ML16340A098

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7 to Updated Final Safety Analysis Report, Chapter 4, Pressurizer and Pressurizer Relief Tank Design Data, Table 4.1-4
ML16340A098
Person / Time
Site: Cook  American Electric Power icon.png
Issue date: 10/24/2016
From:
Indiana Michigan Power Co
To:
Office of Nuclear Reactor Regulation
Shared Package
ML16336A263 List: ... further results
References
AEP-NRC-2016-42
Download: ML16340A098 (1)


Text

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20 Table:

4.1-4 Page:

1 of 1 PRESSURIZER AND PRESSURIZER RELIEF TANK DESIGN DATA Pressurizer Design Pressure, psig 2485 Operating Pressure, psig 2085 (Unit 1)/2235 (Unit 2)

Hydrostatic Test Pressure (cold), psig 3106 Unit 1, 31071 Unit 2 Design/Operating Temperature, °F 680/653 Pressurizer Water Level, Full Power2 46.6% (Unit 1) -55% (Unit 2)

Total Internal Volume3, ft3 1800 Surge Line Nozzle Diameter, in.

14 Shell ID, in.

84 Electric Heater Capacity, kW 4 1800 kW Heatup rate of Pressurizer, °F/hr 55 (approx.)

Start-up Water Solid, °F/hr 40 Hot Standby Condition, °F/hr 70 Design Spray Rate for Valves Full Open, gpm 800 Continuous Spray Rate, gpm 1

Pressurizer Relief Tank Design Pressure, psig 100 Rupture Disc Release Pressure, psig 100 Design Temperature, °F 340 Normal Water Temperature, °F Containment Ambient (120°F Max.)

Normal Operating Pressure, psig 3

Normal Water Volume, ft3 1430 Normal Gas Volume, ft3 370 Cooling time required following design maximum discharge, hr.

Approx. 1 Number of spray nozzles 5

Total Spray Flow, gpm 150 Total Volume, ft3 1800 Total Rupture Disc Relief Capacity, saturated steam, lb/hr 1.6 x 106 1 Original design.

2 Estimated values from operating data, actual values determined by Tave full-load.

3 This volume is a general number that approximates either Unit's Pressurizer. The actual volume of either pressurizer can be obtained from the current Westinghouse IMP database for the Unit.

4 Some heaters may be removed from service to a practical limit, greater than the TS minimum capacity, which supports plant evolutions.