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首页> 外文期刊>Annals of nuclear energy >Thermal-hydraulic analyses of passive reactor vault cooling system (RVCS) in PGSFR using MARS-LMR
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Thermal-hydraulic analyses of passive reactor vault cooling system (RVCS) in PGSFR using MARS-LMR

机译:使用MARS-LMR对PGSFR中的被动反应堆穹顶冷却系统(RVCS)进行热工水力分析

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摘要

KAERI has developed a prototype Gen-IV sodium cooled fast reactor (PGSFR), which is a pool type and metallic fueled fast reactor in Korea. Recently, a reactor vault cooling system (RVCS) was designed as a mitigation feature for severe accidents in the PGSFR. The RVCS which is located between the concrete and containment vessel is a passive cooling system which utilize an air natural circulation. The major goal of the RVCS is to keep the intactness of structures such as containment vessel and reactor vessel and to confine the radioactive materials inside of the vessel. The system has an influence on the reactor vessel temperature and the reactor vessel is an important structure in a reactivity feedback during a transient, since a control rod position is changed by the reactor vessel expansion. In this study, a performance test for the designed RVCS was conducted using an individual RVCS model. In order to check the effect of the RVCS performance under accident conditions, unprotected loss of heat sink (ULOHS) and total heat removal system failure (THRSF) accidents were analyzed with and without RVCS. The RVCS has a favorable effect on the reactivity feedback during the ULOHS because the RV expansion is reduced by enhanced cooling through the RVCS and the current RVCS design has enough capacity for mitigation of a severe accident condition. In addition, in terms of internal structure integrity, the damper opening time effect is also evaluated during the THRSF. (C) 2018 Elsevier Ltd. All rights reserved.
机译:KAERI开发了原型Gen-IV钠冷却快堆(PGSFR),它是韩国的池型金属燃料快堆。最近,反应堆库冷却系统(RVCS)被设计为缓解PGSFR中严重事故的功能。位于混凝土和安全壳之间的RVCS是利用空气自然循环的被动冷却系统。 RVCS的主要目标是保持安全壳和反应堆容器等结构的完整性,并将放射性物质限制在容器内部。该系统对反应器容器的温度有影响,并且反应器容器是瞬态反应性反馈中的重要结构,因为控制杆的位置因反应器容器的膨胀而改变。在这项研究中,使用单个RVCS模型对设计的RVCS进行了性能测试。为了检查在事故情况下RVCS性能的影响,分析了有无RVCS时无保护的散热器损失(ULOHS)和总散热系统故障(THRSF)事故。 RVCS对ULOHS期间的反应性反馈具有有利影响,因为通过RVCS增强的冷却可降低RV膨胀,并且当前的RVCS设计具有缓解严重事故情况的足够能力。此外,就内部结构的完整性而言,在THRSF期间还将评估风门打开时间的影响。 (C)2018 Elsevier Ltd.保留所有权利。

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