen System - System C/0 complete; N blow / purge of system 2 complete; the distribution system is undergoing redesign work and -therefore flushing will have to be done over. Natural Gas Evap Bldg Iad) - System C/0 complete; flush of system complete. Vacuum Fume Hood (Evap Bldg Lab) - Elect C/O and piping flush complete. Acid and Caustic Waste - Unit 2 sumps have been cleaned; I&C and electrical C/0 complete; initial pump run of Neutralizing sump pump complete. f. Turbine /HVAC Systems 7J[ of 150 systems have been turned over to CPCo (50%). Performance of one Acceptance Test (D G Electric Heat Test)'and 6 Flush Procedures as described below have been completed. Significant activities completed or in progess include: e t 9 4
At - Unit 1 & 2 Turbines - System C/0 complete; Turbine has been placed on turning gear. Unit 1 & 2 Turbine Generator Bearing Lube Oil Supply - System C/0 complete; 011 flush complete; system functional. --Genesator Hy and CO2 - Unit 1 & 2 I&C C/0 complete; preparations under way to perform Generator Air Drop Test. Unit 1 & 2 Hydrogen Sea,1011 - System C/0 complete except for I&C C/0. Oil flush complete. g Turbine Lube Oil Storage, Transfer, and Purification (Unit 1, 2, and Common) - All system C/0 complete; oil flush, complete; system functional. Cooling Pond Makeup Screens / Screen Wash - System C/0 complete: system is functional. Cooling Pond Makeup, traveling screens, sluice gates, trash racks - Cooling Pond has been filled with water, checkout of screen wash pumps, screens, makeup pumps, sluice gate, valves complete. Cooling Pond blowdown system checkout is in progress.. Hot Water Supply / Chemical Treatment Elcetrical C/O comp)ctc; ( initial motor run of hot water pumps complete.
l ~ 'll Plant Hot Water Heat Systems - Unit 1 & 2 Turbine Building electrical C/0 and initial motor runs complete; electrical C/0 Auxiliary Bldg Hot Water heat complete; Unit 2 electrical, I&C C/0 and initial motor runs complete; office, Service Building electrical, I&C C/0 complete including initial motor runs; Intake, Hypochlorination. Service Water Building electric heat-system-C/0 complete; Unit 1 & 2 Diesel Generator Building electric heat. - system C/0 complete - The Diesel Generator Building Electric Heat Acceptance Test is complete. Reactor Buidling Hot Water Heat (Unit 1, common) electrical C/0 complete; Process Evaporator Hot Water Heat electrical C/0 including initial motor runs complete; Auxiliary Building Safeguard Room Electric Heat - electrical and I&C, C/0 complete (common Unit; Unit 1 - electrical C/0 in progress); Guard House electric Heat - I&C and electrical C/0 complete. Turbine Building Chilled Water - Unit 1 & 2 I&C C/0 complete; chilled water pump moters were run and coupled; the system flushes are in progress. i Office / Service Building Chilled Water - Electrical.and I&C C/0 l complete; startup of chillers and pumps complete; proof flush is complete. 9 i e
18 Office / Service Building HVAC - System C/O complete, air balancing and setting of danpers complete. Chlorination Building HVAC, Cooling Pond MU Building HVAC, Cooling Pond Intake Building HVAC, Guard House HVAC, and Pond Blowdown Building HVAC - System C/O is complete. - Evaporator Building HVAC, Circulating Water Intake Building HVAC, Oily Waste Treatment Building HVAC, and Dow Condensate Return Pump House HVAC - electrical C/0 in progress. - Refuel Pool Air Supply (Unit 1) - electrical c/o in progress. i Domestic Water Storage, Transfer, and Heating - System c/o complete and system is functional. - Hydrogen Supply - Electrical and I&C C/O complete; purging H2 sysr.em with nitrogen complete (common system); Unit 1 & 2 H 2 system is functional up to the Main Generator and to the RCS MU Tank. Oily Waste System - Common Unit electrical and I&C c/o complete. Unit 1 electrical and I&C c/o complete and flush is complete; Unit 2 electrical and I&C c/o complete. (
{ 19 Turbine Bolt Heater Panels - Both Unit I heater panels have been turned over; one of the panels have been checked out. Four of the Unit 2 Heater panels have been turned over; of these 1 heater panel has been checked out.
- g. Process Steam 12 of 15 Process Steam Systems have been turned over to CPCo (80%).
Performance of one Flush Procedure (Demineralized Water Supply) has been completpd. Significant Activities completed and/or in progress include: Steam to HP Evaporator - I&C C/O complete, electr,1 cal C/0 in progress. condensate Return / Unit 2 Condenser, HP steam to Dow Isolation Valves - I&C C/0 complete LP Steam to Dow Isolation Valve - I&C C/O in progress. - Process Steam Blowdown to Dow - Electrical and I&C C/0 complete; motor run has been performed and coupling of pump to motors complete. ~ r
JU condensate return from Dow - Electrical, mechanical and I&C C/0 t complete (for CPCo equipment only). Condensate Chemical addition - electrical c/o complete; HP chemical Feed flush, sodium sulfite chemical feed flush and associated pump runs complete. condensate Supply / Vacuum Deaerator - system c/o complete; Dow Demineralized Water Tank (2.5 million gal) is fill d with water for flushes; initial demin pump run and flush complete, evap dearator feed pump initial run complete. Feedwater Supply - Electrical, Mechanical, and I&C C/0 is near r completion; initial motor run of HP Feed Pump motor is complete. Iron removal (Condensate Return) - Mechanical and I&C c/o complete. Iron Removal sump - system c/o and iron removal sump pump run complete. HP Boilers - Initial checkout, start up, and testing complete, all 3 boilers have been fired up. Process steam plant sample - I&C c/o complete.
r gi h. Programmatic Testing 3 of 5 systems were accepted by CPCo (60%) Significant activities completed and/or in progress include: - 2Ehe-Unit 1 & 2 Reactor Building Tendon Test Facility has been turned over as well as the Unit 2 RB Structural Integrity Test Facility. 3. Procedure Development
- a. The status of Procedure Development and Approval required for the Test Program is summarized below and detailed breakdown of each Procedure type and Discipline is shown on Table 1.
