ML14316A391: Difference between revisions

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1.2.2  The release of radioactive material inside or outside of a restricted area, such that, had an individual been present for 24 hours, the individual could have received an intake 5 times the occupational annual limit on intake?
1.2.2  The release of radioactive material inside or outside of a restricted area, such that, had an individual been present for 24 hours, the individual could have received an intake 5 times the occupational annual limit on intake?
[10 CFR 20.2202(a)(2)]
[10 CFR 20.2202(a)(2)]
 
1.3   ISFSI - Does the event involve accidental criticality or loss of any special nuclear material?
===1.3 ISFSI===
- Does the event involve accidental criticality or loss of any special nuclear material?
[10 CFR 72.74(a)]
[10 CFR 72.74(a)]


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NOTE For further information refer to AD-SY-ALL-0150, Reporting Safeguards, Security, and Fitness for Duty Events.
NOTE For further information refer to AD-SY-ALL-0150, Reporting Safeguards, Security, and Fitness for Duty Events.


NOTIFICATIONS 0OI-01.07 Rev. 33 Page 26 of 43  ATTACHMENT 1 Page 3 of 7 Reportability Evaluation Checklist 4 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION
NOTIFICATIONS 0OI-01.07 Rev. 33 Page 26 of 43  ATTACHMENT 1 Page 3 of 7 Reportability Evaluation Checklist 4 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 2.6   ISFSI - Departure from License Condition.
 
===2.6 ISFSI===
- Departure from License Condition.
Has an action been taken in an emergency that departs from a condition or a technical specification contained in a license or certificate of compliance issued under 10 CFR 72 when the action was immediately needed to protect the public health and safety and no action consistent with license conditions or technical specifications that could provide adequate or equivalent protection was immediately apparent as per 72.32(d)?
Has an action been taken in an emergency that departs from a condition or a technical specification contained in a license or certificate of compliance issued under 10 CFR 72 when the action was immediately needed to protect the public health and safety and no action consistent with license conditions or technical specifications that could provide adequate or equivalent protection was immediately apparent as per 72.32(d)?
[10 CFR 72.75(b)(1)]
[10 CFR 72.75(b)(1)]
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[10 CFR 50.72(b)(3)(iv)(B)(1)]
[10 CFR 50.72(b)(3)(iv)(B)(1)]


NOTIFICATIONS 0OI-01.07 Rev. 33 Page 27 of 43  ATTACHMENT 1 Page 4 of 7 Reportability Evaluation Checklist 8 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION
NOTIFICATIONS 0OI-01.07 Rev. 33 Page 27 of 43  ATTACHMENT 1 Page 4 of 7 Reportability Evaluation Checklist 8 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 3.3.2   General containment isolation signals affecting containment isolation valves in more than one system or multiple main steam isolation valves (MSIVs).
 
====3.3.2 General====
containment isolation signals affecting containment isolation valves in more than one system or multiple main steam isolation valves (MSIVs).
Main Steam Isolation.
Main Steam Isolation.
Main Steam Line Drain Isolation.
Main Steam Line Drain Isolation.
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Combustible Gas Control (CAD).
Combustible Gas Control (CAD).
[10 CFR 50.72(b)(3)(iv)(B)(2)]
[10 CFR 50.72(b)(3)(iv)(B)(2)]
 
3.3.3   Emergency core cooling systems (ECCS), including:
====3.3.3 Emergency====
core cooling systems (ECCS), including:
Core Spray (CS)
Core Spray (CS)
High Pressure Coolant Injection (HPCI)
High Pressure Coolant Injection (HPCI)
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Automatic Depressurization (ADS) System
Automatic Depressurization (ADS) System
[10 CFR 50.72(b)(3)(iv)(B)(4)]
[10 CFR 50.72(b)(3)(iv)(B)(4)]
 
3.3.4   Reactor Core Isolation Cooling (RCIC)
====3.3.4 Reactor====
Core Isolation Cooling (RCIC)
[10 CFR 50.72(b)(3)(iv)(B)(5)]
[10 CFR 50.72(b)(3)(iv)(B)(5)]
 
3.3.5   Containment heat removal and depressurization systems including containment spray and fan cooler systems.
====3.3.5 Containment====
heat removal and depressurization systems including containment spray and fan cooler systems.
RHR Suppression Pool Cooling.
RHR Suppression Pool Cooling.
Drywell Spray System Actuation.
Drywell Spray System Actuation.
[10 CFR 50.72(b)(3)(iv)(B)(7)]
[10 CFR 50.72(b)(3)(iv)(B)(7)]
 
3.3.6   Emergency Diesel Generators (DGs)
====3.3.6 Emergency====
Diesel Generators (DGs)
[10 CFR 50.72(b)(3)(iv)(B)(8)]
[10 CFR 50.72(b)(3)(iv)(B)(8)]


NOTIFICATIONS 0OI-01.07 Rev. 33 Page 28 of 43  ATTACHMENT 1 Page 5 of 7 Reportability Evaluation Checkli st  8 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 3.4        
NOTIFICATIONS 0OI-01.07 Rev. 33 Page 28 of 43  ATTACHMENT 1 Page 5 of 7 Reportability Evaluation Checkli st  8 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 3.4 3.4.1   Could the event or condition at the time of discovery have prevented the fulfillment of the safety function of structures or systems that are needed to:
 
====3.4.1 Could====
the event or condition at the time of discovery have prevented the fulfillment of the safety function of structures or systems that are needed to:
[10 CFR 50.72(b)(3)(v)]
[10 CFR 50.72(b)(3)(v)]
These criteria cover an event or condition in which scoped in SSCs could have failed to perform their intended function because of one or more personnel errors, including procedure violations; equipment failures; inadequate maintenance; or design, analysis, fabrication, equipment qualification, construction, or procedural deficiencies and no redundant equipment in the same system was OPERABLE. However, individual component failures need not be reported if redundant equipment in the same system was OPERABLE and available to perform the required safety function. [10 CFR 50.72(b)(3)(vi)]
These criteria cover an event or condition in which scoped in SSCs could have failed to perform their intended function because of one or more personnel errors, including procedure violations; equipment failures; inadequate maintenance; or design, analysis, fabrication, equipment qualification, construction, or procedural deficiencies and no redundant equipment in the same system was OPERABLE. However, individual component failures need not be reported if redundant equipment in the same system was OPERABLE and available to perform the required safety function. [10 CFR 50.72(b)(3)(vi)]
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NOTE No Event Notification (i.e., per 10 CFR 50.72(b)(3)(v)) is required for conditions which could have prevented fulfillment of the safety function that are discovered when the affected system is INOPERABLE or when the affected system is INOPERABLE but considered available.
NOTE No Event Notification (i.e., per 10 CFR 50.72(b)(3)(v)) is required for conditions which could have prevented fulfillment of the safety function that are discovered when the affected system is INOPERABLE or when the affected system is INOPERABLE but considered available.
If the condition is discovered when the system is OPERABLE , an EN will be made per 10 CFR 50.72(b)(3)(v).
If the condition is discovered when the system is OPERABLE , an EN will be made per 10 CFR 50.72(b)(3)(v).
 
3.4.2   Remove residual heat?
====3.4.2 Remove====
residual heat?
[10 CFR 50.72(b)(3)(v)(B)]
[10 CFR 50.72(b)(3)(v)(B)]
 
3.4.3   Control the release of radioactive material?
====3.4.3 Control====
the release of radioactive material?
[10 CFR 50.72(b)(3)(v)(C)]
[10 CFR 50.72(b)(3)(v)(C)]
 
3.4.4   Mitigate the consequences of an accident?
====3.4.4 Mitigate====
the consequences of an accident?
[10 CFR 50.72(b)(3)(v)(D)]
[10 CFR 50.72(b)(3)(v)(D)]
NOTE: RCIC INOPERABILITY is not reportable as a single train system per 10 CFR 50.72(b)(3)(v)(d).
NOTE: RCIC INOPERABILITY is not reportable as a single train system per 10 CFR 50.72(b)(3)(v)(d).
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AND 2) Commercial telephone network.
AND 2) Commercial telephone network.
: b. INOPERABILITY for greater than or equal to 1 hour of: 1) Seven or more off
: b. INOPERABILITY for greater than or equal to 1 hour of: 1) Seven or more off
-site sirens; OR 2) All off-site sirens in one county.  
-site sirens; OR 2) All off-site sirens in one county.
 
3.7   ISFSI -Important to Safety Defect Has a defect been discovered in any Independent Spent Fuel Storage structure, system, or component that is important to safety?
===3.7 ISFSI===
-Important to Safety Defect Has a defect been discovered in any Independent Spent Fuel Storage structure, system, or component that is important to safety?
[10 CFR 72.75(c)(1)]
[10 CFR 72.75(c)(1)]
 
3.8   ISFSI - Reduction in Effectiveness Has a condition been discovered which results in a significant reduction in the effectiveness of any Independent Spent Fuel Storage cask confinement system during use?
===3.8 ISFSI===
- Reduction in Effectiveness Has a condition been discovered which results in a significant reduction in the effectiveness of any Independent Spent Fuel Storage cask confinement system during use?
[10 CFR 72.75(c)(2)]
[10 CFR 72.75(c)(2)]


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4.1.2  The release of radioactive material inside or outside of a restricted area, so that, had an individual been present for 24 hours, the individual could have received an intake in excess of one occupational annual limit on intake?
4.1.2  The release of radioactive material inside or outside of a restricted area, so that, had an individual been present for 24 hours, the individual could have received an intake in excess of one occupational annual limit on intake?
[10 CFR 20.2202(b)(2)]
[10 CFR 20.2202(b)(2)]
 
4.2   ISFSI - Equipment Important to Safety Disabled or Failed to Function Does the event involve equipment important to safety which is disabled or fails to function as designed when:
===4.2 ISFSI===
- Equipment Important to Safety Disabled or Failed to Function Does the event involve equipment important to safety which is disabled or fails to function as designed when:
The equipment is required by certificate of compliance to be available and OPERABLE to prevent releases that could exceed regulatory limits, to prevent exposures to radiation or radioactive materials that could exceed regulatory limits, or to mitigate the consequences of an accident; and, No redundant equipment was available and OPERABLE to perform the required safety function.
The equipment is required by certificate of compliance to be available and OPERABLE to prevent releases that could exceed regulatory limits, to prevent exposures to radiation or radioactive materials that could exceed regulatory limits, or to mitigate the consequences of an accident; and, No redundant equipment was available and OPERABLE to perform the required safety function.
[10 CFR 72.75(d)(1)]
[10 CFR 72.75(d)(1)]
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µCi/cc from the appropriate channel (low, mid, or high) of 1-D12-RR-4548-3-2-1.
µCi/cc from the appropriate channel (low, mid, or high) of 1-D12-RR-4548-3-2-1.
(2) If not available, use 15,500 cfm (3) Release Rate (µCi/sec) = (µCi/cc) x (cfm) x (472)
(2) If not available, use 15,500 cfm (3) Release Rate (µCi/sec) = (µCi/cc) x (cfm) x (472)
Control Rod Scram Times  
Control Rod Scram Times 3.1.4 Brunswick Unit 1 3.1-12 Amendment No. 219 3.1 REACTIVITY CONTROL SYSTEMS 3.1.4  Control Rod Scram Times LCO  3.1.4 a. No more than 10 OPERABLE control rods shall be "slow," in  accordance with Table 3.1.4-1; and b. No more than 2 OPERABLE control rods that are "slow" shall occupy adjacent locations. APPLICABILITY: MODES 1 and 2.
 
ACTIONS CONDITION REQUIRED ACTION COMPLETION TIMEA. Requirements of the LCO not met. A.1 Be in MODE 3. 12 hours Control Rod Scram Times 3.1.4 Brunswick Unit 1 3.1-14 Amendment No. 250 Table 3.1.4-1 (page 1 of 1)
====3.1.4 Brunswick====
Unit 1 3.1-12 Amendment No. 219  
 
===3.1 REACTIVITY===
CONTROL SYSTEMS 3.1.4  Control Rod Scram Times LCO  3.1.4 a. No more than 10 OPERABLE control rods shall be "slow," in  accordance with Table 3.1.4-1; and b. No more than 2 OPERABLE control rods that are "slow" shall occupy adjacent locations. APPLICABILITY: MODES 1 and 2.
ACTIONS CONDITION REQUIRED ACTION COMPLETION TIMEA. Requirements of the LCO not met. A.1 Be in MODE 3. 12 hours Control Rod Scram Times  
 
====3.1.4 Brunswick====
Unit 1 3.1-14 Amendment No. 250 Table 3.1.4-1 (page 1 of 1)
Control Rod Scram Times  ---------------------------------------------------------- NOTES ----------------------------------------------------------  1. OPERABLE control rods with scram times not within the limits of this Table are considered "slow." 2. Enter applicable Conditions and Required Actions of LCO 3.1.3, "Control Rod OPERABILITY," for control rods with scram times > 7 seconds to notch position 06. These  
Control Rod Scram Times  ---------------------------------------------------------- NOTES ----------------------------------------------------------  1. OPERABLE control rods with scram times not within the limits of this Table are considered "slow." 2. Enter applicable Conditions and Required Actions of LCO 3.1.3, "Control Rod OPERABILITY," for control rods with scram times > 7 seconds to notch position 06. These  


control rods are inoperable, in accordance with SR 3.1.3.3, and are not considered "slow."  -------------------------------------------------------------------------------------------------------------------------------  NOTCH POSITION SCRAM TIMES WHEN REACTOR STEAM DOME PRESSURE  800 psig (a)(b) (seconds) 46 36 26 06 0.44 1.08 1.83 3.35  (a) Maximum scram time from fully withdrawn position, based on de-energization of scram pilot valve solenoids at time zero. (b) When reactor steam dome pressure is < 800 psig, established scram time limits apply.  
control rods are inoperable, in accordance with SR 3.1.3.3, and are not considered "slow."  -------------------------------------------------------------------------------------------------------------------------------  NOTCH POSITION SCRAM TIMES WHEN REACTOR STEAM DOME PRESSURE  800 psig (a)(b) (seconds) 46 36 26 06 0.44 1.08 1.83 3.35  (a) Maximum scram time from fully withdrawn position, based on de-energization of scram pilot valve solenoids at time zero. (b) When reactor steam dome pressure is < 800 psig, established scram time limits apply.  


