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首页> 外文期刊>Journal of nuclear science and technology >Core Liquid Level Depression due to Manometric Effect during PWR Small Break LOCA Effect of Core Bypass
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Core Liquid Level Depression due to Manometric Effect during PWR Small Break LOCA Effect of Core Bypass

机译:压水堆小压力时的测压效应导致岩心液位降低岩心旁路的LOCA效应

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摘要

In the previous study, it is reported that the core collapsed liquid level was depressed nearly to the core bottom and the dryout of the core was observed in the early stage of the PWR cold leg small break loss-of-coolant accident (LOCA) experiment, The manometric effect due to the liquid seal formation in the loop seal and the difference of the liquid holdup between the steam generator (SG) upflow-side and downflow-side caused a depression of the core collapsed liquid level. The core liquid level was recovered just after the loop seal was cleared.The bypass between the core side and the downcomer side affects the core liquid depression. Four 5% cold leg break experiments with the different core bypass location, configuration and size were conducted to clarify the bypass effect. When the bypass was relatively small (less than 3% bypass of the initial core flow before the break), the timing of the loop seal clearing delayed with the bypass. When the bypass was relatively large (9, 2% of the core flow), the loop seal clearing took place after the break uncovery and the timing was significantly delayed, In general, the smaller minimum core collapsed liquid level was obtained at the earlier timing of loop seal clearing due to the smaller bypass.
机译:在以前的研究中,据报道,在压水堆冷腿小断裂冷却剂损失事故(LOCA)实验的早期,岩心坍塌的液面几乎被压低到岩心底部,并且观察到岩心干out。 ,由于在回路密封中形成液体密封而产生的压力效应以及蒸汽发生器(SG)上流侧和下流侧之间的液体滞留率差异导致了堆芯塌陷液面的降低。清除回路密封后立即恢复岩心液位,岩心侧和降液管侧之间的旁路会影响岩心液压。进行了四个具有不同堆芯旁路位置,配置和尺寸的5%冷腿折断实验,以阐明旁路效果。当旁通阀相对较小时(断裂前的初始堆芯流量的旁通阀小于3%),环路密封件清除的时间随旁通阀而延迟。当旁路相对较大时(占岩心流量的9%,为2%),在发现破裂后便进行了回路密封清除,并且时间明显延迟。通常,在较早的时间获得较小的最小岩心坍塌液位由于较小的旁通阀,所以无法清除回路密封。

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