STATUS - PERCENT OF TOTAL Procedure Type Drafts In Review & Not Approval Total Written Cycle Approved Preoperaticual Test Procedure 268 23% 56% 21% Acceptance Test Procedures 128 29% 38% 33% i a 1
22-I Flush Procedures 168 2% 20% 69%- Specific Procedures 119 13% 21% 66% 3 l Generic Procedures 46 4 22% 74% { 729 16% 33% 45% (Total) (Not) (in) (Approved) (Written) (Review) ) n.,. Our goal is to have all Procedures approved by March 1984. Figure 2 shows a curve of Procedure Development - Actual vs } Scheduled. Based upon Rev 12 Test Schedule, we project that l procedures required to support Testing Activities will be developed and approved at least 2 months before the scheduled test start date. \\
- b. The status of Test Program Procedure Performance completions is.
summarized below and shown in detail in TABLE 2 and Figure 3. PROCEDURES COMPLETED Preoperational Tests completed - None Preoperational Tests started /not complete - 2 Acceptance Tests completed - 1 Acceprance Tests started (not complete) 0 Flushes completed - 16
23 Flushes started (not complete) - 17 I Specific Tests completed - 9 Specific Test started (not complete) - 23 Generic Tests / Checkout - Checkout procedures are performed for -all camponents, subsystems, controls, and similar items to ensure that they function properly and are installed correctly prior to the start of system Preoperational or Acceptance Testing. Due to the nature of. checkout (i.e. required for electrical, mechanical, and I&C), the status of checkout is presented below only as an approximate. The " completion" status is assumed that the i. checkout activity in itself is complete but there may be punchlist items that are still open and require checkout testing. In addition, the following guidelines were assumed in reporting checkout complete: Electrical - system is checked out and energized Mechanical System - electrical, I&C, and mechanical C/0 are complete I&C - electrical and I&C C/0 are complete e
l Generic Checkout DISCIPLINE Percent Complete Electrical 83 I&C 37 Turbine /HVAC 24 Feedwater/ Condensate-25 NSSS 4 Auxilit..f System 8 Process Steam _1_5 5 ratal 45% In summary, 45% of the Systems (850) in the Plant have been initially i checked out, and 4% of required Tests (Preop, Acceptance, Flush, and Specific) have been performed. 6 4 6 4 4 O
III. Projact Test Schaduld - Rsv 12_ A. Rev 12 Test Schedule Philosoph,1 The Rev 12 Test Schedule Philosophy is basically the same as Rev 11 relative to the dual Unit startup concept and is summarized in this section. Figure 4 shows Rev 12 Test sequence through commercial operation for both Units. 1. The majority (95%) of Unit 1 preoperational testing will be performed prior to Unit 2 Fuel Load. This will relieve. Unit 1 preoperational testing of restraints and delays due to Unit 2 license operating restrictions (technical specifications and surveillance testing). This will increase Unit 2 availability for power production owing to fewer i~ interferences from Unit 1 preoperational testing. 2. Inherent timeframes are built into the merged schedule to absorb corrective design and/or maintenance following major periods of integrated initial plant operation and preoperational testing. h Historically, nuclear plant test programs have suffered lengthy delays immediately following the Cold Hydro Test Phase and the Hot Functional Test Phase due to equipment or other operational failures. These failures have in the past slowed and in many cases stopped critical path progression onto the next succeedinq scheduled event (s) until repairs and/or design problems were resolved. These timeframes are shown on Figure 2 as " Resolve Punchlist Items t O
- 3.. No tus Unit 1 and Unit 2 milcotona cvanen ar2 raq'uired to bs performed simultaneously.
I It is impractical to focus site activities on more than one (1) major Unit 1 and Unit 2 milestone activity at the same time. The Midland Site is currently being staffed to permit simultaneous component testing with each Unit but not for simultaneous integrated milestone' testing. To do so would require two of every resource including the Testing Group, Operations Group, Bechtel, B&W, and CPCo Management support. Howeypr, o.ne major change in this philosophy is that, on Rev 12 the ILRT on one Unit is now scheduled to be performed simultaneously with UFT on the other unit. Since Testing. manpower required to perform ILRT is different from HFT, and since there is no system nor technical relationship between ILRT on one unit and HFT on the other unit, we believe that these two events can occur in parallel. 4. Separation of Fuel Loads Unit 1 and Unit 2 Fuel Loads are separated in time to support the Dow requirements with regard to process steam availability. 5. LLRT/ILRT/ SIT are performed nearly piggy-back during the same timeframes. Containment leak rate and structrual integrity testing would benefit by capitalizing on the commonality of equipment, personnel. and vendor support required to perform these tests. 6. The integrated ESFAS Test would be a common test phase. The safeguards system for the Midland Project is essentially a common system in that each plant is designed to respond to the others safeguards action. As such, this particular miles. cone test for each plant will include the other plant to the extent that neither could provide sustained power during conduct of the test. Thus, ESFAS testing vill be performed for each plant at approximately the same timeframe to avoid duplication of effrrt and interruptien of power i production from the "on-line" plant. ~ e
7. Several disadvantages with the Rev 11 schedule at the time it was developed have become less significant in terms of the Rev 12 schedule. These are: a. The potential problem of Spent Fuel Pool arca work interferring with fuel receipt would be less significant. Receipt and storage of new fuel on site imposes a number of restrictions on the fuel storage facilities (spent fuel pool -area). Typically, this means all activities are limited to either fuel handling itself or to routine maintenance of fuel handling related equipment. Usually, the license for receipt and storage of "special nuclear materials" (fuel) specifically prohibits construction activity or any other dirt generating or heavy maintenance work which could potentially affect cleanliness or structural integrity of the new fuel. Based upon Rev 12, only 7 systems remain to be turned-over to I I support fuel receipt. The potential problem of receiving and storing Unit 2 fuel conflicting with construction of Unit 1 (construction access to the inside of the containment) is now much less significant due to large amount of construction work completed. There is no longer the problem associated with 1 l Tendon tensioning on the Unit 1 RB interferring with fuel. l receipt because the Tendon tensioning is complete. l l b. ' Construction has a better chance of achieving the turnover { demand dates since there are only 307 of 850 turnovers I remaining. In addition, the CCP concept is predicated on quality work which would result in a more complete system at the time of turnover, i.e. less construction deficiencies. c. The feedwater and condensate system will not have to be laid up for a long time between chemical cleaning and the start of HFT. d. We have more time to reduce bau.k3og punch 11st open $tems. 6 4
8. Initial Turbine Roll - Three temporary high pressure boilers were installed in 1987 and fully tested to primarily allow early testing of the Proces.s Steam Systems which will result in considerabic schedule gains during power escalation testing of Unit 1. The Temporary High Pressure Boilers will also be capable of supplying steam to support Secondary Plant Testing including lpitial Turbine Roll. Early, Testing of the Secondary Steam Side of the plant and the Main Turbine will result in overall test l schedule gains in the secondary side of the Plant. A Turbine Roll Milestone (TR) has been added to the Test Sequence which is required to be accomplished approximately 1 to 2 months prior to HFT. The Pre HFT Schedule Gains is expected from being able to perform early testing of relief valves, initial steam leak tests, steam blows and flushes of Secondary Side Systems. B. REV 12 TEST PROGRAM PLAN This section describes the Test Program Plan Revision 12, both in narrative form discussing the Testing highlights and Tabular / Chart forms showing details of the Test Program. Figure 4 shows the Rev 12 Test Program Schedule Sequence showing the major milestones leading to initial fuel load and' commercial opera-tion. Figure 5 shows the full-blown Test Schedule in Tabular form listing the projected start dates for Preoperational, Acceptance, and Specific ti.nts as well as system flushes.
