ML16257A127: Difference between revisions

From kanterella
Jump to navigation Jump to search
(Created page by program invented by StriderTol)
(Created page by program invented by StriderTol)
Line 19: Line 19:
{{#Wiki_filter:Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Core Power vs. Time Figure15.1-1 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Core Average Heat Flux vs. Time Figure15.1-2 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Reactor Coolant System Pressure vs. Time Figure15.1-3 Revision 304 (06/10)Waterford Steam Electric Station #3 Increased Main Steam Flow Minimum DNBR vs. Time Figure 15.1-4 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Reactor Coolant System Temperatures vs. Time Figure15.1-5 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Pressurizer Level vs. Time Figure15.1-6 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Steam Generator Pressure vs. Time Figure15.1-7 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Total Steam Flow vs. Time Figure15.1-8 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Feedwater Flow vs. Time Figure15.1-9 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Feedwater Enthalpy vs. Time Figure15.1-10 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Steam Generator Liquid Mass vs. Time Figure15.1-11 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Core Power vs. Time Figure15.1-12 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Core Heat Flux vs. Time Figure15.1-13 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve RCS Pressure vs. Time Figure15.1-14 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Reactor Coolant Temperature vs. Time Figure15.1-15 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Pressurizer Water Volume vs. Time Figure15.1-16 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Steam Generator Pressure vs. Time Figure15.1-17 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Total Main Steam Flow vs. Time Figure15.1-18 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Steam Generator Fluid Mass vs. Time Figure15.1-19   
{{#Wiki_filter:Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Core Power vs. Time Figure15.1-1 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Core Average Heat Flux vs. Time Figure15.1-2 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Reactor Coolant System Pressure vs. Time Figure15.1-3 Revision 304 (06/10)Waterford Steam Electric Station #3 Increased Main Steam Flow Minimum DNBR vs. Time Figure 15.1-4 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Reactor Coolant System Temperatures vs. Time Figure15.1-5 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Pressurizer Level vs. Time Figure15.1-6 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Steam Generator Pressure vs. Time Figure15.1-7 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Total Steam Flow vs. Time Figure15.1-8 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Feedwater Flow vs. Time Figure15.1-9 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Feedwater Enthalpy vs. Time Figure15.1-10 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Steam Generator Liquid Mass vs. Time Figure15.1-11 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Core Power vs. Time Figure15.1-12 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Core Heat Flux vs. Time Figure15.1-13 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve RCS Pressure vs. Time Figure15.1-14 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Reactor Coolant Temperature vs. Time Figure15.1-15 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Pressurizer Water Volume vs. Time Figure15.1-16 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Steam Generator Pressure vs. Time Figure15.1-17 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Total Main Steam Flow vs. Time Figure15.1-18 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Steam Generator Fluid Mass vs. Time Figure15.1-19   