Control Rod Scram Accumulators  
Control Rod Scram Accumulators 3.1.5 Brunswick Unit 1 3.1-15 Amendment No. 203 3.1 REACTIVITY CONTROL SYSTEMS 3.1.5  Control Rod Scram Accumulators LCO  3.1.5 Each control rod scram accumulator shall be OPERABLE. APPLICABILITY: MODES 1 and 2.
 
====3.1.5 Brunswick====
Unit 1 3.1-15 Amendment No. 203  
 
===3.1 REACTIVITY===
CONTROL SYSTEMS 3.1.5  Control Rod Scram Accumulators LCO  3.1.5 Each control rod scram accumulator shall be OPERABLE. APPLICABILITY: MODES 1 and 2.
ACTIONS -----------------------------------------------------------NOTE-----------------------------------------------------------
ACTIONS -----------------------------------------------------------NOTE-----------------------------------------------------------
Separate Condition entry is allowed for each control rod scram accumulator.  
Separate Condition entry is allowed for each control rod scram accumulator.  
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4 hours  (continued)
4 hours  (continued)


Suppression Pool Average Temperature 3.6.2.1 Brunswick Unit 1 3.6-20 Amendment No. 203  
Suppression Pool Average Temperature 3.6.2.1 Brunswick Unit 1 3.6-20 Amendment No. 203 3.6 CONTAINMENT SYSTEMS 3.6.2.1  Suppression Pool Average Temperature LCO  3.6.2.1 APPLICABILITY
 
===3.6 CONTAINMENT===
SYSTEMS 3.6.2.1  Suppression Pool Average Temperature LCO  3.6.2.1 APPLICABILITY
: ACTIONS CONDITION REQUIRED ACTION COMPLETION TIMEA. Suppression pool average temperature > 95 F but  110 F. AND  THERMAL POWER  
: ACTIONS CONDITION REQUIRED ACTION COMPLETION TIMEA. Suppression pool average temperature > 95 F but  110 F. AND  THERMAL POWER  
> 1% RTP.
> 1% RTP.

Revision as of 19:16, 7 May 2019

Initial Exam 2014301 Final SRO Written Exam
ML14316A391
Person / Time
Site: Brunswick  Duke Energy icon.png
Issue date: 11/12/2014
From:
NRC/RGN-II
To:
Progress Energy Carolinas
References
Download: ML14316A391 (133)


Text

1. The initial SRM count rates are as observed below. The Unit Two control room staff is ready to withdraw control rods for a reactor startup.Which one of the following identifies when criticality is expected to be achieved IAW0GP-02, Approach To Criticality and Pressurization of the Reactor?At ~800 cpmAt ~1000 cpmAt ~3200 cpmAt ~6400 cpm A.B.C.D. Page: 1

2. Unit Two is in MODE 2 starting up after a refueling outage. The 2A CRD Pump has tripped and the operator is unable to restart the pump.The following conditions exist:Reactor water level 187 inchesReactor power Range 8 on all IRM's Reactor pressure 700 psig Charging water pressure 700 psig Reactor temperature 505°F2B CRD Pump Out-of-serviceWhich one of the following identifies when a manual scram is required to be insertedIAW 0AOP-02.0, Control Rod Malfunction/Misposition?If one control rod scrams.If there are nine or more inoperable rods.If A-05 (3-2)

Rod Drift alarms due to a single control rod drift.If A-07 (6-1)

CRD Accum Lo Press Hi Level alarms due to low pressure.

A.B.C.D. Page: 2

3. Unit One is operating at 32% power when one of the four Main Steam Line FlowTransmitter inputs to the Feedwater Level Control System has failed downscale.Which one of the following identifies the effect this will have, if any, on the RWM?The RWM will:display BYPASSED.provide alarms ONLY.provide alarms and enforce rod blocks.NOT provide alarms or enforce rod blocks.

A.B.C.D. Page: 3

4. The BOP operator is aligning RHR Loop B to transfer water from the Suppression Poolto the Auxiliary Surge Tank. Which one of the following identifies how far the suppression pool level is expected todrop if 3,100 gallons is transferred IAW 1OP-17, Residual Heat Removal SystemOperating Procedure?

~1/2 inch~11/2 inch~4 inches~5 inches A.B.C.D. Page: 4

5. Unit Two was operating at rated power when a LOCA occurred. ADS hasautomatically initiated and reactor pressure is lowering. Which one of the following identifies the highest reactor pressure that will allow RHRinjection flow to be seen on E11-FI-R603B, RHR System B Flow?

~400 psig.

~300 psig.

~200 psig.

~100 psig.

A.B.C.D. Page: 5

6. Unit Two is in day 4 of a refueling outage with RHR Loop 2B operating in ShutdownCooling IAW 2OP-17, Residual Heat Removal System Operating Procedure. Which one of the following completes the statements below?The lowest reactor pressure that will cause a Group 8 isolation is (1) psig.

The Group 8 isolation pressure signal (2) cause E11-F015B, Inboard Injection Vlvto auto close.(1) ~135(2) will(1) ~135(2) will NOT(1) ~200(2) will(1) ~200(2) will NOT A.B.C.D. Page: 6

7. During accident condition on Unit Two the following plant conditions exist: RPV water level -30 inches Reactor power 4% Suppr pool temp 142°F Suppr pool level -24 inchesHPCI operation is required.

Which one of the following identifies:(1) the preferred suction source for HPCI and(2) the reason that suction source is preferred?(1) Suppression pool.(2) To prevent continued rise in suppression pool level.(1) Suppression pool.(2) To provide a warmer source of injection to the reactor.(1) CST.(2) To prevent damage to the HPCI pump due to cavitation.(1) CST.(2) To prevent overheating of HPCI lubricating and control oil.

A.B.C.D. Page: 7

8. Which one of the following identifies the Unit Two HPCI turbine speed control power supply?125 VDC Panel 3A125 VDC Panel 3B125 VDC Panel 4A125 VDC Panel 4B A.B.C.D. Page: 8
9. Unit Two is operating at rated power when the following alarm is received:A-01 (2-10)

Core Spray Loop A Sys Press LowWhich one of the following identifies the impact of this condition on the Core SpraySystem?Core Spray Pump A may cause piping damage, if started.Core Spray Pump A is incapable of producing an ADS Logic permissive signal, ifstarted.E21-F005A, Inboard Inject Valve, will immediately open if the Core Spray InitiationLogic is actuated.E21-F004A, Outboard Inject Valve, can be opened while E21-F005A, Inboard InjectValve, is open.

A.B.C.D. Page: 9

10. The OATC observes the following indications after initiating SLC during an ATWS. Which one of the following completes the statements below?Squib valve (1) has failed to fire.IAW 2OP-05, Standby Liquid System Operating Procedure, the OATC is required to (2)

.(1) A(2) place the CS-S1, SLC Pump A & B, in the PUMP A RUN position(1) A(2) leave the CS-S1, SLC Pump A & B, in the PUMP A/B RUN position(1) B(2) place the CS-S1, SLC Pump A & B, in the PUMP A RUN position(1) B(2) leave the CS-S1, SLC Pump A & B, in the PUMP A/B RUN position A.B.C.D. Page: 10

11. Which one of the following identifies which RPS MG Set and EPA breakers that trip ona loss of 480 VAC Substation E7?RPS MG Set (1)

EPA breakers (2)

.(1) A (2) 1 & 2 ONLY(1) B (2) 3 & 4 ONLY(1) A (2) 1 & 2 and alternate source EPA breakers 5 & 6(1) B (2) 3 & 4 and alternate source EPA breakers 5 & 6 A.B.C.D. Page: 11

12. Unit Two is operating at rated power when A-05 (1-2)

CRD Hyd Temp Highannunciates and the OATC observes the following CRD indications.

Which one of the following completes the statements below?A-05 (1-2)

CRD Hyd Temp High setpoint is (1)

°F.The APP will provide guidance to adjust C11-FC-R600, CRD Flow Controller, in the (2) direction.(1) 350(2) open(1) 350(2) closed(1) 340(2) open(1) 340(2) closed A.B.C.D. Page: 12

13. Which one of the following completes the statement below?The Intermediate Range Monitor (IRM) detectors may be positioned full in (1)

, full out (2)

, or any intermediate position.(1) 18 inches above the core centerline(2) bottom of the core(1) 18 inches above the core centerline(2) 24 inches below the core(1) at the core centerline(2) bottom of the core(1) at the core centerline(2) 24 inches below the core A.B.C.D. Page: 13

14. The reactor has just been declared critical during a reactor startup IAW 0GP-02,Approach To Criticality and Pressurization of the Reactor, with SRM channel Abypassed. A-05 (2-2)

Rod Out Block and A-05 (2-3)

SRM Upscale/Inop are in alarm.As the operator attempts to withdraw SRM B detector is stuck and will not retract fromthe full in position.Which one of the following completes the statement below?Rods cannot be withdrawn until the IRMs are ranged to Range

. 2 3 7 8 A.B.C.D. Page: 14

15. A plant startup is in progress. The OATC was withdrawing SRMs when a control rodblock occurred. The following nuclear instrument indications are noted:

SRM Counts Position IRM Counts Range A 95 Mid Position A 25/125 3 B 190 Mid Position B 65/125 2 C 6x10 4 Full In C 35/125 3 D 155 Mid Position D 15/125 3 E 12/125 2 F 55/125 3 G 30/125 2 H 25/125 3Which one of the following actions will clear the control rod block?Inserting SRM A.Withdrawing SRM C.Ranging IRM G ONLY to range 3.Ranging IRM B and G to range 3.

A.B.C.D. Page: 15

16. Unit Two is operating at rated power with the following conditions:A-05 (2-2)

Rod Out Block In alarmA-05 (4-8)

OPRM Trip Enabled NOT in alarmA-06 (2-8) APRM Upscale NOT in alarmA-06 (5-7)

Flow Ref Off Normal In alarmWhich one of the following completes the statements below?A total recirc flow channel has failed (1)

.IAW APP A-06 (5-7)

Flow Ref off Normal, the OATC will (2) the affected APRM.(1) downscale(2) bypass(1) downscale(2) place the mode switch in INOP for(1) upscale(2) bypass(1) upscale(2) place the mode switch in INOP for A.B.C.D. Page: 16

17. A reactor vessel instrument reference leg (with both level and pressure instruments)has CRD backfill in service.

A blockage of reference leg causes the instrument piping outside containment toequalize with CRD pressure.Which one of the following completes the statements below?The blockage will cause indicated level on the affected level instruments to (1)

.An expected pressure alarm for these conditions would be (2)

.(1) lower(2) A-04 (1-8)

Steam Line Lo Press A(1) lower(2) A-07 (3-2)

Reactor Press High(1) rise(2) A-04 (1-8)

Steam Line Lo Press A(1) rise(2) A-07 (3-2)

Reactor Press High A.B.C.D. Page: 17

18. Given the following plant conditions with RCIC in pressure control mode: RCIC controller output 70% E51-F022, Bypass to CST Vlv. Throttled RCIC Flow 300 gpm RPV pressure 810 psig, slowly lowering RCIC controller Automatic set @ 300 gpmWhich one of the following identifies two independent actions that will stabilize RPV pressure?The RO can throttle the E51-F022 in the

____(1)____ direction, or by

____(2)____

theRCIC Flow Controller auto setpoint.(1) open(2) lowering(1) open(2) raising(1) close(2) lowering(1) close(2) raising A.B.C.D. Page: 18

19. Unit Two has inserted a manual scram. Suppression Pool temperature is 90°F and rising due to HPCI/RCIC usage Suppression Pool level is -25 inches CST level is 21 feetWhich one of the following identifies:(1) the lowest Suppression Pool Temperature that requires PCCP entry and (2) the current suction source for the RCIC system?(1) 96°F.(2) CST.(1) 96°F.(2) Suppression Pool.(1) 106°F.(2) CST.(1) 106°F.(2) Suppression Pool.

