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Pore Scale Numerical Investigation of Mixed Convection From an Isolated Heat Source in a Channel With a Porous Insert

机译:具有多孔插入件中隔离热源混合对流的孔隙数值研究

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Mixed convection heat transfer in a channel filled with porous medium and containing an isolated heat source at the bottom wall is studied in this work. The porous medium is assumed to be made of circular cylinders and is placed only on the heater surface. Three different configurations of porous medium are considered in this study. Pore-scale numerical simulations are carried out using the exact geometry of porous medium. The same configuration is also investigated using the volume-averaged approximation. The temperature distribution of the heater surface obtained from the pore-scale numerical simulation is compared with the results obtained from the volume-averaged numerical simulation. Parametric studies are carried out by varying the material of the cylinders, the porosity, and the height of the porous medium. The effects of Grashof number and Reynolds number of the flow are also studied as part of this investigation. The results obtained from the pore-scale numerical simulations show that the presence of the porous medium leads to reduction in heat transfer, while the results obtained from the volume-averaged numerical simulations show an enhancement of heat transfer due to the presence of the porous medium on the heater surface. However, the pore-scale numerical simulation results show that the heat transfer enhancement is only possible if the channel height is completely filled with the selected porous medium.
机译:在填充有多孔介质并含有底壁的隔离热源的沟道中的混合对流传热在该工作中进行了研究。假设多孔介质由圆柱体制成,仅放置在加热器表面上。本研究考虑了三种不同的多孔介质配置。使用多孔介质的确切几何形状进行孔隙率数值模拟。还使用体积平均近似研究了相同的配置。将从孔隙级数值模拟中获得的加热器表面的温度分布与从体积平均数值模拟获得的结果进行了比较。通过改变气缸的材料,孔隙率和多孔介质的高度来进行参数研究。还研究了Grashof数量和Reynolds数量的流程的影响,作为本研究的一部分。从孔径数值模拟中获得的结果表明,多孔介质的存在导致传热的降低,而从体积平均数值模拟获得的结果显示由于多孔介质的存在而导致的热传递增强在加热器表面上。然而,孔径数值模拟结果表明,如果通道高度完全填充所选择的多孔介质,则才能进行传热增强。

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