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The Effective Convectivity Model for Simulation of Molten Metal Layer Heat Transfer in a Boiling Water Reactor Lower Head

机译:沸水反应堆下端熔融金属层传热的有效对流模型

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摘要

This paper is concerned with the development of approaches for assessment of core debris heat transfer and Control Rod Guide Tube (CRGT) cooling effectiveness in case of a Boiling Water Reactor (BWR) severe accident. We consider a hypothetical scenario with stratified (metal layer atop) melt pool in the lower plenum. Effective Convectivity Model (ECM) and Phase-Change ECM (PECM) are developed for the modeling of molten metal layer heat transfer. The PECM model takes into account reduced convection heat transfer in mushy zone and compositional convection that enables simulations of noneutectic binary mixture solidification and melting. The ECM and PECM are (ⅰ) validated against relevant experiments for both eutectic and noneutectic mixtures and (ⅱ) benchmarked against CFD-generated data including the local heat transfer characteristics. The PECM is then applied to the analysis of heat transfer in a stratified heterogeneous debris pool taking into account CRGT cooling. The PECM simulation results show apparent efficacy of the CRGT cooling which can be utilized as Severe Accident Management (SAM) measure to protect the vessel wall from focusing effect caused by metallic layer.
机译:本文关注在沸水反应堆(BWR)严重事故情况下评估堆芯碎屑传热和控制棒导管(CRGT)冷却效果的方法的发展。我们考虑在下气室中分层(金属层在顶部)熔池的假设情况。开发了有效对流模型(ECM)和相变ECM(PECM)来建模熔融金属层的热传递。 PECM模型考虑了在糊状区中对流传热的减少和成分对流,这使得能够模拟非共晶二元混合物的凝固和熔化。 ECM和PECM已针对相关共熔和非共晶混合物进行了相关实验验证(ⅰ),并针对CFD生成的数据(包括局部传热特性)进行了基准测试。然后将PECM应用于考虑CRGT冷却的分层异质碎屑库中的传热分析。 PECM仿真结果表明CRGT冷却具有明显的功效,可以用作严重事故管理(SAM)措施来保护血管壁免受金属层引起的聚焦效应。

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  • 来源
    《Science and technology of nuclear installation》 |2013年第1期|231501.1-231501.14|共14页
  • 作者

    Chi-Thanh Tran; Pavel Kudinov;

  • 作者单位

    Division of Nuclear Power Safety, Royal Institute of Technology, Roslagstullsbacken 21, D5,10691 Stockholm, Sweden;

    Division of Nuclear Power Safety, Royal Institute of Technology, Roslagstullsbacken 21, D5,10691 Stockholm, Sweden;

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