av i The narrative presented below pertain to Unit 2; however, due to similarities between the two units, it is applicable also to Unit 1. A
- 1. Planned Activities Leading to the Next Target Milestones (B-Auxi-liary System Flushes and G-Feedwater System Flushes)
The major thrust during this period is to complete system check-outs and flushes for the 543 systems now in the hands of CPCo (as of 3-31-83). In addition, approximately 60 System Turnovers and subsequent checkout and, flushing activities are projected to occur during this time frame. In the electrical area, turnover of the remaining electrical s e power systems and subsequent energization are scheduled to provide permanent power to run the mechanical systems. Backfeed from the 345 KV lines through the Station Transformers will be a major event to ensure that sufficient power is available to support major test events and their power load requirements, and allow testing of the electrical systems. In the I&C area, the major effort will be devoted to completing I&C chesiout of instrument racks, cabinets, modules, and annunciators that have been turned over to CPCo. The majority of the remaining I&C system turnovers are scheduled during this time frame to allow as much checkout as possible.in suppott of Mcchan-5 ical systems checkout and startup.. Verification of input / output
31 5 signals to the plant computer, annunciators, indicators, and controls will be an on-going process. In the primary systems area, seven (7) systems remain to be turned over to support Milestone B-Auxiliary System Flushes into the Reactor Vessel. The major objective during this period is to Theckdut and flush the individual auxiliary systems which support the Reactor Coolant System (RCS). These include the DH Removal, High Pressure Injection, RCP seal injection, RC makeup, Core Flood, RCS letdown, and p~rtions of the Reactor Coolant System o Cold leg piping. L g In the secondary side of the plant, the major testing activities involve checkout and flushing of the entire Condencate system and the Deaerators. Seven (7) Systems remain to be turned over to allow the next target Milestone (c). to start, which is the Main Feedwater Flush. ~ In the Evaporatei Building, major activities in 1983 vill include complete checkout and flush of Secondary and Tertiary Systems; complete flushing after remaining five (5) systems are turned over to CPCo; complete Tunnel modifications, and initial piping heatup using the HP Boilers. e e
32 t.
- 2. Milestone B-Auxiliary System Flushes into Reactor Vessel This Milestone involves, flushing o'f the low r.nd high pressure injection, and Core Flooding lines into the Reactor
( Vessel. Other activitics scheduled to be performed / completed during this period include: - Reactor Vessel internals modification and final clean up Reactor Vessel int 6rnals pre-HFT baseline inspection - Reactor Cooling Pump Motor initial runs, seal installation, alignment and coupling to pumps, i ) - After flushes to the RV, setting the Core Support Assembly - and filling the RV up to the flange level. - Conducting the Reactor internals Vent Valve Test, and surveillance specimen holder tube test.
- 3. Milestone C - Refueling Canal Hydro and Wet Fuel Handling Test The Milestone will verify the integrity of the Refueling Canal and the seal plate, and the FH equipment and fuel index test with refueling canal water at its full level (simulat$ng refueling i
operations). 9
33 Following CANAL Hydro, several key events take place in prepara-tion for RCS COLD Hydro. Some of the activities include the following: - Set Plenum in Reactor Vessel
- 3^7nstall'RV Head and Tension Studs
- Couple Control Rod Drive Mechanism lead screws and install closures'. - Fill and Vent Reactor Coolant System t - Draw Pressurizer Bubble, and Run Reactor Coolant Pumps.
- 4. Milestone D - RCS COLD HYDRO During this test, the RCS is pressurized to 125% of design pressure to verify system integrity.
During the Hydro phase, miscellaneous tests will be conducted such as: - RCP Flow Tests - HU/HPI/LPI/CF System Tests
- (
- Secondary Side, Steam Generator Hydro Test o
34 Following Unit 2 RCS depressurization, test and manpower emphasis will be shif ted to Unit 1. At this point, resolution of punchlist open items will be vigorously pursued and remaining RCS insulation will be installed in preparation for Unit 2 HFT.
- 5. Milestone C - Feedwater System Flush
- -. ~. Following the Condensate System flushes and Turnover of the Feedwater System, the Deaerator will be filled and the Feedwater Booster Pucps will be used to flush the feedwater system includ-ing piping through the condensate demineralizers. Other activ-ities during this time period include: Turnovers, checkout, and flush of remaining systems required for drawing vacuum in Condenser and initial Turbine, roll.
- 6. Milestone H - Condenser Vacuum Drawing a vacuum in the condenser involves the checkout and operation of the air ejectors, vacuum pumps, and the Circulating Water System. Any air inleakage to the condenser will be iden-tified and required at this time prior to HFT.
The permanent Auxiliary Boilers or temporary HP Boilers will be operated to provide steam to the gland seal stces: system and blanketira steam !{ on the Moisture Separator reheater, tube side. The HP Heeter O
35 Vents, drains and level control sytem will be in operation. The Turbine will be placed on turning gear with support systems such as Seal and Lube oil, and cooling water, in operation.-
- 7. Milestone TR - Initial Turbine Roll
--Due to the availability of the HP Boilers, the Main Turbine initial roll can be accomplished independent of the Reactor Coolant System and Steam Generators. To support initial Turbine roll the Condensate and portions of the Feedwater System have to be in operation and the Condenser in a vacuum. In addition, the following systems have to be functional: f - Main Turbine Steam Supply and drains. - Moisture Separator Reheater supply and drains - Stator Cooling s ~ - Turbine EHC System - Main Turbine Supervisory Instrumentation -s s - Main Generator Protection - Microwave System 1 ~ k
36 l
- 8. Milestone J - Hot Functional Testing During HFT, operation of the NSSS and secondary systems is integrated for the first time: The test will be conducted at ambient conditions, heatup, hot shutdown conditions (2,155 psig and 532F), and cooldown.
