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Multiscale model reduction for shale gas transport in a coupled discrete fracture and dual-continuum porous media

机译:耦合离散骨折和双连续多孔介质中的页岩气运输的多尺度模型减少

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Natural gas production from shale formations involves highly complex geological features consisting of fractures that are embedded spatially-distributed in a matrix made of organic and inorganic materials. In this paper, we develop a coupled multiscale and multi-continuum approach for simulating gas transport in the shale formation. The multiscale method allowed us to capture detailed interactions between the fractures and the background. For the fine-scale heterogeneities involving organic and inorganic materials distribution in the matrix, we use a dual-continuum approach. The matrix is coupled to the fractures by use of the Generalized Multiscale Finite Element Method (GMsFEM). In our previous work (Akkutlu et al., 2016), we used a single-continuum background coupled to the fracture network. This paper presents a significant extension and considers dual-continuum media as a background. GMsFEM systematically identifies the fracture networks by constructing corresponding multiscale basis functions. GMsFEM also accurately represents the fractures interacting with the background media. Moreover, GMsFEM can handle any spatial fracture distributions and thus, it avoids the limitations of the multi-continuum approaches. Results show that the proposed numerical approach can accurately capture the interactions between the fractures and the multi-continuum model using a few multiscale basis functions. (C) 2017 Published by Elsevier B.V.
机译:来自页岩地层的天然气生产涉及高度复杂的地质特征,包括嵌入在由有机和无机材料制成的基质中分布的空间分布的裂缝。在本文中,我们开发了一种耦合的多尺度和多连续方法,用于模拟页岩形成中的气体输送。多尺度方法允许我们捕获裂缝和背景之间的详细相互作用。对于涉及基质中有机和无机材料分布的细尺寸异质性,我们使用双连续方法。通过使用广义的多尺度有限元方法(GMSFEM),基质耦合到裂缝。在我们以前的工作(Akkutlu等人,2016),我们使用了一个连续的背景,耦合到骨折网络。本文提出了一个重要的延伸,并考虑了双重连续媒体作为背景。 GMSFEM通过构建相应的多尺度基函数来系统地识别裂缝网络。 GMSFEM还准确地表示与背景介质相互作用的骨折。此外,GMSFEM可以处理任何空间骨折分布,因此,它避免了多连续方法的局限性。结果表明,采用的数值方法可以使用少数多尺度基本函数准确地捕获裂缝和多连续模型之间的相互作用。 (c)2017年由Elsevier B.V发布。

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