Revision 304 (06/10)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve DNBR vs. Time Figure 15.1-19a Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure  Core Power vs. Time (Typical NSSS Response) Figure15.1-20 Revision 14 (12/05)Waterford Steam Electric Station #3 Increase Steam Flow with Concurrent Single Failure  Core Heat Flux vs. Time (Typical NSSS Response) Figure15.1-21 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure RCS Pressure vs. Time (Typical NSSS Response) Figure15.1-22 Revision 309 (06/16)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Minimum Hot Channel DNBR vs. Time Figure 15.1-23 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure  Reactor Coolant Temperature vs. Time (Typical NSSS Response) Figure15.1-24 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Pressurizer Liquid Volume vs. Time (Typical NSSS Response) Figure15.1-25 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Steam Generator Pressure vs. Time (Typical NSSS Response) Figure15.1-26 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Main Steam Flow vs. Time (Typical NSSS Response) Figure15.1-27 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Feedwater Flow vs. Time (Typical NSSS Response) Figure15.1-28 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Feedwater Enthalpy vs. Time (Typical NSSS Response) Figure15.1-29 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Steam Generator Liquid Mass vs. Time (Typical NSSS Response) Figure15.1-30 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-31 has been intentionally deleted. (DRN 05-543, R14)
Revision 304 (06/10)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve DNBR vs. Time Figure 15.1-19a Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure  Core Power vs. Time (Typical NSSS Response)
Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Total Integrated Safety Valve Flow vs. Time (Typical NSSS Response) Figure15.1-31a Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Core Flow vs. Time (Typical NSSS Response) Figure15.1-32 Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Core Power vs. Time Figure15.1-32a Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Core Heat Flux vs. Time Figure15.1-32b Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power RCS Pressure vs. Time Figure15.1-32c   
Figure15.1-20 Revision 14 (12/05)Waterford Steam Electric Station #3 Increase Steam Flow with Concurrent Single Failure  Core Heat Flux vs. Time (Typical NSSS Response)
Figure15.1-21 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure RCS Pressure vs. Time (Typical NSSS Response)
Figure15.1-22 Revision 309 (06/16)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Minimum Hot Channel DNBR vs. Time Figure 15.1-23 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure  Reactor Coolant Temperature vs. Time (Typical NSSS Response)
Figure15.1-24 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Pressurizer Liquid Volume vs. Time (Typical NSSS Response)
Figure15.1-25 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Steam Generator Pressure vs. Time (Typical NSSS Response)
Figure15.1-26 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Main Steam Flow vs. Time (Typical NSSS Response)
Figure15.1-27 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Feedwater Flow vs. Time (Typical NSSS Response)
Figure15.1-28 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Feedwater Enthalpy vs. Time (Typical NSSS Response)
Figure15.1-29 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Steam Generator Liquid Mass vs. Time (Typical NSSS Response)
Figure15.1-30 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)
Figure 15.1-31 has been intentionally deleted. (DRN 05-543, R14)
Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Total Integrated Safety Valve Flow vs. Time (Typical NSSS Response)
Figure15.1-31a Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Core Flow vs. Time (Typical NSSS Response)
Figure15.1-32 Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Core Power vs. Time Figure15.1-32a Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Core Heat Flux vs. Time Figure15.1-32b Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power RCS Pressure vs. Time Figure15.1-32c   


Revision 304 (06/10)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Minimum Hot Channel DNBR vs. Time Figure 15.1-32d Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Reactor Coolant Temperature vs. Time Figure15.1-32e Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Pressurizer Liquid Volume vs. Time Figure15.1-32f Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Steam Generator Pressure vs. Time Figure15.1-32g Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Main Steam Flow vs. Time Figure15.1-32h Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Feedwater Flow vs. Time Figure15.1-32i Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Feedwater Enthalpy vs. Time Figure15.1-32j Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Steam Generator Liquid Mass vs. Time Figure15.1-32k Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Total Integrated Safety Valve Flow vs. Time Figure15.1-32l Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening in an Atmospheric Dump Valve With a Concurrent Loss of AC Power Core Flow vs. Time Figure15.1-32m   
Revision 304 (06/10)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Minimum Hot Channel DNBR vs. Time Figure 15.1-32d  
 
Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Reactor Coolant Temperature vs. Time Figure15.1-32e Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Pressurizer Liquid Volume vs. Time Figure15.1-32f Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Steam Generator Pressure vs. Time Figure15.1-32g Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Main Steam Flow vs. Time Figure15.1-32h Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Feedwater Flow vs. Time Figure15.1-32i Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Feedwater Enthalpy vs. Time Figure15.1-32j Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Steam Generator Liquid Mass vs. Time Figure15.1-32k Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Total Integrated Safety Valve Flow vs. Time Figure15.1-32l Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening in an Atmospheric Dump Valve With a Concurrent Loss of AC Power Core Flow vs. Time Figure15.1-32m   


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Core Power vs. Time Figure 15.1-33   
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Core Power vs. Time Figure 15.1-33   
Line 36: Line 51:
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Reactivity vs. Time Figure 15.1-38   
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Reactivity vs. Time Figure 15.1-38   


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Pressurizer Level vs. Time Figure 15.1-38a  
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Pressurizer Level vs. Time Figure 15.1-38a  
 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Steam Flow vs. Time Figure 15.1-38b


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Steam Flow vs. Time Figure 15.1-38b 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-38c


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-38c 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-38d


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-38d 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-38e


