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ANALYSIS OF ABWR CONTAINMENT PRESSURE-TEMPERATURE LOADS AND SUPPRESSION POOL HYDRODYNAMICS FOLLOWING LOSS OF COOLANT ACCIDENTS

机译:冷却液事故损失后ABWR储存压力 - 温度载荷和抑制池流体动力学分析

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This paper focuses on the assessment of Advanced Boiling Water Reactor (ABWR) containment pressure-temperature and suppression pool hydrodynamics under design-basis, loss-ofcoolant accident (LOCA) conditions. The paper presents a phenomena identification and ranking table (PIRT) applicable to the ABWR containment response behavior, modeling of pressure-temperature loads using the MELCOR computer code, and analysis of suppression pool hydrodynamics parameters based on a mechanistic one-dimensional hydrodynamics model. A MELCOR 1.8.6 model with detailed nodalization of the ABWR containment is used to perform the containment pressure-temperature calculations following a design basis accident. The best estimate and several sensitivity calculations are performed for the ABWR containment using the suppression pool swell model. The sensitivity calculations demonstrate the influence of key model parameters and assumptions on the suppression pool hydrodynamics response. The comparison of containment pressure-temperature and the suppression pool swell analyses results to those reported in the ABWR licensing calculations showed reasonable agreement.
机译:本文重点研究了在设计基础下进行了先进的沸水反应器(ABWR)遏制压力 - 温度和抑制池流体动力学的评估,失去冷却器事故(LOGA)条件。本文介绍了适用于ABWR遏制响应行为的现象识别和排名表(PIRT),使用熔体计算机代码建模压力载荷,以及基于机械一维流体动力学模型的抑制池流体动力学参数分析。具有详细的ABWR壳体的熔体1.8.6模型用于在设计基础事故后进行容纳压力温度计算。使用抑制池膨胀模型对ABWR遏制执行最佳估计和几种灵敏度计算。敏感性计算展示了关键模型参数和假设对抑制池流体动力学响应的影响。遏制压力温度和抑制池膨胀的比较分析结果与ABWR许可计算中报告的结果表明合理的协议。

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