A.B.C.D. Page: 19

20. Which one of the following completes the statements below concerning operation ofthe SRVs? (1) causes annunciation of A-03 (1-10)

Safety / Relief Valve Open

.Upon receipt of this alarm, at least one SRV (2) will be illuminated on the apronsection of RTGB Panel P601.(1) High temperature on recorder B2l-TR-6l4(2) red light ONLY(1) High temperature on recorder B2l-TR-6l4(2) red and amber lights(1) Activation of a SRV sonic detector(2) red light ONLY(1) Activation of a SRV sonic detector(2) red and amber lights A.B.C.D. Page: 20

21. Which one of the following states the normal electrical power supply to the followingUnit One RHR Suppression Pool Cooling valves?(1) 1-E11-F024A, RHR Torus Cooling Isolation Valve (2) 1-E11-F028A, RHR Torus Spray Valve (1) E5(2) E5(1) E5(2) E7(1) E7(2) E5(1) E7(2) E7 A.B.C.D. Page: 21
22. Unit Two is operating at power with DG3 under clearance for maintenance activities. Bus E3 Master/Slave Breakers trip.Which one of the following completes the statements below?The (1)

RWCU isolation valve auto closes.Technical Specification LCO 3.6.1.3, Primary Containment Isolation Valves (PCIVs),states each PCIV, except (2)

, shall be OPERABLE.(1) Inboard(2) reactor building-to-suppression chamber vacuum breakers(1) Inboard(2) main steam isolation valves (MSIVs)(1) Outboard(2) reactor building-to-suppression chamber vacuum breakers(1) Outboard(2) main steam isolation valves (MSIVs)

A.B.C.D. Page: 22

23. During a line break inside the drywell, plant conditions are: RPV water level 200 inches RPV pressure 800 psig Drywell pressure 12 psigWhich one of the following completes the statements below?In order to initiate Suppression Pool Sprays, operation of the "2/3 Core Height LPCIInitiation" keylock override switch is (1)

.The Suppression Pool Spray valves (2) automatically close when drywell pressurelowers below 2.7 psig.(1) required (2) will(1) required (2) will NOT(1) NOT required (2) will(1) NOT required (2) will NOT A.B.C.D. Page: 23

24. Which one of the following identifies the loads that can be supplied by the BackupNitrogen System?Inboard MSIVs, SRV Accumulators, and Hardened Wetwell Vent Isolation valves.Inboard MSIVs, Suppression Chamber to Drywell Vacuum Breakers, and HardenedWetwell Vent Isolation valves.SRV Accumulators, Reactor Building to Suppression Chamber Vacuum Breakers,and Hardened Wetwell Vent Isolation valves.SRV Accumulators, Suppression Chamber to Drywell Vacuum Breakers, andReactor Building to Suppression Chamber Vacuum Breakers A.B.C.D. Page: 24
25. Which one of the following identifies the affect that a loss of E8 will have on the UnitTwo Safety Relief Valve (SRV) system?Inability to manually operate SRV's from the RTGBInability to manually operate SRV's from the RSDPLoss of SRV position indication on the RTGBLoss of SRV position indication on the RSDP A.B.C.D. Page: 25
26. Unit Two is being shutdown for entry into the main generator for repairs.Which one of the following completes the statement below concerning the flowpath forpurging the Main Generator IAW 2OP-27.3, Generator Gas System OperatingProcedure? Carbon Dioxide exits through the (1) distribution tube in the main generator while (2) is admitted through the other distribution tube.(1) upper(2) Hydrogen(1) upper(2) Service Air(1) bottom(2) Hydrogen(1) bottom(2) Service Air A.B.C.D. Page: 26
27. Unit Two is operating at 30% power when a Heater Drain (HD) Deaerator levelcontroller failure results in HD Deaerator level rising to 62 inches.

Which one of the following completes the statements below?MVD-LV-266 / 267, Deaerator Extraction Line MRVs, are (1)

.EX-V11 / V12, 9th Stage Extraction Steam Non Return Valves, are (2)

.(1) open(2) open(1) open(2) closed(1) closed(2) open(1) closed(2) closed A.B.C.D. Page: 27

28. Unit Two is performing plant heatup and pressurization with the reactor at 250 psig. Reactor Feed Pump (RFP) 2A indicates 185 RPM with the following status:Suction valve is openRecirc valve is openDischarge valve is closed UA-04 (1-2)

RFP A Turbine Tripped is clearHPU oil pressure is 275 psigReactor water level is 200 inchesA-07 (2-2)

Reactor Water Level High / Low is in alarmThe operator depresses the RFPT A Start push button on XU-1 panel. Which one of the following identifies how the 2A RFP will respond?Rolls to 1000 RPM.Rolls to 2450 RPM.Remains at 185 RPM.Trips on emergency shutdown logic.

A.B.C.D. Page: 28

29. Given the following plant conditions on Unit One: MODE 2 at 6% power RPV pressure is 800 psig SULCV is in Auto (40% valve demand) Master Level Controller is in Manual set at 187 inchesA loss of UPS V7A results in blank displays on the Startup Level and Master LevelControllers. Which one of the following identifies the response of the SULCV and the effect onreactor water level based on the above conditions?The SULCV will:close and the reactor will scram on low reactor water level.open and the running Reactor Feed Pump will trip on high level.remain at 40% valve demand position irrespective of reactor level changes.change valve position as required to maintain reactor water level at 187 inches.

A.B.C.D. Page: 29

30. Unit One primary containment venting is being performed IAW 1OP-10, Standby GasTreatment System Operating System with the following plant status:1-VA-1F-BFV-RB, SBGT DW Suct Damper Open1-VA-1D-BFV-RB, Reactor Building SBGT Train 1A Inlet Valve Closed1-VA-1H-BFV-RB, Reactor Building SBGT Train 1B Inlet Valve Closed Which one of the following completes the statements below concerning the predictedSBGT response if drywell pressure reaches 1.9 psig?1-VA-1F-BFV-RB (1)

.Both 1-VA-1D-BFV-RB and 1-VA-1H-BFV-RB (2)

.(1) auto closes(2) auto open(1) auto closes(2) remain closed(1) remains open(2) auto open(1) remains open(2) remain closed A.B.C.D. Page: 30

31. The following sequence of events occur on Unit Two:1156 Reactor scram due to high drywell pressure1158 Off-site power is lost, DG4 locks out1200 Reactor water level drops below LL21202 Bus E2 cross-tie breaker is placed to MAINT1204 Reactor water level drops below LL31206 Bus E4 cross-tie breaker is placed to MAINT1208 Reactor pressure lowers to 410 psigWhich one of the following identifies the earliest time that E4 is allowed to be energizedfrom E2 IAW 0AOP-36.1, Loss of Any 4160V Buses or 480V E-Buses?

1206 1208 1214 1216 A.B.C.D. Page: 31

32. The indications and status of the UPS System are:

Primary UPS

Standby UPS Load on UPS (DS10) OFF OFF Load on Inverter (DS151) OFF ON Load on Alternate (DS152) ON OFF Alt Source Failure (DS11) OFF OFF Manual Bypass Switch (S1) NORM BYP TEST

Which one of the following identifies the status of UPS System Loads?de-energized.powered from the primary inverter.powered from the standby inverter.powered from the alternate source.

A.B.C.D. Page: 32

33. Which one of the following completes the statements below regarding 125/250 VDCStation Distribution?In the equalize charge mode, the charger output voltage is at a (1) voltage whencompared to the float charge mode.The 125 VDC batteries are sized to supply emergency power at a 150 amp rate for (2) hours.(1) lower(2) 8(1) lower(2) 10(1) higher(2) 8(1) higher(2) 10 A.B.C.D. Page: 33
34. During an ATWS on Unit Two, RPV level is being controlled at Top of Active Fuel.The RHR pumps have been overridden OFF. A fault then occurs on Bus 2C which results in loss of Bus E4.Which one of the following identifies the RHR pump response as DG4 re-energizes Bus E4?RHR pumps 2B and 2D both remain overridden off.RHR pumps 2B and 2D both restart 10 seconds later.RHR pump 2D restarts 10 seconds later, RHR pump 2B remains off.RHR pump 2B restarts 10 seconds later, RHR pump 2D remains off.

A.B.C.D. Page: 34

35. Unit Two is operating at rated power with Offgas Train A in full load.A tube rupture occurs inside the Offgas Aftercondenser.Which one of the following parameters will lower

in response to this event?Aftercondenser Outlet TemperatureOffgas Filter differential pressureMain condenser vacuumAftercondenser Level A.B.C.D. Page: 35

36. Which one of the following identifies the action that is required to be taken in responseto annunciator UA-05 (1-9)

Fan Clg Unit CS Pump Rm A Inl Press Lo

?IAW the APP, the reactor operator will open: SW-V105, Nuc SW Supply Vlv.SW-V101, Conv SW Supply Vlv.SW-V143, Well Water Supply Vlv.SW-V117, Nuc SW to Vital header Vlv.

A.B.C.D. Page: 36

37. A reactor recirc pump has tripped on Unit Two.Which one of the following completes the statement below for determining stabilityregion compliance?The primary indication of total core flow is determined using:Core Support Plate Delta-P.PPC Point U2NSSWDP (WDP).Total Core Flow recorder (R613).PPC Point U2CPWTCF (WTCF).

A.B.C.D. Page: 37

38. Both Units were operating at rated power when ALL switchyard PCB positionindications turn green.Diesel Generator status: DG1 Running loaded DG2 Under clearance DG3 Running loaded DG4 Tripped on low lube oil pressureWhich one of the following identifies the AOP(s) that Unit One and Unit Two arerequired to perform?Unit One is required to perform (1)

.Unit Two is required to perform (2)

.(1) 0AOP-36.1, Loss of Any 4160V Buses or 480V E-Buses(2) 0AOP-36.2, Station Blackout(1) 0AOP-36.1, Loss of Any 4160V Buses or 480V E-Buses(2) 0AOP-36.1, Loss of Any 4160V Buses or 480V E-Buses(1) 0AOP-36.2, Station Blackout(2) 0AOP-36.2, Station Blackout(1) 0AOP-36.2, Station Blackout(2) 0AOP-36.1, Loss of Any 4160V Buses or 480V E-Buses A.B.C.D. Page: 38

39. Which one of the following identifies how the manually initiated, automaticallyexecuted, fast bus transfer capability is affected following a loss of 125V DC Panel 9A?The fast bus transfer will

____(1)____ if attempted for 4 KV Bus 1B. The fast bus transfer will

____(2)____ if attempted for 4 KV Bus 1C.(1) occur(2) NOT occur(1) occur(2) occur(1) NOT occur(2) NOT occur(1) NOT occur(2) occur A.B.C.D. Page: 39

40. Which one of the following completes the statements below concerning the TurbineTrip / Turbine Stop Valve (TSV) closure scram?Anticipates the pressure, neutron flux, and heat flux rise due to the (1) in voids. The TSV closure scram is automatically bypassed on a signal from (2)

.(1) increase(2) total steam flow(1) increase(2) turbine first stage pressure(1) decrease(2) total steam flow(1) decrease(2) turbine first stage pressure A.B.C.D. Page: 40

41. Unit Two was manually scrammed with the following indications. Which one of the following completes the statements below? (1)

ATWS has occurred. The reactor (2) remain shutdown under all conditions without boron.(1) A hydraulic (2) will (1) A hydraulic (2) will NOT(1) An electrical (2) will (1) An electrical (2) will NOT A.B.C.D. Page: 41

42. Following a reactor scram on Unit One, plant conditions are: Reactor water level 220 inches, rising Reactor pressure 350 psig, steady Drywell ref leg temp 205°F, steadyWhich one of the following identifies the indicated level (on level indicator N027A/B)that corresponds to the bottom of the Main Steam Lines? (Reference provided)240 inches245 inches250 inches255 inches A.B.C.D. Page: 42
43. Unit Two is operating at 60% when Reactor Recirculation Pump 2A speed begins toslowly rise. Which one of the following identifies an immediate action required IAW 2AOP-03.0,Positive Reactivity Addition?Insert control rods.Depress the Man Runback pushbutton.Depress 2A Emerg Stop A pushbutton.Depress 2A VFD Lower Fast pushbutton.

A.B.C.D. Page: 43

44. Which one of the following completes the statements below IAW LEP-02, AlternateControl Rod Insertion?The RWM is bypassed using a (1)

. The reason that the RWM is bypassed is because the (2)

.(1) keylock switch(2) Emergency Rod In Notch Override switch will not work when an Insert Blockexists(1) joystick(2) Emergency Rod In Notch Override switch will not work when an Insert Blockexists(1) keylock switch(2) Mode Switch in Shutdown generates a Control Rod Block(1) joystick(2) Mode Switch in Shutdown generates a Control Rod Block A.B.C.D. Page: 44

45. Which one of the following systems used during plant shutdown from outside thecontrol room has both flow indication and flow control capability at the Remote Shutdown Panel?

CRD RCICRHR Loop BRHRSW Loop B A.B.C.D. Page: 45

46. Unit Two is performing a reactor startup.The following events occur prior to rolling the main turbine: Bus 2C experiences a fault and trips Unit Two NSW header ruptures in the Service Water BuildingAll Unit Two Service Water pumps supplying the NSW Header are manuallytrippedWhich one of the following identifies the status of the Diesel Generators and thecooling water supply?ONLY DG4 is running with cooling water supplied from the Unit One NSW Pumps.ONLY DG4 is running with cooling water supplied from the Unit Two CSW PumpsDG2 is running with cooling water supplied from the Unit One NSW Pumps andDG4 is running with cooling water supplied from the Unit One NSW Pumps.DG2 is running with cooling water supplied from the Unit One NSW Pumps andDG4 is running with cooling water supplied from the Unit Two CSW Pumps.