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-38e 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Reactor Vessel Level vs. Time Figure 15.1-38f


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Reactor Vessel Level vs. Time Figure 15.1-38f 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power DNBR vs. Time Figure 15.1-38g


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power DNBR vs. Time Figure 15.1-38g THROUGH HAVE BEEN INTENTIONALLYDELETED
THROUGH HAVE BEEN INTENTIONALLY DELETED


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Core Power vs. Time Figure 15.1-47   
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Core Power vs. Time Figure 15.1-47   
Line 54: Line 71:
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Core Heat Flux vs. Time Figure 15.1-48   
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Core Heat Flux vs. Time Figure 15.1-48   


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Pressurizer Pressure vs. Time Figure 15.1-49 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-50 has been intentionally deleted. (DRN 05-543, R14)  
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Pressurizer Pressure vs. Time Figure 15.1-49 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)
Figure 15.1-50 has been intentionally deleted. (DRN 05-543, R14)  


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Reactor Coolant System Temperatures vs. Time Figure 15.1-51 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-52 has been intentionally deleted. (DRN 05-543, R14)  
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Reactor Coolant System Temperatures vs. Time Figure 15.1-51 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)
Figure 15.1-52 has been intentionally deleted. (DRN 05-543, R14)  


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Steam Generator Pressure vs. Time Figure 15.1-53   
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Steam Generator Pressure vs. Time Figure 15.1-53   
Line 62: Line 81:
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Steam Flow vs. Time Figure 15.1-54   
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Steam Flow vs. Time Figure 15.1-54   


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-55 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-56 has been intentionally deleted. (DRN 05-543, R14)  
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-55 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)
Figure 15.1-56 has been intentionally deleted. (DRN 05-543, R14)  


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-57   
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-57   
Line 68: Line 88:
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Reactivity vs. Time Figure 15.1-58   
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Reactivity vs. Time Figure 15.1-58   


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Pressurizer Level vs. Time Figure 15.1-58a  
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Pressurizer Level vs. Time Figure 15.1-58a  
 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-58b


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-58b 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Reactor Vessel Upper Head Level vs. Time Figure 15.1-58c


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Reactor Vessel Upper Head Level vs. Time Figure 15.1-58c WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-59 has been intentionally deleted. (DRN 05-543, R14)
WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)
WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-60 has been intentionally deleted. (DRN 05-543, R14)  
Figure 15.1-59 has been intentionally deleted. (DRN 05-543, R14)
WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)
Figure 15.1-60 has been intentionally deleted. (DRN 05-543, R14)  


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Core Power vs. Time Figure 15.1-61   
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Core Power vs. Time Figure 15.1-61   
Line 87: Line 111:
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Steam Flow vs. Time Figure 15.1-67   
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Steam Flow vs. Time Figure 15.1-67   


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-68 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-69 has been intentionally deleted. (DRN 05-543, R14)  
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-68 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)
Figure 15.1-69 has been intentionally deleted. (DRN 05-543, R14)  


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-70   
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-70   


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Reactivity vs. Time Figure 15.1-71 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-72 has been intentionally deleted. (DRN 05-543, R14)  
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Reactivity vs. Time Figure 15.1-71 WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)
Figure 15.1-72 has been intentionally deleted. (DRN 05-543, R14)  
 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-72a
 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Reactor Vessel Level vs. Time Figure 15.1-72b
 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power DNBR vs. Time Figure 15.1-72c
 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Core Power vs. Time Figure 15.1-72d


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-72a 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Core Heat Flux vs. Time Figure 15.1-72e


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Reactor Vessel Level vs. Time Figure 15.1-72b 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Pressurizer Pressure vs. Time Figure 15.1-72f


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power DNBR vs. Time Figure 15.1-72c Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Core Power vs. Time Figure 15.1-72d 
Revision 307 (07/13) Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Reactor Coolant System Temperatures vs. Time Figure 15.1-72g


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Core Heat Flux vs. Time Figure 15.1-72e 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Steam Generator Pressure vs. Time Figure 15.1-72h


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Pressurizer Pressure vs. Time Figure 15.1-72f 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Reactivity vs. Time Figure 15.1-72i


