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Mathematical modelling of gas production and compositional shift of a CSG (coal seam gas) field: Local model development

机译:煤层气(CSG)田产气量和组成变化的数学模型:局部模型开发

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摘要

In this work we discuss the development of a mathematical model to predict the shift in gas composition observed over time from a producing CSG (coal seam gas) well, and investigate the effect that physical properties of the coal seam have on gas production. A detailed (local) one-dimensional, two-scale mathematical model of a coal seam has been developed. The model describes the competitive adsorption and desorption of three gas species (CH4, CO2 and N2) within a microscopic, porous coal matrix structure. The (diffusive) flux of these gases between the coal matrices (microscale) and a cleat network (macroscale) is accounted for in the model. The cleat network is modelled as a one-dimensional, volume averaged, porous domain that extends radially from a central well. Diffusive and advective transport of the gases occurs within the cleat network, which also contains liquid water that can be advectively transported. The water and gas phases are assumed to be immiscible. The driving force for the advection in the gas and liquid phases is taken to be a pressure gradient with capillarity also accounted for. In addition, the relative permeabilities of the water and gas phases are considered as functions of the degree of water saturation.
机译:在这项工作中,我们讨论了数学模型的开发,以预测从生产中的CSG(煤层气)井观察到的瓦斯组成随时间的变化,并研究煤层的物理性质对天然气生产的影响。已经开发了煤层的详细(局部)一维,两尺度数学模型。该模型描述了微观多孔煤基质结构中三种气体(CH4,CO2和N2)的竞争性吸附和解吸。在模型中考虑了这些气体在煤基质(微尺度)和割理网络(宏观尺度)之间的(扩散)通量。楔形网络被建模为从中心井径向延伸的一维,体积平均的多孔域。气体的扩散和对流传输发生在夹板网络中,该夹板网络还包含可以对流传输的液态水。假定水和气相是不溶混的。气相和液相中对流的驱动力被认为是具有毛细作用的压力梯度。另外,水和气相的相对渗透率被认为是水饱和度的函数。

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