A significant number of Preoperational and Acceptance Tests will be conducted during this time.
- 9. Milestone K - Integrated Leak Rate Test _
The ILRT involves pressurizing the Containment above the Design Bases Accident Pressure and conducting a leak integrity check to ensure that the building and penetrations are air tight and. capable of isolating the structure in the unlikely event of an accident involving release of radioactivity. Prior to this test; the Local Leak Rate Test of all containment penetrations will be conducted. Based upon the two-Unit startup concept, the ILRT for Unit I will precede Unit 2 ILRT. 4
- 10. Milestone L - Integrated Saf'eguards Features Activation System Test i
Upon completion of HFT and ILRT, the next major milestone is the' SFAS Test. The prerequisites for this test involve: - Reactor Vessel Head Removal-4
~' f 37 - RV internals removal - Turnover, checkout, and testing of all system / components that receive a signal from the SFAS cabinets. During the SEAS test, operation of all emergency core cooling 'rystemt is checked. An emergency cor.dition will be simulated which will cause the plant's automatic safeguard systems to start in response to the signal. The Diesel Generators, llPI and LPI pumps, and containment spray pumps will be actuated. Required flow conditions will be verified as well as the order in which systems respond and the length of time elapsed before the re-sponse is initiated. +
- 11. Milestone M thru O - Fuel Load and Post Fuel Load Activities This phase of.the Test Program is called the Startup phase and will not be described in this report.
For planning purposes, Figure 2 shows the Major Milestone Target dates beyond Fuel Load, and shows a duration of approximately 4.5 months from Fuel Load to Commercial Operation (UNIT 2) and approximately 6~ months for Unit 1. 4 .g e 4
f 38 l 's C. Manpower Requirements - Revision 12 l l l Figure 5 shows manpower resource curves for Test Engineers, operators, electrical checkout (ECO) personnel, I&C Technicians, Maintenance Mechanics, Maintenance electricians, and Chemistry and Health Physics Technicians required to support Revision 12 of f the Test Schedule ~. ~ ( The Midland Plant has been staffed to support the Dual Unit Startup Plan. The resource availability for each of the above resources has been superimposed 'on the appropriate curves. It is also worth noting that a separate organization, Construction ( General Service Organization (CGS 0), will perform the majority of work; associated with Post Turnover Punchlist items. The present load of CGSO personnel is: Non-Manual - 55 ' Manual (Crafts) 100 Breakdown of Manual: Pipefitters and Welders 55 Electricians 35 i 10 I Laborers I )
39 In terms of shift work, the estimated durations in the Test Schedule were assumed as follows: 1. The majority of Post Turned-over activities were assigned a 5-day work week, 8 hrs / day. -4+ -Mainline Activities and Milestones (such as RCS initial fill and vent,.RCS Hydro, HFT, etc.) AND key systems (such as Auxiliary Systems required to support RCS Hydro) were assigned a 7 day work week, 24 hrs / day. 3. The majority of System Flushes and initial fill and vent operations requiring Operations support were assigned a 7 day work week, 24 hours / day. t / e t 9 t
r p N 0 0 ---- big __ go_ v-b -a g, D, 99 _ 809r_ 00_ / 543 / \\ ,483j-o--s-y u 7" \\ ir 's' 4w) 33_ @ A ssw) Rev. 1.2 'D EMAND-y ACTUAL TURb OVERS-, 283 47% W
- ,p 78 s/
Ar e9 LS4 l o_ 1 9,78 & 1980 & JFMAMJJASOND JFMAMJJASOND JFMA 3 IO 9 '90I MJJASONDJFMq 1982 1983 1984 1985 e ACTUAL TURNOVERS AND' REY.12 DEMAND TURNOVER CURVE ) 9 FIGURE I
~_--~ ~t9DEAND POWER PLANT PRC 4 DURE DEVELOPMENT-ACTUAL VS SCl@ ULED . c.v iNICAL DEPAR TMENT e PROG FtE S S SuuMARYAPPROVED 0:SCIPLIN E / COuPL E TE WT y@/s YEAR I 96 2 1 983 ' 904 102,03C4O t060706CAO FACT 7y uONTH J F M A M J J A S 0 N D J F M A M J J A S O N D J F M A M J J A,5 O_ N,D._ 0 '#4 //1. 95 AUXiltARY .=6 44 90-85- "F f6 go E L EC T RIC AL [ 35 .= 41 ,JD 75 w s " 7C FEEDWATER / /V6 fa7 U 65 / CONDENS AT E t 56 - - - - o 73 SJ $ 6C G OA L-~ o 55 j ll N INSTRUMENT / 13 3 0 CONTROL ', g 50 g g y 45 N j w 40 NUCLEAR STEAU 1 9 j 35 /4T = SUPPLY SYSTEu on w 30 ^ '7 58 6' a F 25 Y f,7 2C PROCf 35 STEAM f 25
- ,g.