Revision 307 (07/13) Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Reactor Coolant System Temperatures vs. Time Figure 15.1-72g 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Pressurizer Level vs. Time Figure 15.1-72j


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Steam Generator Pressure vs. Time Figure 15.1-72h 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Steam Flow vs. Time Figure 15.1-72k


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Reactivity vs. Time Figure 15.1-72i 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-72l


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Pressurizer Level vs. Time Figure 15.1-72j 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-72m


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Steam Flow vs. Time Figure 15.1-72k 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-72n


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-72l Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-72m 
Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Reactor Vessel Upper Head Level vs. Time Figure 15.1-72o


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-72n 
WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)
Figure 15.1-73 has been intentionally deleted. (DRN 05-543, R14)
WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)
Figure 15.1-74 has been intentionally deleted. (DRN 05-543, R14)
WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)
Figure 15.1-75 has been intentionally deleted. (DRN 05-543, R14)
WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)
Figure 15.1-75a has been intentionally deleted. (DRN 05-543, R14)
.I loo-s8III32144216288360SECONDSREVISION 10 (10199)
LOUISIANA POWER  LIGHT CO.
MAIN STEAM LINE BREAK MODES 4 SteamFigureWITH LOSS OF ACPOWER Electrical Station 15.1-76CORE POWER VS. TIME 16001200800400tt1REVISION 10 (10199) 7214421628036GTIME, SECONDS POWER  LIGHT CO. SteamElectric StationREACTOR COOLANT SYSTEM PRESSURE VS. TIME 77MAIN STEAM LINE BREAK MODES 3 & 4 IWITH LOSS OF AC POWER 700600'200'CORE INLETCOOLANT TEMPERATURE I72144288360TIME,SECONDSREVISION 10 (10199)
LOUISIANA POWER LIGHT CO.
MAIN STEAM LINE BREAK MODES 3 4WITH LOSS OF AC POWERREACTOR COOLANT TEMPERATURE VS. TIME


Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Reactor Vessel Upper Head Level vs. Time Figure 15.1-72o WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-73 has been intentionally deleted. (DRN 05-543, R14)
1 800200ISOLATEDSTEAM GENERATOR STEAM GENERATOR WITH RUPTURED LINE 72144216288 360TIME,SECONDSREVISION 10 (10199)
WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-74 has been intentionally deleted. (DRN 05-543, R14)
LOUPOWER LIGHT CO.
WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-75 has been intentionally deleted. (DRN 05-543, R14)
ElectricMAIN STEAM LINE BREAK MODES 3 4IWITH LOSS OF AC POWER STEAM GENERATOR PRESSURE VS. TIME 10000 800C2000POWERMAIN STEAM LINE BREAK MODES 3 i-4 WITH LOSS OF AC POWER STEAM MASS RELEASE FROM BREAK VS. TIME IISTEAMGENERATORWITH RUPTUREDLINE ISOLATED STEAMGENERATOR III72216288TIME, SECONDS REVISION
WSES-FSAR-UNIT-3  Revision 14 (12/05)(DRN 05-543, R14)Figure 15.1-75a has been intentionally deleted. (DRN 05-543, R14)
.I loo-s8III32144216288360SECONDSREVISION 10 (10199)LOUISIANAPOWER  LIGHT CO.MAIN STEAM LINE BREAK MODES   4 SteamFigureWITH LOSS OF ACPOWERElectrical Station15.1-76CORE POWER VS. TIME 16001200800400tt1REVISION 10 (10199)7214421628036GTIME, SECONDSPOWER  LIGHT CO. SteamElectric StationREACTOR COOLANT SYSTEM PRESSURE VS. TIME 77MAIN STEAM LINE BREAK MODES 3 & 4IWITH LOSS OF AC POWER 700600'200'CORE INLETCOOLANTTEMPERATUREI72144288360TIME,SECONDSREVISION 10 (10199)LOUISIANAPOWER LIGHT CO.MAIN STEAM LINE BREAK MODES 3  4WITH LOSS OF AC POWERREACTOR COOLANT TEMPERATURE VS. TIME  


