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Effect of pore to throat size ratio on thermal dispersion in porous media

机译:孔喉尺寸比对多孔介质中热分散的影响

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摘要

In this study, the effects of pore to throat size ratio on thermal dispersion of periodic porous media consisting of inline array of rectangular rods are investigated, numerically. The continuity, momentum and energy equations are solved for representative elementary volumes (REVs) of the porous media to obtain microscopic velocities in the voids between the rods and temperature distribution for entire of the REVs. Volume averaging method is employed to compute the macroscopic velocity and temperature values. There are velocity and temperature deviations between the macroscopic and microscopic values. These deviations are computed numerically and thermal dispersion coefficients of the porous media are determined. The aim of this study is to analyze the effects of pore to throat size ratio on the longitudinal and transverse thermal dispersion in the porous media. The study is performed for pore to throat size ratios between 1.63 and 7.46, porosities from 0.7 to 0.9, and pore level Reynolds numbers between 1 and 100. It is found that in addition to the porosity and Reynolds number, the parameter of pore to throat size ratio plays an important role on thermal dispersion in a porous medium. It is found that there is an optimum value of pore to throat size ratio for maximum longitudinal thermal dispersion coefficient; however, the transverse thermal dispersion increases with the increasing of values of pore to throat size ratio.
机译:在这项研究中,数值研究了孔喉尺寸比对由矩形棒的直列阵列组成的周期性多孔介质的热分散的影响。求解多孔介质的代表性基本体积(REV)的连续性,动量和能量方程,以获取杆之间空隙中的微观速度以及整个REV的温度分布。体积平均法用于计算宏观速度和温度值。宏观和微观之间存在速度和温度偏差。对这些偏差进行数值计算,并确定多孔介质的热分散系数。这项研究的目的是分析孔喉尺寸比对多孔介质中纵向和横向热扩散的影响。该研究是针对孔喉尺寸比在1.63和7.46之间,孔隙率在0.7至0.9之间以及孔水平雷诺数在1和100之间进行的。发现,除了孔率和雷诺数之外,孔喉的参数尺寸比对多孔介质中的热分散起着重要作用。发现最大的纵向热扩散系数存在最佳的孔喉尺寸比值。但是,横向热扩散随孔喉尺寸比值的增加而增加。

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