Apparent Permeability Model of Gas in Micronano Pores in Coal Seam Considering Multilayer Adsorption, Effective Stress, and Application
作者:Shouqing Lu, Yongfu Liu, Congmeng Hao, Yujin Qin, Zhanyou Sa, Jie Liu, Yongliang Zhang, Rong Zhang · 发表于:Journal of Energy Engineering · 年份:2025 · DOI:10.1061/jleed9.eyeng-5942 · 被引用次数:5 · 研究领域:Coal Properties and Utilization、Hydrocarbon exploration and reservoir analysis、Methane Hydrates and Related Phenomena
Gas plays an important role in environmental protection and energy transformation. Rational development and use of gas resources can effectively reduce environmental pressure and promote sustainable development. Permeability is a key index to measure the characteristics of coal seams and is related to the speed and flow of natural gas and affects the efficiency, recovery rate, and cost of mining. However, current studies on the permeability models of micronano pores in coal seams are insufficient, and many models were not fitted accurately with field gas extraction data. To solve these issues, the gas apparent permeability model of micronano pores, including dynamic changes in pore size, is constructed and validated based on the impacts through effective stress, multilayer adsorption, and surface diffusion in this paper. The mechanisms of the Knudsen number (Kn) and apparent permeability are discussed, and it is applied to interpret field gas extraction laws. The results indicate that this model is verified by matching experimental data. The reduction of the effective pore radius causes an increase in Kn in view of effective stress and multilayer adsorption, whereas gas pressure primarily influences Kn by altering the mean molecular free path. Furthermore, an increase of both effective stress and adsorption layer thickness causes a change of the pore radius, causing a reduction in apparent permeability, and apparent permeability also decreases as gas pressure increases. Accur...