曲折
微尺度化学
热导率
无量纲量
分形
材料科学
多孔介质
传热
分形维数
多孔性
热力学
机械
表面光洁度
复合材料
数学
物理
数学分析
数学教育
作者
Boqi Xiao,Min Zhang,Hanxin Chen,Jiyin Cao,Gongbo Long,Zheng Zhao
出处
期刊:Fractals
[World Scientific]
日期:2021-06-25
卷期号:29 (05): 2150114-2150114
被引量:24
标识
DOI:10.1142/s0218348x21501140
摘要
The effective thermal conductivity (ETC) of roughened porous media (RPM) is of interest in a number of applications of heat transfer. In this work, a fractal analytical model for the ETC of RPM with microscale effect is proposed. The proposed fractal model is expressed in terms of relative roughness, the molecular mean free path, porosity, fractal dimensions (pore area fractal dimension and tortuosity fractal dimension), maximum pore diameter, capillary straight length, and the thermal conductivity of the solid matrix and gas. It is observed that the dimensionless ETC of RPM decreases with increasing relative roughness, pore area fractal dimension and tortuosity fractal dimension. Besides, it is found that the dimensionless ETC of RPM increases with thermal conductivity ratio of gas phase over solid phase. In addition, it is found that the dimensionless ETC of RPM is slightly dependent on the relative roughness and tortuosity fractal dimension when [Formula: see text]. The determined dimensionless ETC of RPM is in good agreement with experimental data and existing models reported in the literature. With the proposed fractal model, the physical mechanisms of heat transport through RPM with microscale effect are better elucidated. Every parameter in the fractal analytical model has clear physical meaning, with no empirical constant.
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