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Modelling of a Nordic BWR containment and suppression pool behavior during a LOCA with GOTHIC 8.1

机译:使用GOTHIC 8.1在LOCA期间对北欧BWR遏制和抑制池行为进行建模

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Boiling water reactors use the Pressure Suppression Pool (PSP) to relieve the containment pressure in case of an accident. During the event of a Loss of Coolant Accident (LOCA), drywell air and steam are injected into the PSP through blowdown pipes. This may lead to thermal stratification, which is a relevant safety issue as it leads to higher water surface temperatures than in mixed conditions and thus, to higher containment pressures. The Effective Heat (EHS) and Momentum (EMS) Source models were previously introduced to predict the effect of small-scale direct contact condensation phenomena on the large-scale pool water circulation. In this paper, the EHS/EMS models are extended by adding the effect of non-condensable gases on the chugging regime. The EHS/EMS models are implemented in the GOTHIC code to model a full-scale Nordic BWR containment under different LOCA scenarios. The results show that thermal stratification can be developed in the PSP. (C) 2019 Elsevier Ltd. All rights reserved.
机译:沸水反应堆使用压力缓冲池(PSP)来减轻事故时的安全壳压力。在发生冷却液事故(LOCA)的事件期间,干井的空气和蒸汽通过排污管注入PSP。这可能会导致热分层,这是一个重要的安全问题,因为与混合条件相比,它会导致更高的水表面温度,从而导致更高的安全壳压力。先前引入了有效热(EHS)和动量(EMS)源模型来预测小规模直接接触冷凝现象对大型水池水循环的影响。在本文中,EHS / EMS模型通过增加不凝性气体对冷却方式的影响而得到扩展。 EHS / EMS模型以GOTHIC代码实现,以对不同LOCA场景下的完整北欧BWR密闭模型。结果表明,在PSP中可以形成热分层。 (C)2019 Elsevier Ltd.保留所有权利。

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