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首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical study of heat transfer enhancement for a novel flat-plate solar water collector using metal-foam blocks
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Numerical study of heat transfer enhancement for a novel flat-plate solar water collector using metal-foam blocks

机译:新型泡沫金属平板太阳能集热器强化传热的数值研究

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摘要

This paper reports a numerical study of enhanced forced convection in a channel of solar water collector using multiple metal-foam blocks. Both Darcy-Brinkman-Forchheimer flow model and two-equation energy model based on local thermal non-equilibrium are used to characterize the thermo-flow fields inside the porous regions. Solution of the coupled governing equations for the porous/fluid composite system is obtained using a stream function-vorticity analysis. The results show that the recirculation caused by metal-foam block will significantly augment the heat transfer rate on heated surface. Besides, a useful correlated equation to predict Nu_m is proposed and the validity of the LTE condition is examined.
机译:本文报道了使用多种金属泡沫块增强太阳能集热器通道中强制对流的数值研究。基于局部热非平衡的Darcy-Brinkman-Forchheimer流动模型和两方程能量模型均用于表征多孔区域内部的热流场。使用流函数涡度分析获得了多孔/流体复合系统耦合控制方程的解。结果表明,金属泡沫块引起的再循环将显着提高受热表面的传热速率。此外,提出了一种有用的相关方程来预测Nu_m,并检验了LTE条件的有效性。

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