非稳态瓦斯流动中瓦斯内压对煤渗透率的影响用裂隙网络模型研究煤的透气性(第二报告)。

T. Imai, I. Nakajima, K. Asakura, T. Goto
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引用次数: 0

摘要

本研究的目的是为了证明内部孔隙压力对煤中非稳态气体流动的影响。在实际应用中,提出了由透气裂隙网络和不透气裂隙网络组成的煤层瓦斯渗透模型。在此基础上,通过改变裂隙网络的入口压力、对煤的围压、裂隙闭合概率等参数,利用该模型对瓦斯渗流进行了数值模拟,得到了非稳态瓦斯流动波动的模拟结果,与煤的瓦斯渗流实验结果相吻合。从这些方面考虑,发现上述气体渗透模型具有足够的精度,可以用于实际应用。此外,煤中非稳态瓦斯流动的模拟结果解释了瓦斯流动与压差关系偏离达西定律的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Internal Gas Pressure on Gas Permeability of Coal in Unsteady-State Gas Flow. Study on gas permeability of coal by crack network model (2nd Report).
The purpose of this study is to prove the effect of internal pore pressure on unsteady-state gas flow in coal. Practically, the gas permeation model of coal which consists of the gas permeable and non-permeable crack network was proposed. Then the numerical simulations of gas permeation by this model were carried out by changing the parameters such as inlet pressure in the crack network, confining pressure against coal, closing probability of cracks, etc.The results of these simulations on fluctuations of unsteady-state gas flow were in agreements with the experiments of gas permeation of coal. From these considerations it was found that the above gas permeation model was accurate enough for practically. Moreover, the results of the simulations on unsteady-state gas flow in coal gave an explanation to the deviation from the Darcy's law in the relationsbetween gas flow and difference pressure.
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