A.B.C.D. Page: 46

47. During operation at rated power with the instrument air NOT cross-tied, the followingindication is observed: Assuming the situation continues to degrade at the current rate, which one of thefollowing represents the earliest time that the MSIVs may start drifting closed IAW0AOP-20.0, Pneumatic (Air/Nitrogen) System Failures?1203 1208 1210 1212 A.B.C.D. Page: 47
48. Unit Two is in Cold Shutdown with both Reactor Recirculation pumps shutdown.Shutdown Cooling (SDC) has been established using RHR Loop B.Which one of the following completes the statement below for a loss of shutdowncooling under the above conditions IAW 0AOP-15.0, Loss of Shutdown Cooling?RPV Level must be raised to at least (1) inches to establish (2)

.(1) 254(2) natural circulation(1) 254(2) feed and bleed evolutions(1) 200(2) natural circulation(1) 200(2) feed and bleed evolutions A.B.C.D. Page: 48

49. Which one of the following is a Plant Design Feature credited for minimizing theradiological impact of a Design Bases Refueling Accident IAW the Updated Final Safety Analysis Report (UFSAR)?Control Building Ventilation Radiation Monitoring System auto start of CREV.Reactor Building Ventilation Radiation Monitoring System auto start of SBGT.Refueling Bridge Boundary Zone Control System preventing fuel movements intoforbidden areas.Spent Fuel Pool and Cooling System maintaining spent fuel pool level greater than23 feet over irradiated fuel.

A.B.C.D. Page: 49

50. The following conditions exist on Unit Two:Drywell pressure 2 psigDrywell temperature 180°FReactor water level 95 inchesReactor pressure 450 psigWhich one of the following completes the statements below?The Drywell Cooler fans (1) running.The DW Lower Vent Dampers are in the (2) position.(1) are(2) MIN(1) are(2) MAX(1) are NOT(2) MIN(1) are NOT(2) MAX A.B.C.D. Page: 50
51. A loss of off-site power occurs on Unit Two with the following plant conditions:Reactor water level 200 inches - stableHPCI In MAN in pressure controlRCIC Tripped, ready for restartReactor pressure 1125 psig and risingIf reactor pressure is allowed to continue to rise, which one of the following identifiesthe reason the HPCI system will trip?Turbine overspeedHigh reactor water level Steam Line High FlowHigh turbine exhaust pressure A.B.C.D. Page: 51
52. Which one of the following completes the statements below?The purpose of the RHR Heat Exchangers is to reject heat from the suppression pool to the (1)

System.In order to increase an established cooldown rate of the suppression pool IAW2OP-17, Residual Heat Removal System Operating Procedure, throttle (2)

E11-F048A, HX 2A Bypass Valve.(1) Service Water(2) open(1) Service Water(2) closed(1) Reactor Building Closed Cooling Water(2) open(1) Reactor Building Closed Cooling Water(2) closed A.B.C.D. Page: 52

53. During an accident, reactor pressure and drywell reference leg area temperature are inthe Unsafe region of the Reactor Saturation Limit.Which one of the following reactor water level instruments are least likely to becomeunreliable due to reference leg flashing?Fuel zoneWide RangeNarrow RangeShutdown Range A.B.C.D. Page: 53
54. With Unit One at rated power, the following control room indications are observed:A-01 (3-7)

Suppression Cham ber Lvl Hi/Lo in alarmERFIS indication Which one of the following completes the statements below?The suppression chamber water level is (1)

.This condition requires entry into (2)

.(1) low(2) LCO 3.6.2.2, Suppression Pool Water Level and PCCP(1) low(2) LCO 3.6.2.2, Suppression Pool Water Level, ONLY(1) high(2) LCO 3.6.2.2, Suppression Pool Water Level and PCCP(1) high(2) LCO 3.6.2.2, Suppression Pool Water Level, ONLY A.B.C.D. Page: 54

55. During an accident, Unit Two plant conditions are: Reactor water level -35 inches, lowering Reactor pressure 900 psig Drywell average temp 185°F Drywell ref leg temp 215°F Injection sources None availableUnder these conditions, which one of the following is the LOWEST RPV water levelthat still assures adequate core cooling is being maintained?(Reference provided)

-45 inches

-60 inches-72.5 inches-82.5 inches A.B.C.D. Page: 55

56. Unit Two is operating at rated power.The following ERFIS indications are observed ten minutes into the event:

Which one of the following identifies the status of the HPCI and RCIC systems basedon the conditions above?HPCI ONLY is isolated.RCIC ONLY is isolated.Both HPCI and RCIC are isolated.Neither HPCI nor RCIC are isolated.

A.B.C.D. Page: 56

57. Which one of the following radiation annunciators requires entry into RRCP?UA-03 (1-6)

RBCCW Liquid Process Rad HighUA-03 (2-3)

Rx Bldg Roof Vent Rad High UA-03 (2-7)

Area Rad Rx Bldg HighUA-03 (4-5)

Process Rx Bldg Vent Rad High A.B.C.D. Page: 57

58. Unit Two is at rated power when the following annunciators are received:

UA-03 (5-2)

Process Off-Gas Rad HighUA-03 (4-5)

Process Rx Bldg Vent Rad HighUA-03 (3-5)

Process Rx Bldg Vent Rad Hi-HiWhich one of the following identifies the automatic actions that should occur?PASS sample valves close and AOG-HCV-102, AOG System Bypass Valve, shuts(if open).Group 6 initiation and AOG-HCV-102, AOG System Bypass Valve, shuts (if open).Process Off-Gas Timer initiation and SBGT initiation.Group 6 isolation and SBGT initiation.

A.B.C.D. Page: 58

59. Following a complete loss of RBCCW, a manual reactor scram was inserted. Following the scram, the Scram Discharge Volume ruptured.

Plant conditions are:Drywell average temp 190°FDrywell pressure 2.3 psig Rx Bldg 20' south temp 195°F UA-12 (1-4)

South RHR Rm Flood Lvl Hi-Hi is in alarmUA-12 (1-3)

South CS Rm Flood Lvl Hi-Hi is in alarmWhich one of the following identifies the operator action required by SCCP?Perform emergency depressurization.Reset RPS to isolate the primary system discharge.Commence a reactor cooldown not to exceed 100°F/hr.Rapidly depressurize to the main condenser irrespective of cooldown rate.

A.B.C.D. Page: 59

60. An ATWS condition currently exists on Unit Two with the following plant conditions:Reactor Power 4%Reactor pressure controlled by EHCDrywell pressure 2.1 psigReactor water level 95 inches LEP-02 Section 3 jumpers have just been installedWhich one of the following completes the statements below concerning the requiredactions prior to resetting RPS IAW LEP-02, Alternate Control Rod Insertion, Section 3?

ARI is placed to (1) and then RESET.The SDV Vents and Drains are confirmed to be (2)

.(1) NORM(2) open(1) NORM(2) closed(1) INOP(2) open(1) INOP(2) closed A.B.C.D. Page: 60

61. Unit Two has experienced a leak in the steam tunnel and the control buildingventilation has realigned. Which one of the following identifies:(1) in what location will 1 mR/hr cause annunciator UA-03 (6-7)

Area Rad ControlRoom High and(2) the reason the control building ventilation has realigned?(1) Control room.(2) To protect all Main Control Room personnel from elevated radiologicalconditions.(1) Control room.(2) To protect personnel working in the Control Room and the control building fromelevated radiological conditions.(1) Ventilation intake duct.(2) To protect all Main Control Room personnel from elevated radiologicalconditions.(1) Ventilation intake duct.(2) To protect personnel working in the Control Room and the control building fromelevated radiological conditions.

A.B.C.D. Page: 61

62. Unit Two is in MODE 3 following a seismic event with the following plant conditions:Reactor level 55 inchesReactor pressure 500 psigDrywell pressure 9 psigUA-01 (4-4)

Instr Air Press-Low in AlarmUA-01 (4-5)

Service Air Press-Low in AlarmUA-01 (1-2)

RB Inst Air Receiver 2B Press Low in AlarmWhich one of the following completes the statements below?RNA-SV-5481, Div II Backup N2 Rack Isol Vlv, is (1)

.RNA-SV-5261, Div II Non-Inrpt RNA, is (2)

.(1) open(2) open(1) open(2) closed(1) closed(2) open(1) closed(2) closed A.B.C.D. Page: 62

63. Unit One was operating at rated power when a loss of the SAT occurs with thefollowing plant conditions:Reactor water level 120 inchesReactor pressure 320 psigDrywell pressure 13 psig DG1 Running loaded DG2 Tripped/UnavailableWhich one of the following completes the statements below concerning the operationof the RBCCW system?A & C RBCCW pumps (1) running.RCC-V-28 and RCC-V-52, DW Header Equipment Isolation Valves, (2)

. (1) are(2) auto closed(1) are(2) remain open(1) are NOT(2) auto closed(1) are NOT(2) remain open A.B.C.D. Page: 63

64. A Unit One reactor building fire has occurred affecting safe shutdown Train Bequipment. Which one of the following identifies a component that is classified as ASSD Train BEquipment IAW 0ASSD-00, User's Guide?CSW Pump 1BNSW Pump 1BHPCI SystemCRD Pump 1B A.B.C.D. Page: 64
65. During rated power operation, plant status is: UA-06 (1-2)

Gen Under Freq Relay in alarm Generator frequency is 59.2 HertzWhich one of the following identifies why the turbine must be tripped if frequencyremains at its present value?To prevent damage to the:Generator.Main Transformer.Low Pressure Turbine.High Pressure Turbine.

A.B.C.D. Page: 65

66. A grid disturbance occurs with the following Unit One plant parameters: Generator Load 980 MWe Generator Reactive Load 160 MVARs, out Generator Gas Pressure 50 psigWhich one of the following identifies the available options that will place the Unit withinthe Estimated Capability Curve?(Reference provided)Raise gas pressure to 58 psig or lower power to 940 MWe.Raise gas pressure to 58 psig or raise reactive load to 240 MVARs.Raise gas pressure to 58 psig or lower reactive load to 70 MVARs.Lower power to 940 MWe or raise reactive load to 240 MVARs.

A.B.C.D. Page: 66

67. Which one of the following completes the statement below concerning the purpose ofthe High Pressure Coolant Injection (HPCI) System IAW Technical Specifications

Bases?HPCI is designed to provide sufficient coolant injection to maintain the reactor corecovered during a (1)

Loss-Of-Coolant-Accident to maintain fuel claddingtemperatures below (2)

.(1) small break (2) 1800°F(1) small break (2) 2200°F(1) large break(2) 1800°F(1) large break (2) 2200°F A.B.C.D. Page: 67

68. TIP traces are in progress with all TIP drawer Mode Switches in Auto.A small steam leak in containment causes drywell pressure to rise to 2.7 psig. Which one of the following predicts the final TIP ball valve position indication(s) andalso identifies all available location(s) for verifying their position?Green light indication illuminated on each TIP drawer at Back Panel P607 ONLY.White Valve Light illuminated on each TIP drawer at Back Panel P607 ONLY.Red light indication illuminated on P601 Panel and on each TIP drawer at BackPanel P607.Green light indication illuminated on P601 Panel and a white Valve Light illuminatedon each TIP drawer at Back Panel P607.

A.B.C.D. Page: 68

69. Which one of the following Scram Immediate Operator actions has a different setpointbetween Unit One and Unit Two?Tripping of the main turbine.Tripping of the first feed pump.Master level controller setpoint setdown.Placing the reactor mode switch to Shutdown.

A.B.C.D. Page: 69

70. IAW OPS-NGGC-1301, Equipment Clearance, which one of the following identifieswho can waive the requirement for a double valve isolation?

Assistant Operations Manager - ShiftMaintenance ManagerWork Week ManagerPlant Manager A.B.C.D. Page: 70

71. (1) Full open(2) energized(1) Full open(2) de-energized(1) NOT full open(2) energized(1) NOT full open(2) de-energized A.B.C.D. Page: 71
72. Which one of the following completes the following statements IAW 0OI-01.03,Non-Routine Activities, Section 5.6.1, Primary Containment Access.The TIP system (1) required to be placed under clearance.A clearance to prevent the withdrawal of control rods (2) required.(1) is(2) is(1) is(2) is not(1) is not(2) is(1) is not(2) is not A.B.C.D. Page: 72
73. Unit Two is in MODE 1 when the following alarms and indications occur: UA-23 (2-6)

Main Steam Line Rad Hi In alarm RWCU Conductivity Recorder rising reactor water conductivity Reactor power remains steady No other annunciators are in alarmInitiation of which one of the following identifies the cause of these conditions?Zinc injection.Resin injection.Hydrogen injection.Noble metals injection.

