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Heat transfer enhancement and pressure drop penalty in porous solar heaters: Numerical simulations

机译:多孔太阳能加热器中的传热增强和压降损失:数值模拟

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A comprehensive numerical study is performed on the fluid flow and heat transfer within a porous solar heater. The effects of porous material on the heat transfer enhancement and pressure drop are presented in details. Also, the attention is focused on the effects of several parameters on the combined convection-radiation heat transfer and flow structures. Volume averaged equations are applied to simulate the transport phenomena within the porous substrate. Furthermore, the regular continuity, momentum, and energy equations are used in the clear fluid region. These equations are discretized using the control volume technique. It is found that the Nusselt number increases by inserting the porous substrate to the heater. These augmentations are up to 3, 4.4 and 5.9 times for delta = 1/3, 2/3 and 1, respectively at Da = 10(-2). Also, the pressure drop increases with an increase in the porous layer thickness and decrease in the Darcy number. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对多孔太阳能加热器内的流体流动和传热进行了全面的数值研究。详细介绍了多孔材料对传热增强和压降的影响。同样,注意力集中在几个参数对组合的对流辐射传热和流动结构的影响上。应用体积平均方程来模拟多孔基底内的传输现象。此外,在透明流体区域中使用规则的连续性,动量和能量方程。使用控制量技术将这些方程式离散化。已经发现,通过将多孔基板插入加热器中,努塞尔数增加。在Da = 10(-2)时,增量= 1 / 3、2 / 3和1时,这些增强分别高达3、4.4和5.9倍。而且,压降随着多孔层厚度的增加而增加,并且达西数的减少。 (C)2015 Elsevier Ltd.保留所有权利。

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