,e 2' II / zo m& PROGR AM ATlC .at4 (f 14 47 5 g(- -- - TESTING & 7 PERFORMA**CE .cov 3 MONTH J F-M A M J J A S O N D J F M A M J J A S O N D J F M A M,J J A S O N D 77 YEAR I 982 1 983 1 9 8 _4 eJ6 TURBINE / HvAC "s' .eto y o o 3.i mmt_ sor m p arv oan at vissows ee em u*an anwuea /o 7z9 scALt wevi locsacNto ac p lonA=w mi. a. .37/ MIDLAND PLANT 32 j AS OF 3 83 PROCEDURE DEVELOPMENT DR AWING NO REV Caneusnera l I'~;, TPS-5 El ,,i.-.........,..........,......, 1 FIGURE 2 e e _ ~ _ _
alDLAND POWER PLANT PMCEDURE i ECriNICAL DEPAR TMENT P E.rfFO RM ANCE(LES S GP)- ACTUAL VS SCI ~3U PROG RE SS
SUMMARY
57 PERFORMANCE CURVE COMPLETEDV DISCIPLIN E / COuPLETE WT y@/4 YEAR I 982 1 983 I 9 E: 4 IO 2,0 3C40 $,0 6,0 7,06,C,90 FACT 7@ uONTH J F M 'A M J J A. S O N D J F M A M J J A5 ON D J F M A M J J A 5 OlN D 7 l AUXILIARY [---------,,A iit gs ,y 3 go s 85 095 'S BC ELEC TRIC AL g 8-7C FEEDwATER / .150 1o3 tas }- y CONOErdSATE ,,f, ,j g So o S c-l in /> 6 lNSTRUMENT / o [ SC CONTROL c >z 4r-w 40 NUCLEAR STEAM lf3 9F 0 R rv ti SCHED U L I: D -% 35 f__ $ so TPSl C O! 1P_E Fl( NS \\ / SUPPLY SYSTEM / aa' / o. N / \\ l AL? qb 2C PROCESS STEAu [._-- X Ti lAI TEST \\ / t5 r. oos / C DI. P _E T1 3 t. 5-7 / 10 F ROGR AM ATIC ,oS9 ej ' / TESTING a g 5.1FlMlAlAlJlJ AlSl0lf PERFORutWCE o o MONTH D J M A M JoJ A S O N O J F M A M J J 5 O N D 136 93 YEAR I 982 iSB3 1 984 TURBINE / HVAC b__,______ 8 ,,f. ,7 o .i
- v. _ is m
-w arv cais me viwws e c,. am a.= r4m /. o 693 scatt ev; locsoco seo lonAn u.~.t. ..n yg MIDLAHO PLANT PROCEDURE 6 AS OF 3-3I-83 PERFORMANCE i DRawsNG k. N(V a c.-, I '+' cT4'.., T P5-6 '2 i I i, i, u,...,,,-,, i .. i... i i FIGURE 3-TEST COMPLETIONS l %
i } g 'i 13 ? j g [ j. i s.' !&{i L; s tl i M--E 2 5 h a }..t } d 3 ~= f. d l.s k ' n,1 l i s,l ! 61 l E [ i r i g j i h af fJg ! 2. ' m g s m p 4, 4* 's "O G P ; lg !!! !!li1iisillii!Iil! y; t < a }3 !Ig I u e. a ag: a. 5>>>>>>>>>>>>>>>>>>>>>> . 'h ', '] a T.. J .it f_ M.i.. s : ,.i k$ 223 l(i < I I. ; f fs l g {is l- ..I;;e [,.,!E ,, y% _...... 9I I 6 ft a g#a Fj l t 5s L.!!.}! ,E L J 1', c. is
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e it p! i. I E W I 'h,5-t fC 3:e I y i p!* #_ J' -.......; I i a I s....... vt.,%o~ .W l i:5 i li. I n I. u-I. I' I !! ! E' t. 15' r*! I l Ic l g'/ I Na v. =
- i 1
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==......... ~ I U. I: r g Va !!,h.!.! G b ./I u}, E, e .4 n. i. = = - r . El- [g;. g* gg -s I t-v. r9 f:,
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2s,. MIDLAND PROJECT RESOURCE CURVE - REVISION 12 TESTING' ENGINEERS LEVELIZED MANPOWER PROJECTIONS TOTAL SYSTEMS - 41 T.E.. / D AY AVERA r.E 4 . _.m,:. 4 ..u. g n n. . s.. s... 1 ...n. 3.. .. r. m. 1644, ,3,,. hvitLJ eidrr i *It) { cuantreT / e a r.. r.t J-St SI . D r* .,,.-n J. -. -.. \\ l ,y, ',"s era. g / \\ / ...e 835 '. s e.,. ,. ~ ~ t4s . 9 9 8..% s s.n. . 4M S %*.4 ~~~' ,,,7, " " " ~ ~ L..
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S ~ L "3 1.~.7 T T. J '.'.i.~ 1.! F.'..J.~ 5.. CT~.1...5 *- l~ ~.r.7.1 - f -,y.JE-I _.r 4-":- r LZCI-.s,j _._C 1..4. r_;g;.T..Cd - r"gg,--= P ' r .1 _. I.. -. 8... : MON! Illy !!:.:;'10'?' l-tl:.4CF CUMUi. A! VF. RL*.:iUI;r;[- t1;Agr MANil;it. alm;. I Nr l.i A* l N'; H A..r MANtitlUR"; I N L,H E A.; i H U ! A.E 5 IJN ! ! 28.0 il FORCASil.D MONillt.Y MANiiOURS UNIT 2t.0 Tl. CUMULATIVE MANHOURS MANIIRS RI. SOURCE 21000 HANilRS RI. SOURCE 21000 IARC SCl4 32 iS TARG SCll 32 1-S CUM UNIT 1 TL. CUMdL ATIVL MANiiDURS ] UNIT I TI' FORCASilD MONTHLY MANil0URS f H ANilRS RISOURCL 21000 MANHRS RLSOURCL 21000 / TARG Scil 31 ES CUM 5 1ARG SCll 31 LS -..... -.. -.. - -.... - - -....... - - -. - - - - - - - - -.... - - ~ ~ - y-
MIDLAND PROJECT RESOURCE CURVE - REVISION 12 OPERATORS LEVEL.' ZED MANPOWER PROJECTIONS I i TOTAL SYSTEMS - 50 t ots /D AY AVEAAGE Muneuws ~ MAuf gDL4 s 25000. L233 Fee _ainsse g j W soeJJ. '.is m e ) 'I't n,ecer Aass. f crat asees eresaria j / n.eitas.u ty - 83 , -f ,,733,, 31 seter. -. - - - * ~ - / ..s,... ,\\ 9~"'~~~~.-- s# / ~~ ~~~~~ , a,.s;, \\ f .F .isesis \\
- 32o.