A.B.C.D. Page: 73

74. Alternate shutdown cooling using SRV's has been established IAW 0AOP-15.0, Lossof Shutdown Cooling. SRV B21-F013B is currently open. The cooldown rate isapproaching 100°F/hr. The CRS has directed you to lower the cool down rate. Which one of the following completes the statement below IAW the 0AOP-15.0cooldown table above?The RO can lower the cooldown rate by closing B21-F013B and opening

.B21-F013AB21-F013CB21-F013JB21-F013K A.B.C.D. Page: 74

75. Unit Two was at power when a trip and lockout of BOP Bus 2B required insertion of amanual reactor scram. Shortly after the scram, the following indications are noted:

Drywell pressure 1.4 psig, rising Average drywell temp 140°F, risingWhich one of the following completes the statement below?The crew will be required to enter (1) and isolate Recirc Pump (2)

.(1) 0AOP-14.0(2) 2A(1) 0AOP-14.0(2) 2B(1) PCCP(2) 2A(1) PCCP(2) 2B A.B.C.D. Page: 75

76. Which one of the following completes the statements below concerning the Rod WorthMinimizer (RWM)?The RWM channel functional test was NOT required to be performed (1) anycontrol rod was withdrawn at <8.75% RTP in MODE 2 IAW Surveillance Requirement 3.3.2.1.2.Currently total steam flow is (2)

%.(1) until (2) 18(1) until(2) 20(1) until 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> after(2) 18 (1) until 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> after(2) 20 A.B.C.D. Page: 76

77. Following a large line break DBA LOCA, plant conditions are:Reactor water level -50 inches (N036/N037)Reactor pressure 5 psigCore Spray One loop available, injecting at 4800 gpmRHR One loop available, injecting at 17,000 gpm Suppression pool temp. 148°FThe CRS has reached step RC/L-44 in RVCP: Which one of the following identifies the basis for reduction in RPV injection whenreactor water level is below Minimum Steam Cooling Reactor Water Level?Prevent exceeding the Heat Capacity Temperature Limit.Maintain long term operation of the Core Spray and RHR Pumps.Minimize off-site releases per Alternative Source Term calculations.Prevent exceeding design temperature limits for Primary Containment.

A.B.C.D. Page: 77

78. Unit One is performing a reactor startup, prior to the point of adding heat.

IRM C is bypassed due to erratic operation. IRM A fails downscale.Which one of the following completes the statements below?Addressing ONLY Technical Specification 3.3.1.1, Reactor Protection System (RPS)Instrumentation, requires placing the channel in trip in (1) hours.IAW AD-OP-ALL-0101, Event Response and Notifications, the plant manager will bedirectly notified of this event by the (2)

.(Reference provided)(1) 6(2) Shift Manager(1) 6(2) Site Duty Manager(1) 12(2) Shift Manager(1) 12(2) Site Duty Manager A.B.C.D. Page: 78

79. Unit Two is at rated power. The following conditions occur:At 0200 Voter Channel 4 is declared inoperableAt 0600 APRM Channel 4 is declared inoperableWhich one of the following identifies the required action(s) and maximum completiontime(s) to maintain compliance with Technical Specifications? Reference providedPlace Voter Channel 4 in trip by 1400 ONLY.Place APRM Channel 4 in trip by 1200 ONLY.Place Voter Channel 4 and APRM Channel 4 in trip by 0800.Place either Voter Channel 4 or APRM Channel 4 in trip by 1800.

A.B.C.D. Page: 79

80. Unit One is operating at rated power.

On 10/13/14 at 1200 hours0.0139 days <br />0.333 hours <br />0.00198 weeks <br />4.566e-4 months <br /> it is discovered that this SR was last performed on 09/01/14at 0400 hours0.00463 days <br />0.111 hours <br />6.613757e-4 weeks <br />1.522e-4 months <br />.Which one of the following is correct IAW Technical Specifications?The time between surveillances is acceptable IAW SR 3.0.2.The time between surveillances is unacceptable. Enter TS 3.0.3 immediately.The time between surveillances is unacceptable. Entry into the applicableConditions and Required Actions for the missed surveillance is immediatelyrequired.The time between surveillances is unacceptable. Entry into the applicableConditions and Required Actions may be delayed for up to 31 days to permitperformance of the surveillance.

A.B.C.D. Page: 80

81. Unit Two was operating at rated power when the following alarms/conditions arereported:UA-03 (2-7)

Area Rad Rx Bldg HighUA-03 (4-5)

Process Rx Bldg Vent Rad Hi-HiUA-05 (6-10)

Rx Bldg IsolatedUA-05 (4-6)

SBGT Sys A FailureA-02 (5-7)

Stm Leak Det Ambient Temp HighUA-05 (6-7)

Rx Bldg Static Press Dif-LowA-01 (3-5)

HPCI Isol Trip sig A InitiatedA-01 (4-5)

HPCI Isol Trip sig B InitiatedThe following indications are observed: Which one of the following completes the statements below?A release through the Reactor Building blowout panels would be considered (1) release.The highest Emergency Action Level classification for the given conditions is (2)

. (Reference provided)(1) a ground (2) an Alert(1) a ground(2) a Site Area Emergency (1) an elevated(2) an Alert(1) an elevated(2) a Site Area Emergency A.B.C.D. Page: 81

82. Which one of the following identifies:(1) the minimum conditions that will cause the control room ventilation system toautomatically align in the Fire Protection mode and (2) the required Technical Specifications (TS) / Technical Requirements Manual (TRM)actions IAW 0OP-37, Control Building Ventilation System Operating Procedure, ifthe system was initiated for 20 minutes with minimum local smoke and with charcoalexposure doubtful?(1) Smoke detected in both Unit One and Unit Two makeup air ductwork.(2) Initiate an LCO on the affected train IAW TS 3.7.3, CREV System, and TRM3.18, CREV System-Smoke Protection Mode, ONLY.(1) Smoke detected in both Unit One and Unit Two makeup air ductwork.(2) Initiate an LCO on the affected train IAW TS 3.7.3, CREV System, and TRM3.18, CREV System-Smoke Protection Mode, and take the action specified in TS 5.5.7, Ventilation Filter Testing Program (VFTP).(1) Smoke detected in either Unit One or Unit Two makeup air ductwork.(2) Initiate an LCO on the affected train IAW TS 3.7.3, CREV System, and TRM3.18, CREV System-Smoke Protection Mode, ONLY.(1) Smoke detected in either Unit One or Unit Two makeup air ductwork.(2) Initiate an LCO on the affected train IAW TS 3.7.3, CREV System, and TRM3.18, CREV System-Smoke Protection Mode, and take the action specified in TS 5.5.7, Ventilation Filter Testing Program (VFTP).

A.B.C.D. Page: 82

83. Unit Two was operating at rated power when a trip of 2A RFP occurred followedimmediately by a trip of the 2B Reactor Recirc pump.

The following plant conditions exist: Reactor power 52% Total core flow (WTCF) 36.96 Mlbm/hr OPRM system InoperableWhich one of the following completes the statements below? The current operating point on the appropriate Power to Flow Map is (1)

.Verifying the current operating point on the Power to Flow Map is directed by (2)

Supplementary actions.(Reference provided)(1) 5% Buffer Region(2) 2AOP-04.0, Low Core Flow, ONLY(1) 5% Buffer Region(2) 2AOP-04.0, Low Core Flow AND 0AOP-23.0, Condensate/Feedwater System Failure,(1) Region B - Immediate Exit(2) 2AOP-04.0, Low Core Flow, ONLY(1) Region B - Immediate Exit(2) 2AOP-04.0, Low Core Flow AND 0AOP-23.0, Condensate/Feedwater System Failure, A.B.C.D. Page: 83

84. Which one of the following completes the statements below IAW TechnicalSpecification 3.3.2.2, Feedwater and Main Turbine High Water Level Trip Instrumentation?Three channels of feedwater and main turbine high water level trip instrumentation arerequired to be operable (1)

.The bases for the high water level trip indirectly initiating a reactor scram from the mainturbine trip is to mitigate the reduction in (2)

.(1) in MODE 1 (2) MCPR(1) in MODE 1 (2) LHGR(1) when thermal power is >23% RTP(2) MCPR(1) when thermal power is >23% RTP(2) LHGR A.B.C.D. Page: 84

85. The following plant conditions exist on Unit Two: An ATWS with a spurious Group I Isolation has occurred HPCI is injecting to the RPV to maintain RPV level A-01 (1-5)

Suppression Chamber Lvl Hi-Hi is in alarmWhich one of the following identifies:(1) the reason that HPCI is re-aligned from its current suction source and(2) the procedure that contains the steps to perform the actions to transfer the HPCIsuction valves? (1) To prevent pump bearing damage(2) HPCI Hard Card, HPCI Injection in EOPs(1) To prevent pump bearing damage(2) SEP-10, Circuit Alteration Procedure(1) To prevent HPCI exhaust check valve damage(2) HPCI Hard Card, HPCI Injection in EOPs(1) To prevent HPCI exhaust check valve damage(2) SEP-10, Circuit Alteration Procedure A.B.C.D. Page: 85

86. Unit One was at full power when all offsite power was lost. The following is the Emergency Diesel Generator status: DG1 Locked out on fault DG2 Running and loaded DG3 Running and loaded DG4 Locked out on faultWhich one of the following completes the statements below?The (1)

CRD pump must be started to re-establish the CRD system. (2) contains the step for placing the CRD Flow Control, C11-FC-R600, in manualwith manual potentiometer at minimum setting following the loss of the CRD pump?(1) 1A(2) 1OP-08, Control Rod Hydraulic System Operating Procedure.(1) 1A(2) 0AOP-02, Control Rod Malfunction/Misposition.(1) 1B(2) 1OP-08, Control Rod Hydraulic System Operating Procedure.(1) 1B(2) 0AOP-02, Control Rod Malfunction/Misposition.

A.B.C.D. Page: 86

87. During an ATWS on Unit One the following annunciators/indications are observed:A-05 (3-6)

Reactor Vess Hi Press TripA-03 (1-10)

Safety / Relief Valve OpenSRV A, C, F, and G are cycling open Which one of the following completes the statements below?The highest that reactor pressure reached was at least (1) psig.The bases for Step RC/P-09 of LPC is to (2)

.(1) 1060(2) conserve SRV accumulator pressure(1) 1060(2) minimize heat discharged to the suppression pool(1) 1130(2) conserve SRV accumulator pressure(1) 1130(2) minimize heat discharged to the suppression pool A.B.C.D. Page: 87

88. Unit One is at rated power. 0AOP-30.0, Safety/Relief Valve Failures, has been enteredfor a stuck open SRV F and the supplementary actions are being performed.The following torus temperatures are observed: 93° F Suppression Pool Temp at location 45° on ERFIS91° F Suppression Pool Temp at location 90° on ERFIS 90° F Suppression Pool Temp at location 135° on ERFIS 91° F Suppression Pool Temp at location 180° on ERFIS 93° F Suppression Pool Temp at location 225° on ERFIS 97° F Suppression Pool Temp at location 270° on ERFIS112° F Suppression Pool Temp at location 315° on ERFIS96.1° F Blk Wtr Avg Supp Pool on CAC-TR-4426-1A Which one of the following identifies:(1) the required action IAW Technical Specification 3.6.2.1, Suppression Pool AverageTemperature, and(2) the consequences of pulling SRV F fuses in the incorrect order?(Reference provided)(1) Enter Condition A.(2) Loss of power to the SRV tailpipe temperature sensors.(1) Enter Condition A.(2) The power sensing relay would be required to shift.(1) Enter Condition D.(2) Loss of power to the SRV tailpipe temperature sensors.(1) Enter Condition D.(2) The power sensing relay would be required to shift.

A.B.C.D. Page: 88

89. Unit Two is executing RVCP with the following conditions present: Reactor water level 55 inches (N036/N037) and rising Supp. chamber pressure 1.5 psig Core Spray One loop injecting at 3000 gpm RHR One loop injecting at 8800 gpm Supp. pool level -5 feet 7 inches Supp. pool temp 178° FWhich one of the following actions are required IAW RVCP to ensure there is no Core Spray or RHR pump damage?(Reference provided)Raise Core Spray flow to 5000 gpm and shutdown the RHR pump(s).Raise Core Spray flow to 5000 gpm and lower RHR flow to 8,000 gpm.Raise Core Spray flow to 3600 gpm and shutdown the RHR pump(s).Raise Core Spray flow to 3600 gpm and lower RHR flow to 8,000 gpm.

A.B.C.D. Page: 89

90. Unit One is shutting down for a forced outage IAW GP-05, Unit Shutdown, due to afailing reactor recirculation pump seal #1.

RCIC is in day 4 of a 7 day LCO.

The reactor mode switch is placed in SHUTDOWN as directed by the procedure. The startup level control valve fails and HPCI is manually placed in service to maintainRPV water level.

Reactor water level dropped to 150 inches before being restored and maintained in thenormal band.Which one of the following completes the statement below?IAW 0OI-01.07, Notifications, this event meets the conditions for reportability within:(Reference provided)4 hour4.62963e-5 days <br />0.00111 hours <br />6.613757e-6 weeks <br />1.522e-6 months <br /> ONLY.8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> ONLY.1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> AND 4 hours4.62963e-5 days <br />0.00111 hours <br />6.613757e-6 weeks <br />1.522e-6 months <br />.4 hours AND 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br />.

