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Experimental and numerical investigation of forced convection heat transfer of air in non-sintered porous media

机译:非烧结多孔介质中空气强迫对流换热的实验和数值研究

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Forced convection heat transfer of air in plate channels filled with glass or non-sintered steel spherical particles was investigated experimentally and numerically. The effects of thermal dispersion, variable properties caused by the pressure variation, particle diameter, particle thermal conductivity and fluid velocity were studied. The experimental results and numerically calculated values for the friction factor in porous media agree well with established formula. The porous media significantly increased the pressure drop in the plate channel compared to an empty channel. The non-sintered porous media enhanced the heat transfer by 4-8 times for the conditions studied, which was much less than the enhancement due to the sintered porous media due to the contact thermal resistance in the non-sintered porous media. The heat transfer coefficient decreased with smaller glass particle diameters and increased with the particle thermal conductivity. The influence of the solid particle thermal conductivity on the convection heat transfer of air in porous media decreased as the solid particle thermal conductivity decreased. Numerical simulation results with the local thermal non-equilibrium model with consideration of thermal dispersion corresponded well to the experimental data for both glass and metallic porous structures. The effects of pressure variation on the convection heat transfer was less important. (C) 2003 Elsevier Inc. All rights reserved.
机译:实验和数值研究了填充玻璃或非烧结钢球形颗粒的平板通道中空气的强制对流传热。研究了热分散,压力变化引起的性能变化,粒径,颗粒导热系数和流体速度的影响。多孔介质中摩擦系数的实验结果和数值计算结果与既定公式吻合良好。与空通道相比,多孔介质显着增加了板通道中的压降。在所研究的条件下,未烧结的多孔介质将传热提高了4-8倍,这比由于未烧结的多孔介质中的接触热阻而导致的烧结多孔介质的增强要小得多。传热系数随着玻璃粒径的减小而减小,并且随着颗粒的导热率而增大。随着固体颗粒热导率的降低,固体颗粒热导率对空气在多孔介质中对流传热的影响减小。考虑热分散的局部热非平衡模型的数值模拟结果与玻璃和金属多孔结构的实验数据非常吻合。压力变化对流传热的影响不太重要。 (C)2003 Elsevier Inc.保留所有权利。

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