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Development of accumulator computational aid for determining RCS injection volume

机译:用于确定RCS注入量的蓄能器计算辅助工具的开发

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Reactor coolant system (RCS) injection using accumulator is an important strategy for both emergency operating procedure (EOP) and severe accident management guideline (SAMG) of pressurized water reactor (PWR) nuclear power plant. Once accumulator injection starts, the operator is requested to close the accumulator isolation valve to avoid nitrogen gas flow into RCS as the water level is low. Current accumulator water level indication system is not designed for this purpose. In emergency operating procedure, it relies on the steam generator pressure to close the accumulator isolation valve. The purpose of this paper is to develop a computational aid for estimating RCS injection volume of accumulator. First of all, simple accumulator model is verified using the plant data during a station blackout incident of Maanshan nuclear power plant. An isentropic expansion model is found better than adiabatic expansion model. Then, a computational aid is developed based on this model. Using this computational aid, the accumulator water level can be judged directly from the accumulator pressure. This computational aid can be applied for typical PWR nuclear power plants in both emergency operating procedure and severe accident management guideline.
机译:使用蓄能器注入反应堆冷却剂系统(RCS)是压水堆(PWR)核电站的紧急运行程序(EOP)和严重事故管理指南(SAMG)的重要策略。一旦开始注入蓄能器,就要求操作员关闭蓄能器隔离阀,以免由于水位低而使氮气流入RCS。蓄能器水位指示系统不是为此目的而设计的。在紧急操作过程中,它依靠蒸汽发生器的压力来关闭蓄能器隔离阀。本文的目的是开发一种计算辅助工具,用于估算蓄能器的RCS注入量。首先,在马鞍山核电站停电事故中,利用工厂数据验证了简单的蓄能器模型。发现等熵膨胀模型比绝热膨胀模型更好。然后,基于该模型开发了计算辅助工具。使用该计算工具,可直接从蓄能器压力判断蓄能器水位。这种计算辅助可以在紧急运行程序和严重事故管理指南中应用于典型的压水堆核电站。

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