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Computational Fluid Dynamics and Thermal-Hydraulic Analyses of SLIMM Reactor Passive Decay Heat Removal by Natural Circulation of Ambient Air

机译:SLIMM反应堆被动衰减通过环境空气自然循环排热的计算流体力学和热力分析

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摘要

The Scalable LIquid Metal-cooled small Modular (SLIMM) reactor generates 10 to 100 MW(thermal) for extended periods without refueling. With the aid of an in-vessel chimney and a Na/Na helically coiled tubes heat exchanger (HEX) in the downcomer, natural circulation of in-vessel liquid sodium cools the SLIMM reactor core during nominal operation and after shutdown. With an unlikely malfunction of the Na/Na HEX, natural circulation of ambient air along the outer surface of the guard vessel wall maintains in-vessel natural circulation of liquid sodium and passively removes the decay heat after reactor shutdown. This paper performs three-dimensional computational fluid dynamics and thermal-hydraulic analyses to obtain preliminary estimates of the rate of decay heat removal by ambient air in case of a malfunction of the in-vessel Na/Na HEX and investigates the effect of using longitudinal metal fins along the guard vessel outer surface. The analyses calculate the contributions of natural convection and thermal radiation to the rate of decay heat removal by ambient air. For the same sodium temperatures in the reactor vessel downcomer as during steady-state nominal operation at 100 MW(thermal), the decay heat removal rate by ambient air without metal fins is ~ 1.0 MW(thermal), increasing by 26% to 1.26 MW(thermal) with metal fins. The contributions of natural convection and thermal radiation to the rate of decay heat removal are 58% and 42% without metal fins and 70% and 30% with metal fins, respectively. Extending the metal fins an additional 5 m and doubling the axial thermal conductivity increase the rate of the decay heat removal only slightly, to 1.28 MW(thermal).
机译:可扩展液态金属冷却小型模块化(SLIMM)反应堆可在不加油的情况下长时间产生10至100兆瓦(热)。借助于降液管中的容器内烟囱和Na / Na螺旋管式换热器(HEX),在正常运行期间和停机后,容器内液体钠的自然循环冷却了SLIMM反应堆堆芯。由于Na / Na HEX的故障可能性很小,环境空气沿保护容器壁外表面的自然循环可保持液钠在容器中的自然循环,并在反应堆关闭后被动地消除衰变热。本文进行了三维计算流体动力学和热工水力分析,以初步估计在容器内Na / Na HEX发生故障时环境空气中的衰减热量去除率,并研究了使用纵向金属的影响沿护船外表面的鳍。这些分析计算出自然对流和热辐射对环境空气去除热量的速率的贡献。对于反应堆容器降液管中的钠温度与稳态标称运行时100兆瓦(热)相同的钠温度,不带金属翅片的环境空气的衰减热量去除率为〜1.0兆瓦(热),增加26%至1.26兆瓦(热)和金属鳍片。自然对流和热辐射对无金属翅片的衰减除热率的贡献分别为58%和42%,而有金属翅片的贡献分别为70%和30%。将金属翅片再延伸5 m,并使轴向导热率增加一倍,则将衰减除热率仅略微提高至1.28 MW(热)。

著录项

  • 来源
    《Nuclear Technology》 |2016年第1期|1-14|共14页
  • 作者单位

    University of New Mexico, Institute for Space and Nuclear Power Studies, Albuquerque, New Mexico 87131,University of New Mexico, Nuclear Engineering Department, Albuquerque, New Mexico 87131;

    University of New Mexico, Institute for Space and Nuclear Power Studies, Albuquerque, New Mexico 87131,University of New Mexico, Nuclear Engineering Department, Albuquerque, New Mexico 87131,University of New Mexico, Mechanical Engineering Department, Albuquerque, New Mexico 87131,University of New Mexico, Chemical and Biological Engineering Department, Albuquerque, New Mexico 87131;

  • 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

    SLIMM small modular fast reactor; natural circulation of ambient air; computational fluid dynamics;

    机译:SLIMM小型模块化快速反应堆;环境空气的自然循环;计算流体动力学;
  • 入库时间 2022-08-18 00:42:47

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