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Thermal-hydraulic study of air-cooled passive decay heat removal system for APR+ under extended station blackout

机译:扩展电站停电下用于APR +的空冷被动衰减除热系统的热工水力研究

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The air-cooled passive decay heat removal system (APDHR) was proposed to provide the ultimate heat sink for non-LOCA accidents. The APDHR is a modified one of Passive Auxiliary Feed-water system (PAFS) installed in APR+. The PAFS has a heat exchanger in the Passive Condensate Cooling Tank (PCCT) and can remove decay heat for 8?h. After that, the heat transfer rate through the PAFS drastically decreases because the heat transfer condition changes from water to air. The APDHR with a vertical heat exchanger in PCCT will be able to remove the decay heat by air if it has sufficient natural convection in PCCT. We conducted the thermal-hydraulic simulation by the MARS code to investigate the behavior of the APR?+?selected as a reference plant for the simulation. The simulation contains two phases based on water depletion: the early phase and the late phase. In the early phase, the volume of water in PCCT was determined to avoid the water depletion in three days after shutdown. In the late phase, when the number of the HXs is greater than 4089 per PCCT, the MARS simulation confirmed the long-term cooling by air is possible under extended Station Blackout (SBO).
机译:提议使用空气冷却的被动衰减式除热系统(APDHR)为非LOCA事故提供最终的散热器。 APDHR是APR +中安装的被动式辅助给水系统(PAFS)的一种改进型。 PAFS在被动式冷凝水冷却箱(PCCT)中有一个热交换器,可以将衰减热量去除8?h。此后,由于传热条件从水变为空气,因此通过PAFS的传热速率急剧下降。如果在PCCT中具有垂直换热器的APDHR在PCCT中具有足够的自然对流,则它将能够通过空气除去衰减热量。我们用MARS代码进行了热工水力模拟,以研究被选作模拟参考设备的APRα+β的行为。模拟包含基于耗水的两个阶段:早期和晚期。在早期阶段,确定PCCT中的水量以避免停机后三天的水耗尽。在后期,当每台PCCT的HX数量大于4089时,MARS仿真证实,在延长的停电(SBO)下,可以长期进行空气冷却。

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