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Analysis of anticipated transient without scram of a Super Fast Reactor with single flow pass core

机译:单流道堆芯超快反应堆无扰动的预期瞬态分析

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摘要

Anticipated transient without scram (ATWS) of the supercritical-pressure light water-cooled fast reactor (Super FR) with single flow pass core is analyzed to clarify its safety characteristics. Abnormal reactivity due to loss of feedwater heating and uncontrolled withdrawal of a control rod is mitigated by density and Doppler reactivity feedback. Increase of the coolant density at the upstream of the fuel channel leads the core flow rate to decrease which in turn decreases the power especially due to the density reactivity feedback. Meanwhile, ATWS accidents which are followed by trip of both RCPs are important. Decreased feed-water flow rate leads directly to a decrease of core flow rate in all fuel assemblies. If the ADS is not used, the MCST increases rapidly due to high power density feature of the Super FR. Coolant expansion effect does not appear in the single flow pass core of Super FR while it appears in the second pass of the two-flow pass core leading to mild increase of MCST of the second pass. However, signal of flow low level 3 (6%) is provided for the ADS actuation and the MCST of each fuel channel is effective to be mitigated due to large core coolant flow rate induced by the ADS operation. The power is also decreased by density and Doppler reactivity feedbacks. MCST and core pressure of all the analyzed events satisfy the criteria.
机译:分析了具有单通流堆芯的超临界压力轻水冷快堆(Super FR)的预期无瞬态过渡现象(ATWS),以阐明其安全特性。密度和多普勒反应性反馈可以减轻由于给水加热损失和控制棒不受控制地抽出引起的异常反应性。燃料通道上游的冷却剂密度增加导致堆芯流速降低,这又导致功率降低,特别是由于密度反应性反馈。同时,两个RCP跳闸之后的ATWS事故也很重要。给水流量的减少直接导致所有燃料组件中核心流量的减少。如果不使用ADS,则由于Super FR的高功率密度功能,MCST会迅速增加。冷却剂膨胀效应没有出现在Super FR的单流道纤芯中,而出现在双流道纤芯的第二道纤芯中,导致第二道MCST的温和增加。但是,为ADS致动提供了流量低水平3(6%)的信号,并且由于ADS操作引起的堆芯冷却液流速大,每个燃料通道的MCST有效地得以缓解。功率也会因密度和多普勒反应性反馈而降低。所有分析事件的MCST和岩心压力均满足标准。

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  • 来源
    《Annals of nuclear energy》 |2015年第1期|54-63|共10页
  • 作者

    Sutanto; Yoshiaki Oka;

  • 作者单位

    Cooperative Major in Nuclear Energy, Graduate School of Advanced Science and Engineering, Waseda University, Okubo, Shinjuku-ku, Tokyo 169-8555, Japan;

    Cooperative Major in Nuclear Energy, Graduate School of Advanced Science and Engineering, Waseda University, Okubo, Shinjuku-ku, Tokyo 169-8555, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Super FR with single flow pass core; ATWS; Reactivity feedback; ADS actuation;

    机译:具有单通孔核心的超级阻燃剂;ATWS;反应性反馈;ADS驱动;

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