A.B.C.D. Page: 90

91. A fuel bundle has been dropped in the Unit Two Spent Fuel Pool with area radiationvalues as indicated on Attachment 1, Area Radiation Monitoring.Which one of the following completes the statements below?An area (1) exceeded the Max Norm Operating Radiation Limit.The Alternate Source Term Implementation analysis dictates that the maximumallowable time to manually start the Control Room Emergency Ventilation system is (2) minutes.(Reference provided)(1) has(2) 15(1) has(2) 20(1) has NOT(2) 15(1) has NOT(2) 20 A.B.C.D. Page: 91
92. During accident conditions, the source term from the Unit One Turbine BuildingVentilation must be estimated IAW 0PEP-03.6.1, Release Estimates Based Upon Stack/Vent Readings. Available data: 1-D12-RR-4548-3-2-1 Reading 7.425 E

-1 µCi/cc 1-VA-FT-3358 Failed low (Turbine Building Vent Flow) Turb Bldg HVAC 2 exhaust fans running Sample results 1.284 E+4

µCi/sec (taken 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> ago)Which one of the following identifies the highest emergency action level classificationthat is required for these conditions?(Reference provided)Unusual EventAlertSite Area EmergencyGeneral Emergency A.B.C.D. Page: 92

93. IAW Technical Specification 3.7.2, Service Water (SW) System and Ultimate Heat Sink(UHS), which one of the following inoperable pumps, by itself, would require entry into an action statement? CSW Pump 1BCSW Pump 2BNSW Pump 1BNSW Pump 2B A.B.C.D. Page: 93
94. Which one of the following events would require you to direct a Reactor Scram in orderto maintain safe operation of the facility?
1. With Unit Two in MODE 1, an electrical fire has resulted in erratic or questionableindications on numerous main control room nuclear instruments2. An earthquake has occurred in which the National Earthquake Center reportshorizontal ground accelerations of 0.08 g were registered. Operating Basis Earthquake (OBE) exceedance light is energized. All other plant indications indicate the plant is currently stable.3. Power is at 50% and power ascension is in progress after a refuel outage. Anaccident on the Refuel Floor involving spent fuel has caused the Shift Manager to declare a Site Area Emergency. 4. Department of Homeland Security has increased the National Threat AdvisorySystem (NTAS) Level to elevated threat for Brunswick County.Event 1Event 2Event 3Event 4 A.B.C.D. Page: 94
95. Which one of the following completes the statements below concerning the Unit TwoTurbine Bypass System?The minimum number of inoperable turbine bypass valves that would require entryinto an action statement of LCO 3.7.6, Main Turbine Bypass System, is (1)

.The capacity of the Unit Two Turbine Bypass System is (2)

%.(1) two(2) 20.6(1) two(2) 69.6(1) three(2) 20.6(1) three(2) 69.6 A.B.C.D. Page: 95

96. The following information was obtained during the last scram timing for control rod18-19 IAW 0PT-14.2.1, Single Rod Scram Insertion Times Test.

Control Position Time Rod Insertion Notch (Secs) 18-19 5% 46 0.438 20% 36 1.188 50% 26 2.026 90% 6 3.349Unit One is operating at rated power when control rod 18-19 scram accumulator hasdepressurized and cannot be repaired for two days. All other control rods and control rod scram accumulators are operable.Concerning control rod 18-19, which one of the following completes the statementsbelow?The scram times (1) within Technical Specification 3.1.4, Control Rod ScramTimes.IAW Technical Specification 3.1.5, Control Rod Scram Accumulators the control rod (2) be declared SLOW.(Reference provided)(1) are(2) can(1) are(2) cannot(1) are NOT(2) can(1) are NOT(2) cannot A.B.C.D. Page: 96

97. During accident conditions, an auxiliary operator is needed to enter the reactor buildingfor local emergency actions to prevent fuel damage. Due to elevated reactor buildingradiation levels, it is estimated the operator will receive 7.5 rem.Which one of the following completes the statements below?The estimated dose of 7.5 rem (1) exceed EPA-400 limits.The Site Emergency Coordinator (2) authorize exceeding 10CFR20 limits IAW0PEP-3.7.6, Emergency Exposure Controls.(1) will not(2) can(1) will not(2) cannot(1) will(2) can(1) will(2) cannot A.B.C.D. Page: 97
98. Unit Two is shutdown to support drywell entry due to Recirculation Pump oil levelconcerns. Reactor coolant temperature is 200°F.E&RC has determined that the drywell atmosphere is not suitable for unfilteredrelease.Which one of the following completes the statements below IAW 2OP-24, Section6.3.13, Primary Containment Purging (Deinerting) Through the SBGT System?This section (1) be performed under the current plant conditions.If drywell pressure was above 0.7 psig, deinerting could result in (2)

.(1) can(2) contamination of the RB 50'(1) cannot(2) contamination of the RB 50'(1) can(2) exceeding ODCM Main Stack release rates(1) cannot(2) exceeding ODCM Main Stack release rates A.B.C.D. Page: 98

99. A fire in the control building fire area requires entry into 0ASSD-01, Alternative SafeShutdown Procedure Index. The CRS has determined that alternate safe shutdownactions are required. Both Unit One and Unit Two have been manually scrammed.Which one of the following completes the statements below IAW 0ASSD-01?The next action that is required is to (1)

.Following this action both units will (2)

.(1) place MSIV control switches in close(2) perform 0ASSD-01, Alternative Safe Shutdown Procedure Index concurrentlywith 0ASSD-02, Control Building.(1) trip both Reactor Recirc pumps(2) perform 0ASSD-01, Alternative Safe Shutdown Procedure Index concurrentlywith 0ASSD-02, Control Building.(1) place MSIV control switches in close(2) exit 0ASSD-01, Alternative Safe Shutdown Procedure Index and enter0ASSD-02, Control Building(1) trip both Reactor Recirc pumps(2) exit 0ASSD-01, Alternative Safe Shutdown Procedure Index and enter0ASSD-02, Control Building A.B.C.D. Page: 99 100. The following alarms and

indications exist on Unit One: A-05 (5-6)

Pri Ctmt Press Hi Trip is in alarm A-03 (6-9)

Reactor Low Wtr Level Initiation is in alarm A-03 (5-1)

Auto Depress Timers Initiated is in alarm Reactor coolant sample yields a result of 310 µCi/gm Iodine-131Inboard and Outboard MSIV logic lights are illuminated No area radiation or temperatures are above Max Normal Operating LevelsWhich one of the following completes the statement below?These alarms and

indications establish that a loss of the _____ exists.(Reference provided)Containment AND

Fuel Clad Barriers ONLY

Reactor Coolant System AND

Fuel Clad Barriers ONLY

Reactor Coolant System AND Containment Barriers ONLY

Containment, Reactor Coolant System AND

Fuel Clad Barriers A.B.C.D.Page: 100 SRO Written Exam Reference Index 1. Attachment 1, Area Radiation Monitoring 2. 0EOP-01-UG, User's Guide, Attachment 10, Figure 24, Secondary Containment Area Radiation 3. 0EOP-01-UG, User's Guide, Attachment 5, Figure 5, Core Spray NPSH Limit 4. 0EOP-01-UG, User's Guide, Attachment 5, Figure 6, RHR NPSH Limit 5. 0EOP-01-UG, User's Guide, Attachment 5, Figure 9, Unit 1 Core Spray Vortex Limit 6. 0EOP-01-UG, User's Guide, Attachment 5, Figure 10, Unit 2 Core Spray Vortex Limit 7. 0EOP-01-UG, User's Guide, Attachment 5, Figure 11, Unit 1 RHR Vortex Limit 8. 0EOP-01-UG, User's Guide, Attachment 5, Figure 12, Unit 2 RHR Vortex Limit 9. 0EOP-01-UG, User's Guide, Attachment 6, Figure 17A, Unit 2 Reactor Water Level at TAF 10. 0EOP-01-UG, User's Guide, Attachment 6, Figure 18A, Unit 2 Reactor Water Level at LL-4 (Minimum Steam Cooling Level) 11. 0EOP-01-UG, User's Guide, Attachment 6, Figure 19A, Unit 2 Reactor Water Level at LL-5 (Minimum Zero Injection Level) 12. 0EOP-01-UG, User's Guide, Attachment 6, Figure 21, Reactor Water Level at MSL (Main Steam Line Flood Level) 13. 0OI-01.07, Attachment 1, Reportability Evaluation Checklist 14. 1OP-27, Figure 1, Estimated Capability Curves 15. 0PEP-02.1, Brunswick Nuclear Plant Initial Emergency Actions 16. 0PEP-03.6.1, Attachment 3, Source Term Calculation From #1 Turbine Vent 17. TS 3.1.4, Control Rod Scram Times

18. TS 3.1.5, Control Rod Scram Accumulators 19. TS 3.3.1.1, RPS Instrumentation 20. TS 3.6.2.1, Suppression Pool Average Temperature 21. B2C21 Core Operating Limits Report, Figure 2, Stability Option III Power/Flow Map, OPRM Inoperable, Two Loop Operation, 2923 MWt. 22. B2C21 Core Operating Limits Report, Figure 4, Stability Option III Power/Flow Map, OPRM Inoperable, Single Loo p Operation, 2923 MWt.

ATTACHMENT 1 AREA RADIATION MONITORING U-2 RX BLDGSAMPLING STATIONARM CHANNEL 2-24U-2 RX BLDGCASK WASH AREAELEV 117 FTARM CHANNEL 2-29U-2 RX BLDG NORTHAIRLOCK DOOR AREAELEV 50 FTARM CHANNEL 2-25U-2 RX BLDGSPENT FUEL POOLCOOLING SYSTEMELEV 80 FTARM CHANNEL 2-30U-2 RX BLDG NORTH OF FUELSTORAGE POOLELEV 117 FTARM CHANNEL 2-27U-2 RX BLDG BETWEEN RX ANDFUEL STORAGE POOL ELEV 117 FTARM CHANNEL 2-28

0EOP-01-UG Rev. 64 Page 143 of 151 ATTACHMENT 10 Page 5 of 5 Secondary Containment Temper ature and Radiation Limits FIGURE 24 Secondary Containment Area Radiation TABLE 3 AREA RADIATION LIMITS PLANT AREA PLANT LOCATION DESCRIPTION ARM CHANNEL MAX NORM OPERATING VALUE (mR/HR)

MAX SAFE OPERATING VALUE (mR/HR)

N CORE SPRAY N CORE SPRAY ROOM 15 200

  • 3000 HPCI HPCI ROOM N/A N/A
  • 3000 N ACROSS FROM TIP ROOM 19 RX BLDG DRYWELL ENTRANCE 20 80
  • 2000 20 FT ELEV DECON ROOM 22 RAILROAD DOORS 23 RX BLDG 50 FT SAMPLE STATION 24 80
  • 2000 ELEV RX BLDG AIR LOCK 25 RX BLDG N OF FUEL STORAGE POOL 27 80
  • 7000 117 FT ELEV BETWEEN RX

& FUEL POOL 28 1000 7000 CASK WASH AREA 29 90

  • 7000 RX BLDG 80 FT ELEV SPENT FUEL COOLING SYSTEM 30 90
  • 3000
  • CONTACT E&RC TO DETERMINE IF MAX SAFE OPERATING VALUE IS EXCEEDED 0EOP-01-UG Rev. 64 Page 80 of 151 ATTACHMENT 5 Page 21 of 28 FIGURE 5 Core Spray NPSH Limit SUBTRACT 0.5 PSIG FROM INDICATED SUPPRESSION CHAMBER PRESSURE FOR EACH FOOT OF WATER LEVEL BELOW A SUPPRESSION

POOL WATER LEVEL OF -31 INCHES (-2.6 FEET).

  • SUPPRESSION CHAMBER PRESSURE (CAC-PI-1257-2A OR CAC-PI-1257-2B) 0EOP-01-UG Rev. 64 Page 81 of 151 ATTACHMENT 5 Page 22 of 28 FIGURE 6 RHR NPSH Limit SUBTRACT 0.5 PSIG FROM INDICATED SUPPRESSION CHAMBER PRESSURE FOR EACH FOOT OF WATER LEVEL BELOW A SUPPRESSION

POOL WATER LEVEL OF -31 INCHES (-2.6 FEET).

  • SUPPRESSION CHAMBER PRESSURE (CAC-PI-1257-2A OR CAC-PI-1257-2B) 0EOP-01-UG Rev. 64 Page 84 of 151 ATTACHMENT 5 Page 25 of 28 FIGURE 9 Unit 1 Core Spray Vortex Limit

0EOP-01-UG Rev. 64 Page 85 of 151 ATTACHMENT 5 Page 26 of 28 FIGURE 10 Unit 2 Core Spray Vortex Limit

0EOP-01-UG Rev. 64 Page 86 of 151 ATTACHMENT 5 Page 27 of 28 FIGURE 11 Unit 1 RHR Vortex Limit

0EOP-01-UG Rev. 64 Page 87 of 151 ATTACHMENT 5 Page 28 of 28 FIGURE 12 Unit 2 RHR Vortex Limit

0EOP-01-UG Rev. 64 Page 100 of 151 ATTACHMENT 6 Page 13 of 19 FIGURE 17A Unit 2 Reactor Water Level at TAF WHEN REACTOR PRESSURE IS LESS THAN 60 PSIG, USE INDICATED LEVEL.

TAF IS -7.5 INCHES.

