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Experimental investigation on narrow gap heat transfer with porous media under downward-facing horizontal heated surface

机译:朝下水平受热面下多孔介质窄间隙传热的实验研究

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An experimental study of horizontal narrow gap heat transfer of porous media under a round downward-facing heated plate has been carried out, using water as the working fluid. The boiling curves are obtained with different gap size, plate diameter and solid spherules. The results show that the heat transfer increases significantly with porous media in the gap especially under boiling condition, and the occurrence of pool boiling crisis would be brought forward when the gap size is very small. The results also indicate that the heat transfer in horizontal narrow gap can be enhanced by increasing the ratio of gap size to plate diameter and using porous media with high thermal conductivity. Based on the mechanism of heat transfer of porous media, the correlations for natural convection and nucleate boiling are proposed to predict the heat flux.
机译:以水为工作流体,对圆形朝下的加热板下多孔介质的水平窄间隙传热进行了实验研究。用不同的间隙尺寸,板直径和固体小球获得沸腾曲线。结果表明,间隙中的多孔介质尤其是在沸腾条件下,传热显着增加,当间隙尺寸很小时,会引起池沸腾危机的发生。结果还表明,通过增加间隙尺寸与板径的比值以及使用具有高导热率的多孔介质,可以提高水平窄间隙中的热传递。基于多孔介质的传热机理,提出了自然对流和核沸腾的相关性来预测热通量。

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