首页> 外文会议>International conference on nuclear engineering >INTEGRAL EFFECT TEST FOR PERFORMANCE EVALUATION OF THE PAFS (PASSIVE AUXILIARY FEEDWATER SYSTEM) DURING A SBO (STATION BLACKOUT) TRANSIENT
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INTEGRAL EFFECT TEST FOR PERFORMANCE EVALUATION OF THE PAFS (PASSIVE AUXILIARY FEEDWATER SYSTEM) DURING A SBO (STATION BLACKOUT) TRANSIENT

机译:SBO(停电)瞬态期间PAFS(无源辅助给水系统)性能评估的整体效果测试

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Station blackout (SBO) accident is considered as one of the most significant design extension conditions (DECs), which has been extensively focused after the Fukushima Dai-chi accident. When the SBO accident occurs in the APR+ (Advance Power Reactor Plus), the PAFS (Passive Auxiliary Feedwater System), which is an advanced safety feature adopted in the APR+, should play a significant role to cool down the core decay heat without any operation of active safety systems. This study focuses on validation of the cooling and operational performance for the PAFS during the SBO transient with utilizing an integral effect test facility, ATLAS-PAFS. In order to simulate the SBO transient of the APR+ as realistically as possible, a pertinent scaling approach was taken into account. The initial steady-state conditions and the sequence of event in the SBO scenario for the APR+ were successfully simulated with the ATLAS-PAFS facility. In the transient simulation, major thermal-hydraulic parameters such as the system pressures, the collapsed water levels, the break flow rate, and the condensate flow rate at the return-water line were measured and investigated. Following the reactor trip at the initiation of the transient, the coolant inventory of the secondary system of the steam generator was reduced by the repeated opening and closing of the MSSV. When the collapsed water level reached 25% of wide range, the PAFS was actuated to cool down the primary system by the condensation heat transfer at the PCHX (Passive Condensation Heat Exchanger). The pressure and the temperature of the reactor coolant system continuously decreased during the heat removal by the PAFS operation. It points out that the PAFS can supply auxiliary feedwater to the steam generator and remove the core decay heat without any active system. From the present experimental result, it could be concluded that the APR+ has the capability of coping with the hypothetical SBO scenario with adopting the PAFS and proper set-points of its operation. This integral effect test data will be used to evaluate the prediction capability of existing safety analysis codes of the MARS, RELAP5 as well as the SPACE code and to identify any code deficiency for a SBO simulation with an operation of the PAFS.
机译:车站停电(SBO)事故被认为是最重要的设计扩展条件(DECs)之一,在福岛Dai-chi事故之后,这一问题已得到广泛关注。当APR +(Advance Power Reactor Plus)发生SBO事故时,作为APR +中采用的高级安全功能的PAFS(被动辅助给水系统)应在不进行任何操作的情况下冷却堆芯衰减热方面发挥重要作用。主动安全系统。这项研究的重点是利用积分效应测试设备ATLAS-PAFS验证SBO瞬态过程中PAFS的冷却和运行性能。为了尽可能真实地模拟APR +的SBO瞬态,考虑了相关的缩放方法。使用ATLAS-PAFS工具成功模拟了APR +的SBO情景中的初始稳态条件和事件顺序。在瞬态模拟中,测量并研究了主要的热工液压参数,例如系统压力,塌陷水位,破裂流量和回水管线上的冷凝水流量。在瞬变开始时反应堆跳闸之后,通过反复打开和关闭MSSV,减少了蒸汽发生器二次系统的冷却剂存量。当坍塌的水位达到大范围的25%时,通过PCHX(被动冷凝热交换器)上的冷凝传热来激活PAFS,以冷却一次系统。在通过PAFS运行除热期间,反应堆冷却剂系统的压力和温度不断降低。它指出,PAFS可以在不使用任何有源系统的情况下向蒸汽发生器提供辅助给水,并消除堆芯衰减热。从目前的实验结果可以得出结论,APR +能够通过采用PAFS及其操作的适当设定点来应对假设的SBO情景。该积分效果测试数据将用于评估MARS,RELAP5和SPACE代码的现有安全分析代码的预测能力,并通过PAFS的操作为SBO仿真识别任何代码缺陷。

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