0EOP-01-UG Rev. 64 Page 102 of 151 ATTACHMENT 6 Page 15 of 19 FIGURE 18A Unit 2 Reactor Water Level at LL-4 (Minimum Steam Cooling Level)

WHEN REACTOR PRESSURE IS LESS THAN 60 PSIG, USE INDICATED LEVEL.

LL-4 IS -27.5 INCHES.

0EOP-01-UG Rev. 64 Page 104 of 151 ATTACHMENT 6 Page 17 of 19 FIGURE 19A Unit 2 Reactor Water Level at LL-5 (Minimum Zero Injection Level)

WHEN REACTOR PRESSURE IS LESS THAN 60 PSIG, USE INDICATED LEVEL.

LL-5 IS -45.0 INCHES.

0EOP-01-UG Rev. 64 Page 106 of 151 ATTACHMENT 6 Page 19 of 19 FIGURE 21 Reactor Water Level at MSL (Main Steam Line Flood Level)

WHEN REACTOR PRESSURE IS LESS THAN 60 PSIG, USE INDICATED LEVEL.

MSL IS +250 INCHES.

NOTIFICATIONS 0OI-01.07 Rev. 33 Page 24 of 43 ATTACHMENT 1 Page 1 of 7 Reportability Evaluation Checklist NOTE If the answer to the following question is YES, then Accelerated Verbal Notification to the NRC is required within 15 minutes.

Reference 0AOP

-40.0, Security Events, for notification content.

15 MINUTE REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION NA Has a Hostile Action occurred?

[NRC Bulletin 2005

-02] NOTE NUREG-1022, Rev.

3 is a reference to provide additional guidance on reportability.

If the answer to any of the following questions is YES, the event is reportable within 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br />. If all answers to the following questions are NO , the event is not reportable within 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br />. 1 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 1.1 Is the event a deviation from technical specifications as per 10 CFR 50.54(X)?

[10 CFR 50.72(b)(1)]

1.2 1.2.1 Does the event involve by

-product, source or special nuclear material possessed by the licensee that might have or threatens to cause:

Any individual

's exposure to reach or exceed 25 Rems total effective dose equivalent (TEDE); 75 Rems eye dose equivalent; or 250 Rads shallow

-dose equivalent to the skin or extremities?

[10 CFR 20.2202(a)(1)]

1.2.2 The release of radioactive material inside or outside of a restricted area, such that, had an individual been present for 24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br />, the individual could have received an intake 5 times the occupational annual limit on intake?

[10 CFR 20.2202(a)(2)]

1.3 ISFSI - Does the event involve accidental criticality or loss of any special nuclear material?

[10 CFR 72.74(a)]

NOTIFICATIONS 0OI-01.07 Rev. 33 Page 25 of 43 ATTACHMENT 1 Page 2 of 7 Reportability Evaluation Checklist NOTE If the answer to any of the following questions is YES, the event is reportable within 4 hours4.62963e-5 days <br />0.00111 hours <br />6.613757e-6 weeks <br />1.522e-6 months <br />. If all answers to the following questions are NO , the event is not reportable within 4 hours4.62963e-5 days <br />0.00111 hours <br />6.613757e-6 weeks <br />1.522e-6 months <br />. 4 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 2.1 Is plant shutdown required by technical specifications being initiated?

[10 CFR 50.72(b)(2)(i)]

NOTE Includes any Safety Limit violation (Tech Spec 2.2).

2.2 Has the event resulted in or should have resulted in an Emergency Core Cooling System (ECCS) discharge into the Reactor Coolant System as a result of a valid signal, except when the actuation resulted from and was part of a pre

-planned sequence during testing or reactor operation?

[10 CFR 50.72(b)(2)(iv)(A)]

2.3 Did the event or condition result in actuation of the reactor protection system (RPS) when the reactor was critical, except when the actuation resulted from and was part of a pre-planned sequence during testing or reactor operatio n? [10 CFR 50.72(b)(2)(iv)(B)]

2.4 Is the event a situation, as related to the health and safety of the public or on

-site personnel, or protection of the environment, for which a news release is planned or notification to other government agencies has been or will be made?

[10 CFR 50.72(b)(2)(xi)]

[10 CFR 72.75(b)(2)]

NOTE Such an event may include an on

-site fatality or an inadvertent release of radioactively contaminated materials.

Outside Government Agency notifications (e.g., North Carolina Wildlife Resource Commission) as a result of sea turtle takes resulting in injury or death that are determined to be causally related to BSEP operations are reportable to the NRC under 10 CFR 50.72(b)(2)(xi).

2.5 Has any licensed material been lost, stolen, or missing in an aggregate quantity equal to or greater than 1,000 times the quantity specified in 10 CFR 20 Appendix C under such circumstances that it appears that an exposure could result to persons in unrestricted areas?

[10 CFR 20.2201(a)(i)]

NOTE For further information refer to AD-SY-ALL-0150, Reporting Safeguards, Security, and Fitness for Duty Events.

NOTIFICATIONS 0OI-01.07 Rev. 33 Page 26 of 43 ATTACHMENT 1 Page 3 of 7 Reportability Evaluation Checklist 4 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 2.6 ISFSI - Departure from License Condition.

Has an action been taken in an emergency that departs from a condition or a technical specification contained in a license or certificate of compliance issued under 10 CFR 72 when the action was immediately needed to protect the public health and safety and no action consistent with license conditions or technical specifications that could provide adequate or equivalent protection was immediately apparent as per 72.32(d)?

[10 CFR 72.75(b)(1)]

NOTE If the answer to any of the following questions is YES, the event is reportable within 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br />. If all the answers to the following questions are NO , the event is not reportable within 8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br />. 8 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 3.1 Has the event or condition resulted in the condition of the nuclear power plant, including its principal safety barriers, being seriously degrad ed? [10 CFR 50.72(b)(3)(ii)(A)]

3.2 Has the event or condition resulted in the nuclear power plant being in an unanalyzed condition that significantly degrades plant safety?

[10 CFR 50.72(b)(3)(ii)(B)]

3.3 3.3.1 Did the event or condition result in valid actuation of any of the systems listed below except when the actuation resulted from and is part of a pre

-planned sequence during testing or reactor operation?

[10 CFR 50.72(b)(3)(iv)(A)]

NOTE Automatic OR Manual initiation of the systems listed below is reportable.

NUREG-1022, Section 3.2.6 discussion, should be referenced for additional information.

These systems are:

Reactor protection system (RPS) including:

reactor scram and reactor trip.

[10 CFR 50.72(b)(3)(iv)(B)(1)]

NOTIFICATIONS 0OI-01.07 Rev. 33 Page 27 of 43 ATTACHMENT 1 Page 4 of 7 Reportability Evaluation Checklist 8 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 3.3.2 General containment isolation signals affecting containment isolation valves in more than one system or multiple main steam isolation valves (MSIVs).

Main Steam Isolation.

Main Steam Line Drain Isolation.

HPCI Steam Line Isolation.

RCIC Steam Line Isolation

. RWCU Suction Isolation.

Primary Containment Isolation.

Secondary Containment Isolation.

SGTS Actuation.

Combustible Gas Control (CAD).

[10 CFR 50.72(b)(3)(iv)(B)(2)]

3.3.3 Emergency core cooling systems (ECCS), including:

Core Spray (CS)

High Pressure Coolant Injection (HPCI)

Low Pressure Coolant Injection (LPCI) function of the Residual Heat Removal (RHR)

Automatic Depressurization (ADS) System

[10 CFR 50.72(b)(3)(iv)(B)(4)]

3.3.4 Reactor Core Isolation Cooling (RCIC)

[10 CFR 50.72(b)(3)(iv)(B)(5)]

3.3.5 Containment heat removal and depressurization systems including containment spray and fan cooler systems.

RHR Suppression Pool Cooling.

Drywell Spray System Actuation.

[10 CFR 50.72(b)(3)(iv)(B)(7)]

3.3.6 Emergency Diesel Generators (DGs)

[10 CFR 50.72(b)(3)(iv)(B)(8)]

NOTIFICATIONS 0OI-01.07 Rev. 33 Page 28 of 43 ATTACHMENT 1 Page 5 of 7 Reportability Evaluation Checkli st 8 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 3.4 3.4.1 Could the event or condition at the time of discovery have prevented the fulfillment of the safety function of structures or systems that are needed to:

[10 CFR 50.72(b)(3)(v)]

These criteria cover an event or condition in which scoped in SSCs could have failed to perform their intended function because of one or more personnel errors, including procedure violations; equipment failures; inadequate maintenance; or design, analysis, fabrication, equipment qualification, construction, or procedural deficiencies and no redundant equipment in the same system was OPERABLE. However, individual component failures need not be reported if redundant equipment in the same system was OPERABLE and available to perform the required safety function. [10 CFR 50.72(b)(3)(vi)]

Shut down the reactor and maintain it in a safe shutdown condition?

[10 CFR 50.72(b)(3)(v)(A)]

NOTE No Event Notification (i.e., per 10 CFR 50.72(b)(3)(v)) is required for conditions which could have prevented fulfillment of the safety function that are discovered when the affected system is INOPERABLE or when the affected system is INOPERABLE but considered available.

If the condition is discovered when the system is OPERABLE , an EN will be made per 10 CFR 50.72(b)(3)(v).

3.4.2 Remove residual heat?

[10 CFR 50.72(b)(3)(v)(B)]

3.4.3 Control the release of radioactive material?

[10 CFR 50.72(b)(3)(v)(C)]

3.4.4 Mitigate the consequences of an accident?

[10 CFR 50.72(b)(3)(v)(D)]

NOTE: RCIC INOPERABILITY is not reportable as a single train system per 10 CFR 50.72(b)(3)(v)(d).

TS Basis 3.5.3 states that the RCIC System is not an ESF system and no credit is taken in the safety analysis for RCIC System operation.

As such, consistent with Example 2 on NUREG 1022, Revision 3, RCIC Failure is not reportable under 10 CFR 50.72(b)(3)(v)(d).

3.5 Does the event require the transport of a radioactively contaminated person to an off-site medical facility for treatment?

[10 CFR 50.72(b)(3)(xii)]

[10 CFR 72.75(c)(3)]

NOTIFICATIONS 0OI-01.07 Rev. 33 Page 29 of 43 ATTACHMENT 1 Page 6 of 7 Reportability Evaluation Checklist NOTE Additional reportability guidance concerning loss of emergency preparedness capabilities is contained in Section 3.2.13 of NUREG-1022, Rev. 3

. Consultation with an Emergency Preparedness representative is advised when assessing the significance of the loss of capability.

0PLP-37, Equipment Important to Emergency Preparedness and ERO Response, is a reference for assistance in determining equipment important to Emergency Preparedness and whether planned or unplanned OPERABILITY of the equipment may be reportable.

8 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 3.6 Has the event resulted in a major loss of emergency assessment capability, off

-site response capability, or communications capability (i.e., significant portion of the Main Control Room indication, emergency notification system, or off

-site notification system)? [10 CFR 50.72(b)(3)(xiii)]

Major loss of emergency or off

-site notification system is considered to be/but not limited to:

a. Loss of: 1) Selective signaling; OR NRC Emergency Notification System (ENS);

AND 2) Commercial telephone network.

b. INOPERABILITY for greater than or equal to 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> of: 1) Seven or more off

-site sirens; OR 2) All off-site sirens in one county.

3.7 ISFSI -Important to Safety Defect Has a defect been discovered in any Independent Spent Fuel Storage structure, system, or component that is important to safety?

[10 CFR 72.75(c)(1)]

3.8 ISFSI - Reduction in Effectiveness Has a condition been discovered which results in a significant reduction in the effectiveness of any Independent Spent Fuel Storage cask confinement system during use?

[10 CFR 72.75(c)(2)]

NOTIFICATIONS 0OI-01.07 Rev. 33 Page 30 of 43 ATTACHMENT 1 Page 7 of 7 Reportability Evaluation Checklist NOTE If the answer to any of the following questions is YES, the event is reportable within 24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br />.

24 HOUR REPORTABILITY ITEM # YES NO DESCRIPTIVE QUESTION 4.1 4.1.1 Does the incident involve the loss of control of licensed material possessed by BNP which might have caused or threatens to cause:

Any individual

's exposure in a period of 24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br /> to exceed:

5 Rems total effective dose equivalent (TEDE); or 15 Rems eye dose equivalent; or 50 Rems shallow-dose equivalent to the skin or extremities?

[10 CFR 20.2202(b)(1)]

4.1.2 The release of radioactive material inside or outside of a restricted area, so that, had an individual been present for 24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br />, the individual could have received an intake in excess of one occupational annual limit on intake?

[10 CFR 20.2202(b)(2)]

4.2 ISFSI - Equipment Important to Safety Disabled or Failed to Function Does the event involve equipment important to safety which is disabled or fails to function as designed when:

The equipment is required by certificate of compliance to be available and OPERABLE to prevent releases that could exceed regulatory limits, to prevent exposures to radiation or radioactive materials that could exceed regulatory limits, or to mitigate the consequences of an accident; and, No redundant equipment was available and OPERABLE to perform the required safety function.

