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Experimental investigation on the characteristics of gas diffusion in shale gas reservoir using porosity and permeability of nanopore scale

机译:利用纳米孔隙度的孔隙率和渗透率研究页岩气储层中气体扩散特征的实验研究

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The aim of this study is to investigate the diffusion characteristics of nanoscale gas flow in a shale gas reservoir. An experimental apparatus was designed and set up to measure porosity and permeability at the nanopore scale. The measured properties have been used to determine a diffusion coefficient by classification standard of gas flow regime. To investigate the impact of pressure and pore size, the analysis of diffusion flow was conducted using Knudsen and Fick diffusion coefficients. From the results, it was revealed that Knudsen diffusion coefficient gradually increased with the growth of pressure and pore radius and Fick diffusion coefficient was dependent on the gas molecular diameter and temperature. It was also found that Knudsen diffusion coefficient was equal to Fick diffusion coefficient if pore radius is too small. The study implied that the characteristics of gas diffusion should be implemented by using the diffusion coefficient theory based on gas flow regime in shale gas reservoirs. (C) 2015 Elsevier B.V. All rights reserved
机译:这项研究的目的是研究页岩气藏中纳米级气流的扩散特征。设计并设置了一个实验仪器,以纳米孔级测量孔隙率和渗透率。所测量的特性已经被用于通过气流状态的分类标准来确定扩散系数。为了研究压力和孔径的影响,使用Knudsen和Fick扩散系数进行了扩散流分析。结果表明,随着压力和孔半径的增加,克努森扩散系数逐渐增大,而菲克扩散系数则取决于气体分子的直径和温度。还发现如果孔半径太小,克努森扩散系数等于菲克扩散系数。研究表明,应采用基于页岩气储层瓦斯流态的扩散系数理论来实现瓦斯扩散特征。 (C)2015 Elsevier B.V.保留所有权利

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