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The Cooling Performance of Mixed Convection in a Ventilated Enclosure With Different Ports Configurations

机译:具有不同端口配置的通风机箱中混合对流的冷却性能

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摘要

Mixed convection heat transfer in a vertically oriented air-cooled square enclosure is simulated numerically using the finite volume method. The vertical left wall being heated and all others are considered insulated. The effects of six opposite and staggered inlet/ outlet openings' locations over the top and bottom walls are investigated, with different sizes of the opening height (0.05 ≤ d/H ≤ 0.3). The objective is to figure out the better size and location of inlet and outlet to acquire more efficient cooling system in the enclosure by maximizing the heat removal rate. This is conducted over ranges of the governing parameters, which are the Richardson number (0 ≤ Ri ≤ 30) and the Reynolds number (50 ≤ Re ≤ 250). The results show that the level of heat transfer enhancement increases with increasing the opening height, with an optimal size of d/H = 0.25 for obtaining maximum heat removal, for all Richardson and Reynolds numbers. The results also indicate that the higher heat dissipation occurs when the cold air is injected vertically near the hot wall and exits the enclosure from the opposite or staggered outlet, for all Richardson and Reynolds numbers.
机译:使用有限体积法在数值上模拟垂直定向的风冷方形外壳中的混合对流传热。被加热的垂直左壁,所有其他壁都被认为是绝缘的。研究了六个相对和交错的入口/出口开口的效果,在顶壁和底壁上的位置,开口高度不同(0.05≤d/h≤0.3)。目的是通过最大化除热速率来弄清楚入口和出口的较大尺寸和位置,以在外壳中获得更有效的冷却系统。这是在控制参数的范围内进行的,这是Richardson号(0≤RI≤30)和雷诺数(50≤Re≤250)。结果表明,随着开口高度的增加,传热增强水平随着D / H = 0.25的最佳尺寸而增加,用于获得所有理查森和雷诺数的最大散热。结果还表明,当冷空气在热壁附近注入冷空气时,发生较高的散热,并从相对或交错的出口离开外壳,用于所有理查森和雷诺数。

著录项

  • 来源
    《Journal of Heat Transfer》 |2020年第12期|122601.1-122601.18|共18页
  • 作者单位

    Training and Workshop Centre University of Technology Baghdad Iraq;

    Training and Workshop Centre University of Technology Baghdad Iraq Fluids Laboratory for Aeronautical and Industrial Research (FLAIR) Department of Mechanical and Aerospace Engineering Monash University Victoria 3800 Australia;

    Training and Workshop Centre University of Technology Baghdad Iraq;

    Fluids Laboratory for Aeronautical and Industrial Research (FLAIR) Department of Mechanical and Aerospace Engineering Monash University Victoria 3800 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mixed convection; aiding and opposing laminar flows; ventilated enclosure;

    机译:混合对流;辅助和反对层流;通风外壳;

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