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首页> 外文期刊>Journal of natural gas science and engineering >Research on transient flow theory of a multiple fractured horizontal well in a composite shale gas reservoir based on the finite-element method
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Research on transient flow theory of a multiple fractured horizontal well in a composite shale gas reservoir based on the finite-element method

机译:基于有限元法的复合页岩气藏多缝水平井瞬态流动理论研究

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摘要

A shale gas reservoir, as a special type of gas reservoir, is significantly different from a conventional gas reservoir. Gas flow in shale involves a complex process of multiple flow mechanisms (including adsorption, diffusion, slippage, and viscous flow in multi-scaled systems of nano-to macro-porosity) that substantially deviates from Darcy flow. The multiple hydraulic fracturing procedure not only creates the stimulated reservoir volume (SRV) to improve production but also causes the flow in the shale to become more complex. In this work, we first propose a dual porosity continuum and discrete fracture model to describe the flow of MFH well in a rectangular composite shale gas reservoir. The finite element method based on the unstructured 3D tetrahedral meshes is used to obtain a numerical solution. Next, we assume a transient well index to correct the early calculation error caused by the mesh precision and obtain the complete pressure transient and production decline curves. Sensitivity analyses show that the Langmuir volume, equivalent apparent permeability, hydraulic fracture distribution and size of SRV have great impacts on the transition flow regime and production performance. The research results obtained in this paper can provide theoretical guidance for efficient and large-scale development of shale gas reservoirs. (C) 2016 Elsevier B.V. All rights reserved.
机译:页岩气藏是一种特殊的气藏,与常规气藏有很大的不同。页岩中的气体流动涉及多种流动机理的复杂过程(包括纳米尺度到大孔隙的多尺度系统中的吸附,扩散,滑移和粘性流),这与达西流有很大不同。多次水力压裂程序不仅产生增产油藏(SRV)以提高产量,而且使页岩中的流动变得更加复杂。在这项工作中,我们首先提出了双重孔隙连续体和离散裂缝模型,以描述矩形复合页岩气储层中MFH井的流动。使用基于非结构化3D四面体网格的有限元方法来获得数值解。接下来,我们假设一个瞬态井指数来纠正由网格精度引起的早期计算误差,并获得完整的压力瞬态和产量下降曲线。敏感性分析表明,Langmuir体积,等效表观渗透率,水力压裂分布和SRV尺寸对过渡流态和生产性能有很大影响。本文的研究成果可为页岩气储层的高效,大规模开发提供理论指导。 (C)2016 Elsevier B.V.保留所有权利。

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