.sisses "~"" s 33487. 9else 8J3J. ,,,,,3 ~~~ L= .srs<a ~ ~~~- ~_ _ .senes m r-y 2- .se m soes. ~ = TT
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= L__ JH .,o< g
- ,4 i
,,g 7 i M I J I J I A I 1 1 D I N I D I J l F I M I A I M I J I J l A I s. I D I N I D I J I F e MONTHLY RESOURCE USAGE CUMULATIVE RESOURCE USAGE HANHOURS INCREASING BASE MANiiOURS INCREASING BASE UNIT 2&O CP I ORCASTFD MOHillLY MAlll10VRS UNIT 2&O OP CUMULATIVE MANHOURS MA!HiRS RLSOURCE 31100 MANHRS RLSOURCE 31l00
- TARG Scil'32 LS TARG SCH 32 ES CUM UNIT 1 OP CUMULATIVE MAN 110URS UNIT 1 OP I ORCASTI D MONTillY MANHOURS f
MANiiRS' RI. SOURCE 31100 MAHIIRS RI.SOURCL 31100 ,f TARG SCH 31 ES CUM i ARG Stil 31 LS 0
.., u. MIDLAND PROJECT RESOURCE CURVE - REVISION.1.2 ELECTRICAL CHECKOUT TECHNICIANS LEVELIZED MANPOWER PROJECTIONS TOTAL SYSTEMS - 30tf.c.o./ DAY AYUAGE MAlllWUlll suisecoulls
- 10000, t00000 y
0=. O e y nn s co suour. H I 0333J 7 " ~ ~ ~ " 'f Y ~ ~ ~ h N ,000. \\ .../ e \\ cvs as not t.tA r \\ M811A88LIIY-li .r--- N e000. \\ e \\ ,a* 9"" '~~ S .50000 ~ 3 _~ 33JJ3 3000. ~~~ 7._, C .:=.- -,2"" _E,,._. _Z-Z ' - ~ ~ " " 2000. ~ 1 = ~ ~'~ ,,oggy l,
_,__
=_ _- 3 y- ~< , Y ~ _~ = '~ g, _-;a-2 = = = = - = =
===- m - [M' ITTT1 0 m, ..+ i ..n 3 M I J J I 4 3 5 I D I 1 1 D I J l F I M I A I P1 i J I J f A I 5 I D 1 4 I D i 6 F i MONTHLY.'NESOU9CE.USACE CUMULATIVE RESOU.RCE USACE MANHOURS INCREASING BASE. MANHOURS.lHCREASING BASE, ~ UNIT 240 LCO FORCASTE0 M0HillLY MANil0VRS UNIT 2&O ECO. CUMUL AJ IVE MAHil0URS MANHRS Rt.' SOURCE 21200 MANHRS. RESOURCE 21200 .TARG SCH 32 ES TARG SCH 32 l'. S CUM UNIT I l.C0 CUMUL AT I VI-MANHOURS ~ UNIT I I.C0 I ORC ASTI.D HONillLY MANil0URS f MANHRS RI. SOURCE 21200 MANHRS Rt.SOURCt. 21200 f 1ARG SCH 31 ES TARG SCll 31 ES CUM n
/ M1DLAND PROJECT RESOURCE CURVE - REYlS1ON 12 INSTRUMENTATION AND CONTROL TECHNICIANS LEVELIZED MANPOWER PROJECTIONS TOTAL SYSTEMS - 50 li.it / DAY. Ano6E ~m.s m= me mn. 2 32100. .223300 2 /: I E asese. '.soooos j e / '.ir m e e rwe. X ~# s 1 ~~ ,,,e g / 310000
- 13000, p
I y I weenr s ic u ne ar m. avestmen rr - s.t. / o \\ i .i Soe3 [ s J 03000 .330000 m wes. im.' .rsa = . =.
- .=
d ,,n ',gg y .= ~ g, Z '~' ~~
- 2" i,
' - ~ ,y ~ ". ~. , _;;p. -T-r$ose r am. n ( /.*' \\' g _~ W ~22: l = C f ITTTl A i ? I J J I 4 1 1 1 3 I E I E I J I I 4 I A I al 1 J I J I I 5 I D I 4 1 3 1 J l F i MONTH'.Y RESOURCE USAGE CUMULATIVE RESOURCE USAGE pNHOURSINCREASING8.A$E MANHOURS INCREASING BASE U'417 260 I&C FORCASTED MONTHLY MANHOURS UNIT 2&0 I&C CUMULATIVE MANHOURS 1 MANHRd RLSOURCL 31300 MANHRS RESOURCE 31300 ~ .IARG 30H 32 LS TARG SCll 32 ES CUM "~ UNIT : I&C FORCAsil0 M0flifflY HANHOURS f l UNIT 1 I&C CUMULATIVE MANHOURS [ MANIF 7S RESOURCE 3I300 f MANilRS RESOURCL 31300 TARG SCH 31 LS CUM i T AllG SCit 31 ES J
p ,.n m m MIDLAND PROJECT RESOURCE. CURVE - REVISION 12 MAINTENANCE MECHANICS LEVELIZED MANPOWER PROJECTIONS TOTAL SYSTEMS - 13 MVr// DAY i A1AtLAtlibf7 fet M8tN-13 09 feare T99 3CAdd J. A* Mnws 5 C oM Atoff = 6% res t er. Tdeo Ill J ~ w l U 7C /s/s2 rnor Elfr l * ,oo,. se stair E( i 44844 I l l ,4 i e' 1 / - T 5 . m., ,e g f g s' \\ / f ,s g \\ / \\ l .33JJJ / e oo..' ,,s' l / \\ / .trate ,/ z u~' ,/ [ .J2222 4000. IM- .iiisi y, e s f N = z ... e p u!TJ1 g-nin. g S, i r. n = m_ O h A I R I J l J E A I E i D I E I D E J I F I M I A I M i J l J I A I i i 0 I N i D 1 J NDHTHLY RESOURCE USAGE CUMULATIVE RESOURCE USAGE. NANHOURS INCREASIN.G BASE MANHOURS INCREASING BASE A tim I T 260 NM FORCASTED MONTHLY MANHOURS UHli 2&O MM CUMUL AT.IVE MANil0VRS - ~ MAWIRS RESOURCF 31500 MANHRS RESOURCE 31500 i ,i TARG SC!: J2 I" TARG SCH 32 L S. CUM 1 UNIT 1 MM CUMULATIVE MANHOURS UNIT I ;aM FORCASTED MONTHLY MANHOURS f MAHHRS RLSOURCL 31500 ', MANU S HLSOURCL 31500 f TARC SCH 31 ES TARG SCH 31 ES CUM
w ouF,, i-MIDLAND PROJECT RESOURCE CURVE - REYlSiON I2 MAINTENANCE ELECTRICIANS LEVELIZED MANPOWER PROJECTIONS TOTAL SYSTEMS - 6 lucr / DAY YU oo 3"## 5 zt y j. ,/ { s .,,F. es nn nsaasuss - tv tutr. / k a n 43JJ [ / _20114 ,E e 'l / Y 1 s ...JJ, / \\ / i /, I j E JCSF. / 37300 / \\ / f 3JJJ.' j / _lSJes I 3300. p / .e3*t2 l \\ 3SS*- T~ I'* 813J. / o / / ',gg a g
- 4000, f~~~
/ iser. p ~ ,y L-J I d 33JJ. ~ / 1,/ '3rge \\ 3see , ~ ~ 7 ,,s seF ~. " ~~,.
