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INTEGRAL TEST AND ENGINEERING ANALYSIS OF COOLANT DEPLETION DURING A LARGE-BREAK LOSS-OF-COOLANT ACCIDENT

机译:大型破损事故中冷却剂耗竭的整体试验与工程分析

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This study concerns the development of an integrated calculation methodology with which to continually and consistently analyze the progression of an accident from the design-basis accident phase via core uncovery to the severe accident phase. The depletion rate of reactor coolant inventory was experimentally investigated after the safety injection failure during a large-break loss-of-coolant accident utilizing the Seoul National University Integral Test Facility (SNUF), which is scaled down to 1/6.4 in length and 1/178 in area from the APR1400 [Advanced Power Reactor 1400 MW(elec-tric)]. The experimental results showed that the core coolant inventory decreased five times faster before than after the extinction of sweepout in the reactor downcomer, which is induced by the incoming steam from the intact cold legs. The sweepout occurred on top of the spillover from the downcomer region and expedited depletion of the core coolant inventory. The test result was simulated with the MAAP4 severe accident analysis code. The calculation results of the original MAAP4 deviated from the test data in terms of coolant inventory distribution in the test vessel. After the calculation algorithm of coolant level distribution was improved by including the subroutine of pseudo pressure buildup, which accounts for the differential pressure between the core and downcomer in MAAP4, the core melt progression was delayed by hundreds of seconds, and the code prediction was in reasonable agreement with the overall behavior of the SNUF experiment.
机译:这项研究涉及一种综合计算方法的开发,通过该方法可以连续,一致地分析事故从设计基础事故阶段到岩心发现到严重事故阶段的过程。在首尔国立大学综合测试设施(SNUF)中,在大断裂冷却剂损失事故期间安全注入失败后,通过实验研究了反应堆冷却剂库存的枯竭率,该规模缩减为长度的1 / 6.4和1 / APR1400 [先进功率反应堆1400 MW(电)]的面积为/ 178。实验结果表明,堆芯冷却剂存量的减少比反应堆降液管熄灭之前的减少快了五倍,这是由完好的冷段引入的蒸汽引起的。清除工作发生在从降液管区域溢出的顶部,并加快了核心冷却液存量的消耗。测试结果使用MAAP4严重事故分析代码进行了仿真。原始MAAP4的计算结果在测试容器中的冷却液存量分配方面与测试数据有所不同。在通过包含伪压力累积子程序改进了冷却液液位分布的计算算法后,该子程序考虑了MAAP4中岩心与降液管之间的压差,岩心融化过程被延迟了数百秒,并且代码预测为与SNUF实验的总体行为合理吻合。

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