SFP Flashcards

1
Q

What are the SFP Pump trips?

A
  • Load Shed
  • Load Conservation
  • Overload/Overcurrent
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2
Q

If all SFP cooling was lost, how long would it take for the SFP to boil?

A
  • 5.8 hrs with one full core offload
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3
Q

What is the boron concentration suppose to be maintained at in the SFP?

A

≥ 2400 ppm*

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4
Q

What is the minimum water level allowed in the SFP?

A
  • 23’ above top of fuel (Basis: Iodine removal)
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5
Q

What are the power supplies for the SFP Pumps?

A
  • 11C 12-PP-31N

- 21C 12-PP-31S

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6
Q

How do we keep from inadvertently draining the SFP?

A
  • No gravity drains
  • No suctions located greater than 19.5” below normal water level
  • No inadvertent draining below 629’-4”
    (Tech Spec 4.3.2)
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7
Q

What does TS 3.7.14 A (Fuel Storage Pool Water Level) state?

A
  • If Fuel storage pool water level not within limit (>23’)
    IMMEDIATELY
  • Suspend fuel movement
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8
Q

What does TS 3.7.15 A (Fuel Storage Pool Boron Concentration) state?

A
  • IF Fuel storage pool boron not within limit (>2400 ppm)
    IMMEDIATELY
  • Suspend movement of fuel
    AND
  • Initiate action to restore compliance
    OR
  • Initiate action to perform fuel storage pool verification
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9
Q

What is a secondary function of the SFP system?

A
  • clarify and purify the water in the SFP, transfer canal, and purify the RWST
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10
Q

Where do SFP discharge lines terminate and what do they do to prevent siphoning?

A
  • The pump discharge lines terminate no lower than 6’ above the top of the fuel assemblies and have anti-siphon holes located about 4” below normal level.
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11
Q

What happens to SFP Cooling on a Phase ‘A’?

A
  • CCW to the SFP HX Isolates
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12
Q

If U1 is providing cooling to the SFP Hx and has an SI, what happens?

A
  • U2 will take cooling through the South Pump.
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13
Q

When does a RWPP trip?

A

Load Conservation (on bus 11D)

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14
Q

Core Alterations are in progress on Unit 2. RCS boron concentration has been verified to be 2360 ppm (two samples analyzed).
The crew is required to …

A
  • suspend core alterations and positive reactivity changes, and initiate boration.
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15
Q

Will x-ting between N SFP and S SFP cooling prevent boiling?

A
  • You can x-tie through purification piping but it does not prevent boiling, just will delay it
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16
Q

What are the important reactivity design features?

A
  • **Keff ≤ 0.95 even with unborated water. (0.98 foam)
  • ** 21” Center to center between fuel assemblies (new racks)
  • Nominal enrichment < 4.95% of U-235.
17
Q

How far does the suction for the SFP pumps terminate from the top of normal water level?

A
  • 19.5”
18
Q
What is the primary source of heat production in the SFP?
A. Fission Products
B. Fission Reactions
C. Fuel Cladding
D. Alteration Production
A
  • A. Fission Products
19
Q

What is the basis behind the reactivity design features of the SFP

A

One misplaced fuel assembly

20
Q

How far below the surface do the SFP skimmers go

A

6” below normal surface level

21
Q

One SFP cooling loop can maintain SFP temperature below what temperature

A

180 deg F

22
Q

What level must SFP level be maintained below

A

24’ 10” to prevent overflowing the wier gate

23
Q

What is the basis behind the level design features of the SFP

A

Iodine removal