- e" 3JJ.
~_ r ~~_ m 17t - u _ I t90 1 igg-_,, elqJ i A I M I J l J l A I 3 I O I 4 i D 1 J l F I M f A I M I 'J l J B A I I I O I N 1 D i J l F [ N0dfill'Y RESOURCE USAGE CUMULATIVE RESOURCE USACE HANil0VRS INCREASING BASE MANHOURS INCREASING BASE .? 'Z UNIT 2&O ME FORCASTED MONTHLY MANHOURS UNIT 2&O ME CUMULATIVE MANHOURS MANHRS RLSOURCE. 31400 MANHRS RLSOURCE 38400
- T ARG SCH 32 ES TARG SCH 32 ES CUM UNIT I MI. CUMULATIVL MANHOURS UNIT I ML FORCASTID MONTHLY MAllHOURS f
MANHRS RLSOURCf. 38400 MANilRS RLSOURCI. 31400 f TARG SCH 31
- f. S CUM IARG SCll 31 ES
~ 12 MIDLAND PROJECT RESOURCE CURVE - REVISION CHEMICAL AND HEALTH PHYSICS TECHNICIANS LEVELIZED MANPOWER PROJECTIONS TOT AL SYSTEMS - 10 tcNr / DAY """"Um ~ v. s"o Rgseon ct Avdit.AGLspr /kr tlHP 13 011*** W St*L0 50' 1 [ { -'N V 6 se " b y coast.or a 7y y/rs ' i i. ~ ?f 3 /83 rato ellt i st tiev twao else q9 [ ( 5p 5/37 f 2 I .ssooo i .Y. ass. h .aoooo
- JJJ
( 7 \\ . s e. ,,,g 7.,- \\ \\ .20000 V C_ tElk. --m .ns000 >f i, 58'I- ] ~ ,,.,- -"~~~~ = 2 L+ "1 = Ills., e---- /r u C 3 3 .sooo Z y ~ sse. .==' =-
- q
..== f = ,e 7 + 1 ~ A I n i_J B J t 1 E 5 D I N I D 1 J f F I M 1 A I H I J i J B A I s I O I E i D i J l F _l g"-un=w ~~ \\!jll' = 1 =- se CUMULAT!YE' RESOURCE USAGE s l r, MANiiOURS'IflCREASING BASE NORTHLY RESOURCE USACE. MANHOURS INCREASING BASE Ulll T 2&'O C&H CUMULATIVi. MANil00RS MANHRS RESOURCL 31900 UNI T 2f.0 C&H FORC ASTI:0 MONil!LY MANHOURS TARG SCH 32 LS CUM 9 MANHRS RI.SOURCI. JI900 . -j.TARG S0*i 32 ES UNIT l C&H COMULATIVE MANiiOURS C&ll FORCASTI:D MONillLY MANHOURS MANHRS RLSOURCL 31900 .c i f f TARG SCH 31 ES CUM "T UNIT 1 MANHRS RESOURCI. 31900 f 1ARG SCH 31 LS
- >>J s
1 8 Af/s/T SP sq is i i.,t 9 4,g si 9 \\ TOTAL GP 7 O O 6 Y .2i 7 / yg 72 9 SUB-TOTAL. Vf l fB //2 ff /D7 gf /J$ ll 7 79 7 l S/ /.2f f 9 7 Y ~~~ DRAFTS NOT I ,2, ,2. /3 /g / 7 g7 2457 SUBMITTED AP _ d. gff2ta-BY DISCIPLINES g 7p SP // O O l D y 9 73 TOTAL. _ GP O O / 'O O / 2. ~ // 7 sus-TorAt /Y l 3 // i7 .2.2. .37 /2 ' // //7 PROCEDURES IN TP 1/Y T e2 / /M /./ f g 7)
- ',',y
[glgl_ .2 // /3 O O 13 '/1 AP O 3
- 2. /
8 /5 I O 2 Yi y /ost I 1 CTCLE Fe. SP h .O .f~ O M M /. /8 I TOTAL GP .~J '/ O O l/ O 8 / 95 l sun-TOTAL 23 /2 '91
- 37 32 HIO \\ 7 2S y 95 PROCEDURES TP
.3 M '7 // Ol 7 e,2M L 78 gg AP O O lAST l I j REVIEW gg CYCLE FP l Se et. O ) O O .L} 7 TOTAL GP 2. O O O O O 2. 7 .28 0 87 87 1 sun-TOTAL 7 26 10 // 0 1 57 TE D A9 S O O b V7 .z9.s ,ppgoygg TEST AP / / .2 'l 8 O d 8 '/2 LAST \\ yy yf jg fjg j g y jjg MMM PROCEDURES 7p SP 'O h 0 0 -S. bd ! ~ IV TOTAL GP J 2 3 .2/ 4 C J '/ RL stm-Torst 3 57 YV YY S'3 30 84 /[ 3.28 PERCENT COMPLETE gjp (APPROVED .gjjr Vs E.%T. TOTAL f 58 37 '/ 'l 30 35 65 .2 3 '/5 ppur I. TOTAL.) TOTR ,. _s_. i _A3_- 'e 2 - x --- n
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n. TABLE 2 - TEST PROCEDURE PERFORMANCE COMPLETIONS RESULTS REVIEW PROCEDURE NO TEST STATUS PREOPERATIONAL TESTS NONE ACCEPTANCE TESTS i CAP-PTH.03 Diesel Bldg Electric Heating Acceptance DS/TE Test Review FLUSHES OFP-AN.01 Demineralized Water Storage and Transfer Approval Header Flush Cycle OFP-AN.02 Demineralized Water llose Station Flush Approval Cycle 0FP-AN.04 Demineralized Water Flush of Containment Approval Piping Cycle OFP-AT.02 Demineralized Water Supply Flush Approval Cycle IFP-CB.01 Turbine Cenerator Lube 011 And Hydrogen Approval Seal Oil Flush Cycle Turbine Cenerator Lube Oil And Ilydrogen' DS/TE 2FP-CB.01 Seal Oil Flush. Review 0FP-CF.01 Lube Oil Storage Purification And DS/TE Transfer System Review IFP-CF.01 Unit 1 Lube Oil Purification System Flush Approval Cycle 2FP-;7.01 Unit 2 Lube Oil Purification System Flush DS/TE Review