1 800200ISOLATEDSTEAM GENERATORSTEAM GENERATORWITH RUPTURED LINE72144216288 360TIME,SECONDSREVISION 10 (10199)LOUPOWER LIGHT CO.ElectricMAIN STEAM LINE BREAK MODES 3  4IWITH LOSS OF AC POWERSTEAM GENERATOR PRESSURE VS. TIME 10000 800C2000POWERMAIN STEAM LINE BREAK MODES 3 i-4WITH LOSS OF AC POWERSTEAM MASS RELEASE FROM BREAK VS. TIMEIISTEAMGENERATORWITH RUPTUREDLINEISOLATED STEAMGENERATORIII72216288TIME, SECONDSREVISION III72144216288360TIME,SECONDSREVISION 10 (10199) ANAMAIN STEAM LINE BREAK MODES 3 8 4 WITH LOSS OF AC POWERFEEDWATER FLOW VS. TIME .,
III72144216288360TIME,SECONDSREVISION 10 (10199)
72144 216TIME, SECONDSMAIN STEAM LINE BREAK MODES 3 & 4FigureWITH LOSS OF AC POWERFEEDWATER ENTHALPY VS. TIMEREVISION 10 (10199) 30000072. ANAMAIN STEAM LINE BREAK MODES 3 4WITH LOSS OF AC POWERSTEAM GENERATOR LIQUID INVENTORY VS. TIMEUricII144216TIME, SECONDS288360REVISION 10 3DOPPLERSAFETY INJECTIONTOTALS-39IIIIMODERATOR6-6CEA-9IIII72144216288TIME,SECONDSREVISION 10 (1 MAIN STEAM LINE BREAK MODES 3 4WITH LOSS OF AC POWERREACTIVITY VS. TIME, 35000030000015000010000050000TIME, SECONDSREVISION 10 (10199)MAIN STEAM LINE BREAK MODES 3 8 4WITH LOSS OF AC POWER  INTEGRATEDSTEAM MASS RELEASE FROM BREAK VS. TIME  
ANAMAIN STEAM LINE BREAK MODES 3 8 4 WITH LOSS OF AC POWER FEEDWATER FLOW VS. TIME
.,
72144 216TIME, SECONDSMAIN STEAM LINE BREAK MODES 3 & 4 FigureWITH LOSS OF AC POWER FEEDWATER ENTHALPY VS. TIME REVISION 10 (10199) 30000072. ANAMAIN STEAM LINE BREAK MODES 3 4WITH LOSS OF AC POWER STEAM GENERATOR LIQUID INVENTORY VS. TIME UricII144216TIME, SECONDS 288360REVISION 10 3DOPPLERSAFETY INJECTION TOTALS-39IIIIMODERATOR 6-6CEA-9IIII72144216288TIME,SECONDSREVISION 10 (1 MAIN STEAM LINE BREAK MODES 3 4WITH LOSS OF AC POWER REACTIVITY VS. TIME
,
35000030000015000010000050000TIME, SECONDS REVISION 10 (10199)
MAIN STEAM LINE BREAK MODES 3 8 4WITH LOSS OF AC POWER  INTEGRATED STEAM MASS RELEASE FROM BREAK VS. TIME  


Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Core Power vs. Time Figure 15.1-87   
Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Core Power vs. Time Figure 15.1-87   
Line 132: Line 181:
Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Reactor Coolant System Pressure vs. Time Figure 15.1-90 Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Reactivity vs. Time Figure 15.1-91 Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Steam Generator Pressure vs. Time Figure 15.1-92   
Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Reactor Coolant System Pressure vs. Time Figure 15.1-90 Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Reactivity vs. Time Figure 15.1-91 Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Steam Generator Pressure vs. Time Figure 15.1-92   


Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion DNBR vs. Time Figure 15.1-93 WSES-FSAR-UNIT-3   Revision 307 (07/13) (EC-8458, R307) Figure 15.1-94 has been Intentionally Deleted.  (EC-8458, R307)}}
Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion DNBR vs. Time Figure 15.1-93 WSES-FSAR-UNIT-3 Revision 307 (07/13)
(EC-8458, R307)
Figure 15.1-94 has been Intentionally Deleted.  
  (EC-8458, R307)}}