[10 CFR 72.75(d)(1)]

1OP-27 Rev. 60 Page 54 of 65 FIGURE 1 Page 1 of 1 Estimated Capability Curves

0PEP-03.6.1 Rev. 16 Page 8 of 12 ATTACHMENT 3 Page 1 of 1 Source Term Calculation From #1 Turbine Vent Release rate is read in

µCi/sec directly from 1-D12-RR-4548-4 (effluent channel) when the 1-VA-FT-3358 flow instrument loop is operational. The following calculations are necessary when this loop is not operational. TIME MONITOR READING (1) (µCi/cc) FLOW (2) (cfm) CONVERSION FACTOR cc/sec cfm RELEASE RATE (3) (µCi/sec) 472 (1) The monitor automatically selects the mo st accurate operational channel, either low, mid, or high range. Read the

µCi/cc from the appropriate channel (low, mid, or high) of 1-D12-RR-4548-3-2-1.

(2) If not available, use 15,500 cfm (3) Release Rate (µCi/sec) = (µCi/cc) x (cfm) x (472)

Control Rod Scram Times 3.1.4 Brunswick Unit 1 3.1-12 Amendment No. 219 3.1 REACTIVITY CONTROL SYSTEMS 3.1.4 Control Rod Scram Times LCO 3.1.4 a. No more than 10 OPERABLE control rods shall be "slow," in accordance with Table 3.1.4-1; and b. No more than 2 OPERABLE control rods that are "slow" shall occupy adjacent locations. APPLICABILITY: MODES 1 and 2.

ACTIONS CONDITION REQUIRED ACTION COMPLETION TIMEA. Requirements of the LCO not met. A.1 Be in MODE 3. 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> Control Rod Scram Times 3.1.4 Brunswick Unit 1 3.1-14 Amendment No. 250 Table 3.1.4-1 (page 1 of 1)

Control Rod Scram Times ---------------------------------------------------------- NOTES ---------------------------------------------------------- 1. OPERABLE control rods with scram times not within the limits of this Table are considered "slow." 2. Enter applicable Conditions and Required Actions of LCO 3.1.3, "Control Rod OPERABILITY," for control rods with scram times > 7 seconds to notch position 06. These

control rods are inoperable, in accordance with SR 3.1.3.3, and are not considered "slow." ------------------------------------------------------------------------------------------------------------------------------- NOTCH POSITION SCRAM TIMES WHEN REACTOR STEAM DOME PRESSURE 800 psig (a)(b) (seconds) 46 36 26 06 0.44 1.08 1.83 3.35 (a) Maximum scram time from fully withdrawn position, based on de-energization of scram pilot valve solenoids at time zero. (b) When reactor steam dome pressure is < 800 psig, established scram time limits apply.

Control Rod Scram Accumulators 3.1.5 Brunswick Unit 1 3.1-15 Amendment No. 203 3.1 REACTIVITY CONTROL SYSTEMS 3.1.5 Control Rod Scram Accumulators LCO 3.1.5 Each control rod scram accumulator shall be OPERABLE. APPLICABILITY: MODES 1 and 2.

ACTIONS -----------------------------------------------------------NOTE-----------------------------------------------------------

Separate Condition entry is allowed for each control rod scram accumulator.


CONDITION REQUIRED ACTION COMPLETION TIMEA. One control rod scram accumulator inoperable with reactor steam dome

pressure 950 psig.

A.1 ---------------NOTE------------

Only applicable if the

associated control rod

scram time was within the

limits of Table 3.1.4-1

during the last scram time

Surveillance.


Declare the associated control rod scram time "slow." OR A.2 Declare the associated control rod inoperable.

8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br />

8 hours9.259259e-5 days <br />0.00222 hours <br />1.322751e-5 weeks <br />3.044e-6 months <br /> (continued)

RPS Instrumentation 3.3.1.1 Brunswick Unit 1 3.3-1 Amendment No. 217 3.3 INSTRUMENTATION 3.3.1.1 Reactor Protection System (RPS) Instrumentation LCO 3.3.1.1 The RPS instrumentation for each Function in Table 3.3.1.1-1 shall be OPERABLE. APPLICABILITY: According to Table 3.3.1.1-1.

ACTIONS -----------------------------------------------------------NOTE-----------------------------------------------------------

Separate Condition entry is allowed for each channel.


CONDITION REQUIRED ACTION COMPLETION TIMEA. One or more required channels inoperable. A.1 Place channel in trip.

OR A.2 ---------------NOTE-------------

Not applicable for Functions 2.a, 2.b, 2.c, 2.d, or 2.f.


Place associated trip system in trip.

12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> 12 hours (continued)

RPS Instrumentation 3.3.1.1 Brunswick Unit 1 3.3-2 Amendment No. 222 ACTIONS (continued) CONDITION REQUIRED ACTION COMPLETION TIME B. ------------NOTE----------------

Not applicable for Functions 2.a, 2.b, 2.c, 2.d, or 2.f.


One or more Functions with one or more required

channels inoperable in both trip systems. B.1 Place channel in one trip system in trip.

OR B.2 Place one trip system in trip. 6 hours6.944444e-5 days <br />0.00167 hours <br />9.920635e-6 weeks <br />2.283e-6 months <br />

6 hours6.944444e-5 days <br />0.00167 hours <br />9.920635e-6 weeks <br />2.283e-6 months <br /> C. One or more Functions with RPS trip capability not maintained. C.1 Restore RPS trip capability. 1 hour1.157407e-5 days <br />2.777778e-4 hours <br />1.653439e-6 weeks <br />3.805e-7 months <br /> D. Required Action and associated Completion Time

of Condition A, B, or C not

met. D.1 Enter the Condition referenced in

Table 3.3.1.1-1 for the

channel. Immediately E. As required by Required Action D.1 and referenced in

Table 3.3.1.1-1. E.1 Reduce THERMAL POWER to < 26% RTP.

4 hours4.62963e-5 days <br />0.00111 hours <br />6.613757e-6 weeks <br />1.522e-6 months <br /> (continued)

Suppression Pool Average Temperature 3.6.2.1 Brunswick Unit 1 3.6-20 Amendment No. 203 3.6 CONTAINMENT SYSTEMS 3.6.2.1 Suppression Pool Average Temperature LCO 3.6.2.1 APPLICABILITY

ACTIONS CONDITION REQUIRED ACTION COMPLETION TIMEA. Suppression pool average temperature > 95 F but 110 F. AND THERMAL POWER

> 1% RTP.

AND Not performing testing that adds heat to the

suppression pool. A.1 Verify suppression pool average temperature 110 F. AND A.2 Restore suppression pool average temperature to 95 F. Once per hour

24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br /> B. Required Action and associated Completion Time of Condition A not met. B.1 Reduce THERMAL POWER to 1% RTP. 12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br /> (continued)

Suppression Pool Average Temperature 3.6.2.1 Brunswick Unit 1 3.6-21 Amendment No. 203 ACTIONS (continued)

CONDITION REQUIRED ACTION COMPLETION TIMEC. Suppression pool average temperature > 105 F. AND THERMAL POWER

> 1% RTP.

AND Performing testing that adds heat to the suppression pool. C.1 Suspend all testing that adds heat to the

suppression pool.

Immediately D. Suppression pool average temperature > 110 F but 120 F. D.1 Manually scram the reactor.

AND D.2 Verify suppression pool average temperature 120 F. AND D.3 Be in MODE 4.

Immediately

Once per 30 minutes

36 hours4.166667e-4 days <br />0.01 hours <br />5.952381e-5 weeks <br />1.3698e-5 months <br /> E. Suppression pool average temperature > 120 F. E.1 Depressurize the reactor vessel to < 200 psig.

AND E.2 Be in MODE 4.

12 hours1.388889e-4 days <br />0.00333 hours <br />1.984127e-5 weeks <br />4.566e-6 months <br />

36 hours4.166667e-4 days <br />0.01 hours <br />5.952381e-5 weeks <br />1.3698e-5 months <br /> Suppression Pool Average Temperature 3.6.2.1 Brunswick Unit 1 3.6-22 Amendment No. 203 SURVEILLANCE REQUIREMENTS SURVEILLANCE FREQUENCY SR 3.6.2.1.1 Verify suppression pool average temperature is within the applicable limits.

24 hours2.777778e-4 days <br />0.00667 hours <br />3.968254e-5 weeks <br />9.132e-6 months <br /> AND 5 minutes when performing testing

that adds heat to

the suppression

pool Figure 2 Stability Option III Power/Flow MapOPRM Inoperable, Two Loop Operation, 2923 MWt 70.0 80.0 90.0 100.0 110.0 120.0 rAPRM STP ScramAPRMSTP Rod Block10076.1980.479975.0480.479873.8980.47 9772.7580.47 9671.6180.47 9570.4980.47 9469.3680.479368.2580.479267.1380.47 9166.0380.47 9064.9380.47 8963.8380.47 8862.7480.47 8761.6680.51 8660.5880.60 8559.5080.69 8458438079This Figure supports Improved Technical Specification 3.3.1.1 and the Technical Requirements Manual Specification 3.3

Reference:

0B21-1015, Revision 7 0.0 10.0 20.0 30.0 40.0 50.0 60.00.07.715.423.130.838.546.253.961.669.377.084.792.4% PoweMlbs/hr Core Flow35% Minimum Pump SpeedMinimum Power LineRegion A -Manual SCRAM Region B -Immediate Exit5% Buffer RegionSLO Entry Rod Line0 10 20 30 40 50 60 70 80 90 100 110 120  % Core Flow8458.4380.798357.3780.908256.3181.058155.2581.21 8054.2081.36 7953.1681.51 7852.1281.67 7751.0881.82 7650.0581.98 7549.0282.13 7448.0082.29 7346.9882.44 7245.9682.60 7144.9582.75 7043.9482.91 6942.9483.06 6841.9483.22 6740.9583.37 6639.9683.52 6538.9783.68 6437.9983.83 6337.0183.99 6236.0484.146135.0684.306034.1084.45 5933.1384.61 5832.1784.70OPRM Enabled Region I C F R e g i o n NaturalCirculation LineMELLL Line APRM S TP Scra m APRM STP Rod Bloc k 3 5% Minimum Pump S peed M inim u m P o w e r Lin e Re gion A -Manual SCRAM Re gion B -Immediate Exit 5% Bu ff er Re gion OPRM Enabled Re g io n Natu r al Circulatio n L i n e M ELLL Lin e Figure 4 Stability Option III Power/Flow MapOPRM Inoperable, Single Loop Operation, 2923 MWt 70.0 80.0 90.0 100.0 110.0 120.0 rAPRM STP ScramAPRM STP Rod Block10076.1980.479975.0480.479873.8980.47 9772.7580.47 9671.6180.47 9570.4980.47 9469.3680.479368.2580.479267.1380.47 9166.0380.47 9064.9380.47 8963.8380.47 8862.7480.47 8761.6680.51 8660.5880.60 8559.5080.69 8458438079This Figure supports Improved Technical Specification 3.3.1.1 and the Technical Requirements Manual Specification 3.3

Reference:

0B21-1015, Revision 7 0.0 10.0 20.0 30.0 40.0 50.0 60.00.07.715.423.130.838.546.253.961.669.377.084.792.4% PoweMlbs/hr Core Flow35% Minimum Pump Speed0 10 20 30 40 50 60 70 80 90 100 110 120  % Core Flow 84 58.43 80.798357.3780.908256.3181.05 8155.2581.21 8054.2081.36 7953.1681.51 7852.1281.67 7751.0881.82 7650.0581.98 7549.0282.13 7448.0082.29 7346.9882.44 7245.9682.60 7144.9582.75 7043.9482.91 6942.9483.06 6841.9483.22 6740.9583.37 6639.9683.52 6538.9783.68 6437.9983.83 6337.0183.99 6236.0484.146135.0684.306034.1084.45 5933.1384.61 5832.1784.70 NaturalCirculation LineMELLL LineMinimum Power LineOPRM Enabled Region I C F R e g i o n45 Mlb/hr Max Core FlowRegion A -Manual SCRAM Region B -Immediate Exit5% Buffer Region APRM S TP Scra mAPRM STP Rod Bl oc k 3 5% Minimum Pump S peed Natu r al Circulatio n Li n e M ELLL Lin e M inim u m P o w e r Lin e OPRM Enabled Re g io n Re gion A -Manual SCRAM Re gion B -Immediate Exit 5% Bu ff er Re g io n BRUNSWICK 2014

-301ANSWER KEY

1. D 26. B 51. B 76. D 2. D 27. B 52. B 77. B 3. B 28. A 53. B 78. D 4. A 29. D 54. A 79. A 5. C 30. A 55. C 80. D 6. B 31. D 56. A 81. B 7. D 32. D 57. B 82. C 8. C 33. C 58. D 83. B 9. A 34. D 59. A 84. C 10. C 35. C 60. D 85. B 11. C 36. D 61. A 86. C 12. C 37. D 62. A 87. D 13. B 38. B 63. D 88. B 14. D 39. A 64. B 89. C 15. A 40. D 65. C 90. B 16. C 41. B 66. A 91. B 17. B 42. D 67. B 92. B 18. A 43. C 68. D 93. A 19. A 44. A 69. D 94. A 20. D 45. B 70. A 95. D 21. B 46. C 71. A 96. D 22. C 47. B 72. B 97. A 23. B 48. C 73. B 98. A 24. C 49. B 74. B 99. C 25. C 50. B 75. A 100. B