首页> 外文会议>HT2008;ASME summer heat transfer conference >BUOYANT CONVECTION IN SUPERPOSED METAL FOAM AND WATER LAYERS
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BUOYANT CONVECTION IN SUPERPOSED METAL FOAM AND WATER LAYERS

机译:悬浮金属泡沫和水层中的浮力对流

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Experiments on natural convection in superposed metal foam and water layers are reported. The heat transfer system comprises a vertical cavity heated from below and held at constant temperature at the top. Two systems are considered: a water-filled cavity with a foam layer on the heated surface and a water-filled cavity with foam layers on the upper and lower surfaces. The present experiments use open cell copper foams with a nominal porosity of 92%, and the relative thicknesses of the water and foam layers are varied. Steady state Nusselt numbers show the presence of foam on the boundaries enhances overall heat transfer coefficients over that for the water-only layer. Enhancement of overall Nusselt numbers varies from 12 to 60% depending on Rayleigh number. Sublayer configurations with foam on both heat transfer surfaces are more effective for enhancement than a configuration with foam only on the heated surface.
机译:报道了在金属泡沫和水层中进行自然对流的实验。传热系统包括一个从下方加热并在顶部保持恒温的垂直腔。考虑了两种系统:在加热表面上具有泡沫层的充水空腔和在上下表面上具有泡沫层的充水空腔。本实验使用标称孔隙率为92%的开孔铜泡沫,并且水层和泡沫层的相对厚度有所不同。稳态Nusselt数表明,与纯水层相比,边界上存在泡沫可提高整体传热系数。根据瑞利数的不同,总体Nusselt数的增强范围从12%到60%不等。与仅在受热表面上具有泡沫的配置相比,在两个传热表面上均具有泡沫的子层配置在增强方面更有效。

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