Revision as of 04:10, 30 June 2018

Waterford Steam Electric Station, Unit 3, Revision 309 to Final Safety Analysis Report, Chapter 15, Accident Analyses, Section 15.1, Figures 15.1-1 Through 15.1-94
ML16257A127
Person / Time
Site: Waterford Entergy icon.png
Issue date: 08/25/2016
From:
Entergy Operations
To:
Office of Nuclear Reactor Regulation
Shared Package
ML16256A115 List: ... further results
References
W3F1-2016-0053
Download: ML16257A127 (128)


Text

Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Core Power vs. Time Figure15.1-1 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Core Average Heat Flux vs. Time Figure15.1-2 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Reactor Coolant System Pressure vs. Time Figure15.1-3 Revision 304 (06/10)Waterford Steam Electric Station #3 Increased Main Steam Flow Minimum DNBR vs. Time Figure 15.1-4 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Reactor Coolant System Temperatures vs. Time Figure15.1-5 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Pressurizer Level vs. Time Figure15.1-6 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Steam Generator Pressure vs. Time Figure15.1-7 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Total Steam Flow vs. Time Figure15.1-8 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Feedwater Flow vs. Time Figure15.1-9 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Feedwater Enthalpy vs. Time Figure15.1-10 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow Steam Generator Liquid Mass vs. Time Figure15.1-11 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Core Power vs. Time Figure15.1-12 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Core Heat Flux vs. Time Figure15.1-13 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve RCS Pressure vs. Time Figure15.1-14 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Reactor Coolant Temperature vs. Time Figure15.1-15 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Pressurizer Water Volume vs. Time Figure15.1-16 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Steam Generator Pressure vs. Time Figure15.1-17 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Total Main Steam Flow vs. Time Figure15.1-18 Revision 14 (12/05)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve Steam Generator Fluid Mass vs. Time Figure15.1-19

Revision 304 (06/10)Waterford Steam Electric Station #3 Inadvertent Opening of a Steam Generator Atmospheric Dump Valve DNBR vs. Time Figure 15.1-19a Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Core Power vs. Time (Typical NSSS Response)

Figure15.1-20 Revision 14 (12/05)Waterford Steam Electric Station #3 Increase Steam Flow with Concurrent Single Failure Core Heat Flux vs. Time (Typical NSSS Response)

Figure15.1-21 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure RCS Pressure vs. Time (Typical NSSS Response)

Figure15.1-22 Revision 309 (06/16)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Minimum Hot Channel DNBR vs. Time Figure 15.1-23 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Reactor Coolant Temperature vs. Time (Typical NSSS Response)

Figure15.1-24 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Pressurizer Liquid Volume vs. Time (Typical NSSS Response)

Figure15.1-25 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Steam Generator Pressure vs. Time (Typical NSSS Response)

Figure15.1-26 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Main Steam Flow vs. Time (Typical NSSS Response)

Figure15.1-27 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Feedwater Flow vs. Time (Typical NSSS Response)

Figure15.1-28 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Feedwater Enthalpy vs. Time (Typical NSSS Response)

Figure15.1-29 Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Steam Generator Liquid Mass vs. Time (Typical NSSS Response)

Figure15.1-30 WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-31 has been intentionally deleted. (DRN 05-543, R14)

Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Total Integrated Safety Valve Flow vs. Time (Typical NSSS Response)

Figure15.1-31a Revision 14 (12/05)Waterford Steam Electric Station #3 Increased Main Steam Flow with Concurrent Single Failure Core Flow vs. Time (Typical NSSS Response)

Figure15.1-32 Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Core Power vs. Time Figure15.1-32a Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Core Heat Flux vs. Time Figure15.1-32b Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power RCS Pressure vs. Time Figure15.1-32c

Revision 304 (06/10)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Minimum Hot Channel DNBR vs. Time Figure 15.1-32d

Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Reactor Coolant Temperature vs. Time Figure15.1-32e Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Pressurizer Liquid Volume vs. Time Figure15.1-32f Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Steam Generator Pressure vs. Time Figure15.1-32g Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Main Steam Flow vs. Time Figure15.1-32h Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Feedwater Flow vs. Time Figure15.1-32i Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Feedwater Enthalpy vs. Time Figure15.1-32j Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Steam Generator Liquid Mass vs. Time Figure15.1-32k Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening of an Atmospheric Dump Valve With a Concurrent Loss of AC Power Total Integrated Safety Valve Flow vs. Time Figure15.1-32l Revision 14 (12/05)Waterford Steam Electric Station #3 HFP Inadvertent Opening in an Atmospheric Dump Valve With a Concurrent Loss of AC Power Core Flow vs. Time Figure15.1-32m

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Core Power vs. Time Figure 15.1-33

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Core Heat Flux vs. Time Figure 15.1-34

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Pressurizer Pressure vs. Time Figure 15.1-35

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Reactor Coolant System Temperature vs. Time Figure 15.1-36

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Steam Generator Pressure vs. Time Figure 15.1-37

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Reactivity vs. Time Figure 15.1-38

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Pressurizer Level vs. Time Figure 15.1-38a

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Steam Flow vs. Time Figure 15.1-38b

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-38c

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-38d

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-38e

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power Reactor Vessel Level vs. Time Figure 15.1-38f

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, Loss of Offsite Power DNBR vs. Time Figure 15.1-38g

THROUGH HAVE BEEN INTENTIONALLY DELETED

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Core Power vs. Time Figure 15.1-47

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Core Heat Flux vs. Time Figure 15.1-48

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Pressurizer Pressure vs. Time Figure 15.1-49 WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-50 has been intentionally deleted. (DRN 05-543, R14)

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Reactor Coolant System Temperatures vs. Time Figure 15.1-51 WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-52 has been intentionally deleted. (DRN 05-543, R14)

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Steam Generator Pressure vs. Time Figure 15.1-53

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Steam Flow vs. Time Figure 15.1-54

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-55 WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-56 has been intentionally deleted. (DRN 05-543, R14)

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-57

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Reactivity vs. Time Figure 15.1-58

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Pressurizer Level vs. Time Figure 15.1-58a

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-58b

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Full Power, No Loss of Offsite Power Reactor Vessel Upper Head Level vs. Time Figure 15.1-58c

WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-59 has been intentionally deleted. (DRN 05-543, R14)

WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-60 has been intentionally deleted. (DRN 05-543, R14)

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Core Power vs. Time Figure 15.1-61

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Core Heat Flux vs. Time Figure 15.1-62

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Pressurizer Pressure vs. Time Figure 15.1-63

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Reactor Coolant System Temperature vs. Time Figure 15.1-64

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Pressurizer Level vs. Time Figure 15.1-65 Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Steam Generator Pressure vs. Time Figure 15.1-66

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Steam Flow vs. Time Figure 15.1-67

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-68 WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-69 has been intentionally deleted. (DRN 05-543, R14)

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-70

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Reactivity vs. Time Figure 15.1-71 WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-72 has been intentionally deleted. (DRN 05-543, R14)

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-72a

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power Reactor Vessel Level vs. Time Figure 15.1-72b

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, Loss of Offsite Power DNBR vs. Time Figure 15.1-72c

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Core Power vs. Time Figure 15.1-72d

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Core Heat Flux vs. Time Figure 15.1-72e

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Pressurizer Pressure vs. Time Figure 15.1-72f

Revision 307 (07/13) Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Reactor Coolant System Temperatures vs. Time Figure 15.1-72g

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Steam Generator Pressure vs. Time Figure 15.1-72h

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Reactivity vs. Time Figure 15.1-72i

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Pressurizer Level vs. Time Figure 15.1-72j

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Steam Flow vs. Time Figure 15.1-72k

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Feedwater Flow vs. Time Figure 15.1-72l

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Steam Generator Mass vs. Time Figure 15.1-72m

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Integrated Safety Injection Flow vs. Time Figure 15.1-72n

Revision 307 (07/13)Waterford Steam Electric Station #3 Return to Power Steam Line Break Inside Containment, Hot Zero Power, No Loss of Offsite Power Reactor Vessel Upper Head Level vs. Time Figure 15.1-72o

WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-73 has been intentionally deleted. (DRN 05-543, R14)

WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-74 has been intentionally deleted. (DRN 05-543, R14)

WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-75 has been intentionally deleted. (DRN 05-543, R14)

WSES-FSAR-UNIT-3 Revision 14 (12/05)(DRN 05-543, R14)

Figure 15.1-75a has been intentionally deleted. (DRN 05-543, R14)

.I loo-s8III32144216288360SECONDSREVISION 10 (10199)

LOUISIANA POWER LIGHT CO.

