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首页> 外文期刊>Annals of nuclear energy >Risk reduction due to modification of normal residual heat removal system of AP1000 (R) reactor to meet European Utility Requirements
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Risk reduction due to modification of normal residual heat removal system of AP1000 (R) reactor to meet European Utility Requirements

机译:通过修改AP1000(R)反应堆的常规余热排放系统以满足欧洲公用事业要求,降低了风险

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As part of AP1000 (R) design adaptation to European Utility Requirements, Westinghouse has carried out several modifications of the standard AP1000 design. One of these modifications has been the physical separation of the normal residual heat removal system (RNS) into two independent trains which improves the plant defense in depth. The AP1000 Probabilistic Risk Assessment, assumes in the standard design that in the event of direct vessel injection line break (DVILB) the RNS cannot inject efficiently, and therefore it is necessary to depressurize the Reactor Coolant System until atmospheric conditions in order to allow injection through the IRWST and to achieve safe conditions. This work presents the analysis performed for DVILB event tree taking into account the RNS modification and the effectiveness of RNS injection. With this purpose, different possibilities of DVILB event tree have been simulated with TRACE V5.0 patch 2 thermal hydraulic code. The results show that some sequences that were classified as damage with the standard RNS design became success with the consideration of RNS improvement and therefore the contribution of DVILB to the total core damage frequency can be minimized. (C) 2015 Elsevier Ltd. All rights reserved.
机译:作为适应欧洲公用事业要求的AP1000(R)设计的一部分,西屋公司对标准AP1000设计进行了多次修改。这些修改之一是将常规余热排除系统(RNS)物理分离为两个独立的系统,从而提高了工厂的防御深度。 AP1000概率风险评估在标准设计中假设,在直接容器注入管线中断(DVILB)的情况下,RNS无法有效注入,因此有必要对反应堆冷却剂系统减压直至大气条件,才能通过并达到安全条件。这项工作考虑到RNS修改和RNS注入的有效性,介绍了针对DVILB事件树执行的分析。为此,已使用TRACE V5.0补丁2的热力液压代码模拟了DVILB事件树的不同可能性。结果表明,考虑到RNS的改进,在标准RNS设计中被归类为损坏的某些序列获得了成功,因此可以使DVILB对总芯损坏频率的影响最小。 (C)2015 Elsevier Ltd.保留所有权利。

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