e n as TABLE 2 - TEST PROCEDURE PERFORMANCE COMPLETIONS RESULTS REVIEW 2ROCEDURE NO TEST STATUS OFP-FA.01 Aux Steam Boiler System Approval Cycle OFP-CB.02 Admin Bldg Cooling Tower System f Approved IFF-KE.02 Fuel Handling Bridge Air System Flush Approved 2FF-KE.02 Fuel Handling Bridge Air System Flush Approved Approval 0FP-KH.02 Hydrogen Supply System Flush Cycle OFP-KH.06 Evaporator Building Lab Natural Gas Approval Cycle OFP-KH.07 Evaporator Building Lab Vacuum System Approved Flush t SPECIFIC TESTS OSP-ANN.02 OC173 Annunciator Cab Energization Approval Cycle ) OSP-ANN.03 OC155 Annunciator Cab Energization Approval Cycle r OSP-AXB.01 Aux Boiler Initial Operation And Boilout Approval Cycle ISP-CRD.03 Control Rod Drive Tech Stator Pre-Inst Approval Check
- Cycle 2SP-CRD.03 Control Rod Drive Tech Stator Pre-Inst Approval Check Cycle 2SP-DHR.01
-Decay Heat Rer.cval Initial Pump Run Approval Cycle m
n TABLE 2 - TEST PROCEDURE PERFORMANCE COMPLETIONS RESULTS REVIEW PROCEDURE NO TEST STATUS OSP-FHS.06 Receipt of' Dummy Fuel Assemblies and Approved Control Rods ISP-NNI.01 Non-Nuclear Instrumentation (NNI) Approval Initial Energization l Cycle i OSP-PIN.05' BOP Rack Power Supply Checkout Approved 0 O 4 0 1*_ e V \\ L f j b e
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t TEST STATUS (REFER TO HANDOUT MATERIAL) PAGE ELECTRICAL. 2 IaC 3 NSSS 6 AUXILIARY 8 i FEEDWATER/ CONDENSATE 10 TURBINE /HVAf 15 PROCESS STEAM 19 PROGRAMMATIC 21 6 e d 9 +
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I t GENERIC (%) 6% SPECIFIC (119) PR -OP ('268) l 16% 37% i FLUSH (168)' 23% ACCEPTANCE (128) ,18% / i TEST PROCEDURES - PROCEDURE TYPES (729) (5) 1 O
f ~N / / DRAFTS NOT, / SUBMITTED (119) / l l$% / / i APPROVED TEST-l f PROCEDURES (328) i 45% REVIEW & APPR VAL i / CYCLE _(193) I '27% \\ J- \\ ] \\ / / TWG REVI.EW, J / CYCLE' (87) J 12% \\ j M 1 k TEST PROCEDURE - STATUS 3-31-83 (729) I ~ 9
l APPROVED -TEST DRAFTS NOT PROCEDURES (57) SUBMITT5D (61) 21% 23% i i ~~ N TWG REVIEW CYCLE (78) REVIEW & APPROVAL CYCLE (72). l 29% i 'i 27%- l t 1 PREOPERATIONAL TEST PROCEDURES (268) I e s
( APPROVED TEST [ PROCEDURES (42) DRAFTS NOT / SUBMITTED (37) / 33% 29% / /. / \\ / \\ / ~~ \\ / REVIEW & APPROVAL CYCLE (49) 38% e ACCEPTANCE PROCEDURES (128) e 4 e
f DRAFTS NOT SUBMITTED (4) 2% i f REVIEW 8 APPROVAL CYCLE (48) 29% I, g N \\ APPROVED TEST PROCEDURES (116). i \\ 69% / 4 e 'l FLUSHING. PROCEDURES (168) 1f, r t ? W--9-* * - ~ ~ ..,mo-..
/ DRAFTS NOT' SUBMITTED (15) 13% / / ~~ REVIEW & APPROVAL CYCLE (18) i-i 15% t \\ TNG REVIEW APPROVED TEST PROCEDURES-(79) \\ CYCLE (7) 66% N \\ N6% \\ \\ M--- e SPECIFIC PROCEDURES (119) 3 e s
r DRAFTS NOT S'UBMITTED (2) 6 qg REVIEW & APPROVED CYCLE (8) [ 18% /l I "E ~ 1 APPROVED TEST PROCEDURES (34) ) 3 / N x 3 / e GENERIC PROCEDURES (46) h O
~ e. 1 STARTED /N0h' COMPLETED _ COMPLETE ' D 'v., PRE-OPERATIONAL TESTS 0 2 ACCEPTANCE TESTS 1 0 SYSTEM FLUSHES 16 17 i SPECIFIC TESTS 9 23 TOTAL 26 42 TOTAL TESTS REQUIRED (EXCLUDING GENERIC TESTS) 683 / % TEST COMPLETE = 4 c TESTS CO'MPLETED - (3 31-83) y r% i
? ~ GENERIC CHECK 0UT DISCIPLINE PERCENT COMPIETE ELECTRICAL 83 I&c 37 TURBINE /HVAC 24 FEEDWATER/ CONDENSATE 25 NSSS 4 AUXILIARY SYSTEM 8' ~ PROCESS STEAM 15 TOTAL SYSTEM CHECK 0UT COMPLETE 45% ..s 9 i4 u ~ SYSTEM CHECKOUT STATUS -= (3-31-83) i e
a m,. y su 4 h t TEST SCHEDULE REV 12 (REFER TO BIG CHART - PLAN FOR TWO UNIT STARTUP OR FIGURE 14 0F HANDOUT) 51 .e i i 4 . k. 1 0 l U
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m POST TURNOVER EXCEPTION WORK CONSTRUCT 10N GENERAL SERVICES ORGANIZATION MANPOWER kok-M4kV L 55 M4NU4L PIPEFITTERS & WELDERS - 55 ' o. ELECTRICIANS - 35 i'-- - 10 LABORERS 100 .v'l Y. ._.?.;. g. .g...; \\'; ' :l, 4.(. '. 7 ( m
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