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A local thermal non-equilibrium analysis for convective and radiative heat transfer in gaseous transpiration cooling through a porous wall

机译:一种局部热非平衡分析,用于通过多孔壁冷却气体蒸腾蒸腾热传播的热非平衡分析

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摘要

A local thermal non-equilibrium analysis has been proposed for the gaseous transpiration cooling in which a coolant gas is driven from a coolant reservoir through a wall of porous structure to remove heat from a hot gas passing over the wall. For the first time, the effects of both radiation and gas expansion on the performance of the transpiration cooling were fully taken into consideration, on the basis of equal pumping power needed to supply the coolant, by introducing the Rosseland and low Mach approximations. The present analysis valid for all cases, in which both radiation and gas expansion are present, was validated against the existing analyses for the cases of incompressible transpiration gas flows in the absence of radiation. The radiative heat transfer tends to reduce the overall cooling effectiveness, but, at the same time increase the total removable of heat from the hot gas. The low Mach approximation is found quite effective to account for the gas expansion effects on the pressure drop across the wall. Furthermore, the analysis reveals that the overall Nusselt number exhibits its peak at a certain value of the pumping power, which turns out to be useful information in operating a transpiration cooling system effectively around its optimal flow rate.
机译:已经提出了局部热非平衡分析,用于气态蒸腾冷却,其中冷却剂气体通过多孔结构的壁从冷却剂储存器驱动,以从通过壁上的热气体去除热量。首次,通过引入rosseland和低马赫近似来充分考虑辐射和气体膨胀对蒸发冷却性能的影响。对于所有病例有效的本分析,其中存在辐射和气体膨胀,验证了在没有辐射的情况下对不可压缩蒸发气体流动的情况进行的现有分析。辐射热传递倾向于降低总冷却效果,但同时增加热气体的热量的总热量。低马赫近似被发现非常有效地考虑到墙壁上的压力下降的气体膨胀效应。此外,分析表明,整个篮板号在泵送动力的一定值下表现出其峰值,这反过来是在有效地围绕其最佳流速操作蒸发冷却系统的有用信息。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第12期|120389.1-120389.12|共12页
  • 作者单位

    School of Mechanical and Electrical Engineering Henan University of Technology Zhangzhou Henan China;

    Graduate School of Science and Technology Shizuoka University 3-5-1 johoku Naka-ku Hamamatsu 432-8561 Japan;

    School of Power and Energy Northwestern Polytechnical University 127 West Youyi Road Xi'an Shaanxi 710072 P. R. China;

    Graduate School of Science and Technology Shizuoka University 3-5-1 johoku Naka-ku Hamamatsu 432-8561 Japan School of Power and Energy Northwestern Polytechnical University 127 West Youyi Road Xi'an Shaanxi 710072 P. R. China;

  • 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

    Transpiration cooling; Convection; Radiation; Porous media; L.T.N.E;

    机译:蒸腾冷却;对流;辐射;多孔介质;L.T.N.E.;

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