MAIN STEAM LINE BREAK MODES 4 SteamFigureWITH LOSS OF ACPOWER Electrical Station 15.1-76CORE POWER VS. TIME 16001200800400tt1REVISION 10 (10199) 7214421628036GTIME, SECONDS POWER LIGHT CO. SteamElectric StationREACTOR COOLANT SYSTEM PRESSURE VS. TIME 77MAIN STEAM LINE BREAK MODES 3 & 4 IWITH LOSS OF AC POWER 700600'200'CORE INLETCOOLANT TEMPERATURE I72144288360TIME,SECONDSREVISION 10 (10199)

LOUISIANA POWER LIGHT CO.

MAIN STEAM LINE BREAK MODES 3 4WITH LOSS OF AC POWERREACTOR COOLANT TEMPERATURE VS. TIME

1 800200ISOLATEDSTEAM GENERATOR STEAM GENERATOR WITH RUPTURED LINE 72144216288 360TIME,SECONDSREVISION 10 (10199)

LOUPOWER LIGHT CO.

ElectricMAIN STEAM LINE BREAK MODES 3 4IWITH LOSS OF AC POWER STEAM GENERATOR PRESSURE VS. TIME 10000 800C2000POWERMAIN STEAM LINE BREAK MODES 3 i-4 WITH LOSS OF AC POWER STEAM MASS RELEASE FROM BREAK VS. TIME IISTEAMGENERATORWITH RUPTUREDLINE ISOLATED STEAMGENERATOR III72216288TIME, SECONDS REVISION

III72144216288360TIME,SECONDSREVISION 10 (10199)

ANAMAIN STEAM LINE BREAK MODES 3 8 4 WITH LOSS OF AC POWER FEEDWATER FLOW VS. TIME

.,

72144 216TIME, SECONDSMAIN STEAM LINE BREAK MODES 3 & 4 FigureWITH LOSS OF AC POWER FEEDWATER ENTHALPY VS. TIME REVISION 10 (10199) 30000072. ANAMAIN STEAM LINE BREAK MODES 3 4WITH LOSS OF AC POWER STEAM GENERATOR LIQUID INVENTORY VS. TIME UricII144216TIME, SECONDS 288360REVISION 10 3DOPPLERSAFETY INJECTION TOTALS-39IIIIMODERATOR 6-6CEA-9IIII72144216288TIME,SECONDSREVISION 10 (1 MAIN STEAM LINE BREAK MODES 3 4WITH LOSS OF AC POWER REACTIVITY VS. TIME

,

35000030000015000010000050000TIME, SECONDS REVISION 10 (10199)

MAIN STEAM LINE BREAK MODES 3 8 4WITH LOSS OF AC POWER INTEGRATED STEAM MASS RELEASE FROM BREAK VS. TIME

Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Core Power vs. Time Figure 15.1-87

Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Core Heat Flux vs. Time Figure 15.1-88 Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Reactor Coolant System Temperatures vs. Time Figure 15.1-89

Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Reactor Coolant System Pressure vs. Time Figure 15.1-90 Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Reactivity vs. Time Figure 15.1-91 Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion Steam Generator Pressure vs. Time Figure 15.1-92

Revision 307 (07/13)Waterford Steam Electric Station #3 Inside Containment Steam Line Break Pre-Trip Power Excursion DNBR vs. Time Figure 15.1-93 WSES-FSAR-UNIT-3 Revision 307 (07/13)

(EC-8458, R307)

Figure 15.1-94 has been Intentionally Deleted.

(EC-8458, R307)