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Modeling the effects of gas slippage, cleat network topology and scale dependence of gas transport in coal seam gas reservoirs

机译:对煤层气储层中瓦斯滑移,割理网络拓扑结构和瓦斯传输的尺度依赖性的影响进行建模

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Gas flow in coal cleats plays a significant role for the permeability of coal seams. Investigations of gas transport in coal are carried out in this work using a numerical scheme with a coal sample scanned by the micro-computed tomography. We analyse a coal sample from the Bowen Basin (Australia) to characterize the natural discrete fracture network defined by connected cleats and matrix blocks. Due to the heterogeneity of coal micro-structures, the numerical simulator is combined with a grid-adaptive scheme. The accuracy of the simulator is validated for gas slip regime (0.01 < Kn < 1.0) in the micro-straight channel. Predictions of permeability and porosity are conducted through the method. The results show that the porosity and permeability of the digitalized coal model change along with the length and stabilizes at > 400 voxels and > 700 voxels, respectively. The Knudsen number (Kn) has an important effect on the gas slippage which can enhance the coal seam gas transport for narrow cleat networks. The increase of Kn ranging from 0.0005 to 0.01 increases the mass flux as well as the permeability of the coal for a given cleat aperture. The investigations of the gas transport in cleats prove the capability of the numerical simulator for modeling gas slip flow. It also provides a potential tool for solving gas transport in the complex geometry of a natural coal seam gas (CSG) reservoir.
机译:煤层中的气流对煤层的渗透性起着重要作用。在这项工作中,使用数值方案对煤中的气体传输进行了研究,并通过微计算机断层扫描技术扫描了煤样品。我们分析了来自Bowen盆地(澳大利亚)的煤炭样本,以表征由相连的楔块和基质块定义的天然离散裂缝网络。由于煤微结构的异质性,数值模拟与网格自适应方案相结合。该模拟器的精度已针对微直通道中的瓦斯滑移方案(0.01 400体素和> 700体素上。 Knudsen数(Kn)对瓦斯滑移有重要影响,它可以增强窄煤层气网中煤层瓦斯的输送。在给定的割理孔径下,Kn从0.0005到0.01的增加会增加质量通量以及煤的渗透率。对楔子中气体传输的研究证明了数值模拟器对气体滑流进行建模的能力。它还为解决天然气在天然煤层气(CSG)储层中的复杂运输提供了一种潜在的工具。

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