A MULTI-FIELD COUPLED SEEPAGE MODEL FOR COAL SEAM WITH FRACTURES OF POWER LAW LENGTH DISTRIBUTIONS

磁导率 煤矿开采 幂律 机械 断裂(地质) 达西定律 材料科学 地质学 多孔性 岩土工程 多孔介质 化学 数学 物理 生物化学 统计 有机化学
作者
Guannan Liu,Yuxin Hu,Bo Yu,Feng Gao,Fengtian Yue,Tao Gao
出处
期刊:Fractals [World Scientific]
卷期号:29 (06): 2150140-2150140 被引量:2
标识
DOI:10.1142/s0218348x21501401
摘要

In the process of gas mining, the fracture distribution with power law length and the pore structure with adsorption effect have an important influence on the coal seam permeability. In recent years, the research on the internal structure of coal seam and the fluid flow mechanism has attracted a large number of researchers. In this paper, by considering the coal matrix deformation caused by adsorption, a pore-fracture model coupled with the multi-field effects and with power law length distribution of fractures in coal seam is established based on the fractal theory for porous media. In this work, we study the influences of the power law exponent [Formula: see text] of fracture length and the ratio [Formula: see text] of the minimum to maximum fracture lengths on the permeability of coal seam and the evolution mechanism of permeability with the structural and mechanical parameters of coal seam. It is found that the permeability of coal seam is inversely proportional to [Formula: see text], directly proportional to [Formula: see text], and to Langmuir volume constant and Langmuir volume strain constant. Compared with other factors, the power law component [Formula: see text] of fractures has the most significant effect on the coal seam permeability.
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