(Print) Use this randomly generated list as your call list when playing the game. There is no need to say the BINGO column name. Place some kind of mark (like an X, a checkmark, a dot, tally mark, etc) on each cell as you announce it, to keep track. You can also cut out each item, place them in a bag and pull words from the bag.
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Trip of both MFPs
HDP Trip >800 MW
CCW pump trip and SSW in unaffected train will not start.
RCP trip
TPCW Head Tank Level Lo/decreasing and power greater than 50% ( P9), then trip reactor. Less than P9 trip turbine
Turbine bearing metal temp outside parameters and greater than 15% RTP, then trip reactor. Less than 15% RTP trip turbine
Manually trip RX prior to manual trip of RCP due to operating outside RCP parameters
Manually trip RX prior to manual trip of RCP due to seal water bearing temp high
Seal oil flow/temp trouble and greater than 15% RTP, then trip reactor. Less than 15% RTP trip turbine
No SSW Pumps running, prior to tripping RCPs
Turbine / Generator high vibration and greater than 15% RTP, then trip reactor. Less than 15% RTP, trip turbine
Alarms on Both Generator Core Monitors (GCMs) AND Gen Stat mon Temp Fault LIT, and power less than 900MW
RCS Tech Spec leakage exceeded
STEAM GENERATOR TUBE LEAKAGE GREATER THAN OR EQUAL TO 75 GPD - Reduce power to < 50% in 1 hour AND Be in MODE 3 in the next 2 hours.
LP FW HTR Byp Vlv open >900 MW
Multiple HTR MALF/Loss EXT STM >900 MW
-Rods stationary with rod insertion required
FWP Trip >700 MW
Loss of feed and S/G level decreasing uncontrolled manner.
Flooding condenser pit greater than 759'
Grid frequency greater than 61.8 Hz
HP TURBINE CASING Delta T HIGH
-Rod motion with NO demand
Loss of C3 >800 MW
Loss of C2 >800 MW
INADVERTENT CLOSURE OF AN HP OR LP STOP OR CONTROL VALVE - Reduce turbine load per IPO-003A/B until ALL operable HP control valve positions indicate less than 100% open
Manually trip RX prior to manual trip of RCP due to high vibration
Manually trip RX prior to manual trip of RCP due to motor bearing temp high
Loss main condenser vacuum and power greater than 10%. Less than 10% trip turbine.
SCR less than 765', prior to stopping CWPs
RCP HIGH OR LOW LUBE OIL LEVEL - if oil level low out of sight - INITIATE a shutdown per IPO-003A/B (ramp to 20% and trip).
PRZR Safety Valves OPEN - Pressurizer Pressure decreases in uncontrolled manner
-Rods moving in different direction simultaneously AND rod motion required
Unable to restore CCW non-SFGD loop
More than one dropped rod
Generator H2 pressure less than 45 psi and greater than 15% RTP, then trip reactor. Less than 15% RTP trip turbine
Condenser tube leak with high SGBD sodium
PW water temp greater than 140EF and greater than 15% RTP, then trip reactor. Less than 15% RTP trip turbine
Less than TWO circulating water pumps operating
LOSS OF ALL SAFETY CHILLED WATER COOLING - restoration of a Safety Chilled Water train expected in greater than 1 hour
Manually trip RX prior to manual trip of RCP due to seal failure
Condensate Pump Trip >700 MW
IF in MODE 1, 2, 3, OR 4 AND Instrument Air Header pressure decreases to 35 psig OR control of system(s) is lost
Outside generator capability curve and greater than 15% RTP, then trip reactor. Less than 15% RTP trip turbine
EHC malfunction with power fluctuations and greater than 15% RTP, then trip reactor. Less than 15% RTP trip turbine
Negative Sequence Current greater than 12% and greater than 15% RTP, then trip reactor. Less than 15% RTP trip turbine
Loss TPCW and turbine not tripped
Manually trip RX prior to manual trip of RCP due to seal inlet temp high
Shutdown affected Unit within 8 hrs of exceeding 6.0 gpm RCP seal leakoff flow
Grid frequency less than 57.2 Hz
Manually trip RX prior to manual trip of RCP due to loss of seal injection and thermal barrier cooling
Liquid level in-leakage faster than can be drained and greater than 15% RTP, then trip reactor. Less than 15% RTP trip turbine
Earthquake - ground acceleration exceeded OBE, Shutdown both units to COLD SHUTDOWN.
Pressurizer Level decreases in uncontrolled manner
-Rod withdrawal with rod insertion demand AND rod motion required