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Experimental And Numerical Analysis Of Natural Convection In Geometrically Modeled Core Catcher Of The Liquid-metal-cooled Fast Reactor

机译:液态金属冷却快堆几何造型堆芯内自然对流的实验和数值分析

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摘要

In the Prototype Fast Breeder Reactor, a core catcher is provided as an in-vessel core debris retention device to collect, support, and maintain in subcritical configuration the relocated core debris generated from fuel melting as a consequence of a severe accident scenario. It acts as a barrier to prevent settling of debris onto the main vessel and helps to maintain the main vessel temperature within acceptable creep range. In the Safety Engineering Division of the Indira Gandhi Center for Atomic Research, model experiments are carried out in water using a geometrically similar model to understand natural convective heat transfer and fluid flow in and around the core catcher below the grid plate. Influences of cylindrical and annular central openings (chimney) through the core catcher assembly are investigated tornassess their relative thermal performances. Resistive heating elements are used as heat source to simulate debris decay heat on the core catcher. Series of experiments were carried out with both configurations. Temperatures were monitored at critical positions and compared with numerical evaluation. Flow fields and isotherms are analyzed with a computational model to understand the fluid flow and heat transfer characteristics inside the cavity along with experimental data for specified steady-state temperatures on the heat source plate. Numerical results are found to be in good agreement with those obtained from the experiments. The combined efforts of numerical and experimental work conclude that core catcher assembly with annular chimney is better in terms of natural convection heat removal capability.
机译:在原型快速繁殖反应堆中,提供了堆芯捕集器作为船内堆芯碎屑保留装置,以收集,支撑并维持由于严重事故场景而由燃料熔化产生的重新定位堆芯碎屑,并将其保持在亚临界状态。它可以防止碎屑沉淀到主容器上,并有助于将主容器温度保持在可接受的蠕变范围内。在Indira Gandhi原子研究中心的安全工程部门,使用几何相似的模型在水中进行了模型实验,以了解自然对流传热和流体在格栅板下方的集热器内部和周围的流动。研究了圆柱形和环形中心开口(烟囱)穿过取芯器组件的影响,以评估它们的相对热性能。电阻加热元件用作热源,以模拟碎屑收集器上的碎屑衰减热。两种配置均进行了一系列实验。在关键位置监测温度,并与数值评估进行比较。用计算模型分析流场和等温线,以了解腔体内的流体流动和传热特性,以及热源板上指定稳态温度的实验数据。发现数值结果与从实验获得的结果非常一致。数值和实验工作的共同努力得出的结论是,具有自然对流排热能力的带环形烟囱的岩心捕集器组件更好。

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  • 来源
    《Nuclear Technology》 |2009年第1期|43-52|共10页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:44:13

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