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Forced convection gaseous slip flow in a porous circular microtube: An exact solution

机译:多孔圆形微管中的强制对流气态滑流:一种精确的解决方案

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Rarefied phenomena can occur when a gas flows through a microchannel. However, most available convective solutions were obtained under the local thermal equilibrium condition. In this study, gaseous slip flow in a circular microtube filled with a porous medium is analytically investigated under the local thermal non-equilibrium condition. The first-order velocity slip and temperature jump conditions at the tube wall are invoked in order to account for the rarefaction effects. Rigorous analytical solutions are obtained for the velocity and temperature distributions as well as the average Nusselt number. Theoretical predictions are then compared to those of existing limiting cases in the literature. Results indicate that the degree of rarefaction, represented by the Knudsen number ranging from 10(-3) to 10(-1), has a significant effect on the velocity, temperature, pressure drop and heat transport within the microtube for various combinations of pertinent parameters such as the porosity, effective thermal conductivity ratio, Biot number and porous media shape factor. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:当气体流过微通道时,会出现稀少的现象。但是,大多数可用的对流解是在局部热平衡条件下获得的。在这项研究中,在局部热非平衡条件下,对填充有多孔介质的圆形微管中的气体滑流进行了分析研究。为了解决稀疏效应,调用了管壁处的一阶速度滑移和温度跃变条件。对于速度和温度分布以及平均Nusselt数,可以获得严格的解析解。然后将理论预测与文献中现有极限情况的预测进行比较。结果表明,稀疏度(由努森数表示的范围从10(-3)到10(-1))对于各种相关的组合对微管内的速度,温度,压降和传热有显着影响孔隙率,有效导热率,比奥数和多孔介质形状系数等参数。 (C)2015 Elsevier Masson SAS。版权所有。

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