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REV-scale simulation of micro-fractured unconventional gas reservoir

机译:微骨折非传州气藏的Rev-级模拟

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Multiscale fractures such as hydraulic fractures and natural micro-fractures coexist in unconventional gas reservoir among which micro-fractures have great effect on the effective matrix permeability at representative elementary volume (REV) scale. In addition, in the development of unconventional gas, matrix properties and fracture aperture are influenced by gas transport mechanisms including Klinkenberg effect, stress sensitivity and gas adsorption. To investigate the influence of micro-fractures and gas transport mechanisms, a new model for REV-scale unconventional gas flow simulation has been presented based on REV-scale Lattice Boltzmann Method model and gas transport mechanisms. And the effects of different fracture features were analyzed and the most important feature was filtered. In addition, the effects of gas transport mechanisms on matrix permeability and effective permeability were investigated. The results indicate that fracture density has the greatest effect on the effective permeability that the increase multiple can reach to 1 order of magnitude when matrix permeability is at 10(-4) mu m(2) level while fracture aperture has little effect. Moreover, gas transport mechanisms have significant effects on matrix properties and effective permeability. With the decline of gas pressure, matrix permeability increases and fracture aperture decreases which lead to the decrease of the effective permeability. But the decrease of the effective permeability is not great which is approximately 50% under the gas pressure decline of 20 MPa. (C) 2017 Published by Elsevier B.V.
机译:多尺度骨折,如液压骨折和自然微骨折在非传统气体储层中共存,其中微骨折对代表基本体积(Rev)规模的有效基质渗透性有很大影响。另外,在快递的气体的发展中,基质性质和裂缝孔受到包括Klinkenberg效应,应激敏感性和气体吸附的气体传输机制的影响。为了研究微骨折和气体输送机制的影响,基于Rev-Scale格式Boltzmann方法模型和气体传输机制,提出了一种新型的Rev-Scal非常规气流模​​拟模型。分析了不同骨折特征的影响,过滤了最重要的特征。此外,研究了气体输送机制对基质渗透性和有效渗透性的影响。结果表明,当矩阵渗透率为10(-4)μm(2)水平时,断裂密度对增加多个倍数的有效渗透性的影响最大,而当骨折孔隙效果不大。此外,气体输送机制对基质性质和有效渗透性具有显着影响。随着气体压力的下降,基质渗透率增加,骨折孔径降低,这导致有效渗透性的降低。但有效渗透率的降低并不大约为20MPa的气体压力下降约50%。 (c)2017年由Elsevier B.V发布。

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