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首页> 外文期刊>Journal of natural gas science and engineering >A quadruple-porosity model for shale gas reservoirs with multiple migration mechanisms
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A quadruple-porosity model for shale gas reservoirs with multiple migration mechanisms

机译:页岩气藏具有多种运移机制的四孔模型

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摘要

This paper presents a quadruple-porosity model for multi-stage fractured horizontal well (MFHW) with finite conductive hydraulic fractures in shale gas reservoirs. In this model, free gas, adsorbed gas and dissolved gas co-exist and gas migration in shale incorporates diffusion in kerogen bulk, desorption from the surface of organics and clays, slippage flow in porous kerogen and inorganic matrix, and Darcy flow in natural fractures. Bi-Langmuir theory was introduced to describe gas desorption from the surface of clays and organics. Continuous line source function, Laplace transform and numerical discrete method were employed to solve this new model. Gauss Jordan elimination method and Stehfest numerical inversion algorithm were applied to calculate the pressure and production responses. Type curves were plotted and flow regimes were identified. Sensitivity analysis of solubility coefficient, diffusion coefficient, inter-porosity coefficient, TOC, clays content, hydraulic fracture conductivity and permeability correction coefficient was performed. Finally, the proposed model was validated by fitting actual production data of a field case and comparing with other models. The matching results showed that quadruple porosity model considering dissolved gas was closer to the actual situation than trilinear-flow model and dual-porosity radial-flow model. To sum up, this presented model considering some key mechanisms further expands the transient pressure models for MFHW in shale gas reservoirs and it can be utilized to analyze well performance in the production life of gas wells. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了页岩气藏中具有有限传导性水力压裂的多级压裂水平井(MFHW)的四孔模型。在该模型中,游离气体,吸附气体和溶解气体共存,页岩中的气体运移包括干酪根大量扩散,有机物和粘土表面的解吸,多孔干酪根和无机基质中的滑移流以及天然裂缝中的达西流。 。引入双朗缪尔理论来描述气体从粘土和有机物表面的脱附。采用连续线源函数,拉普拉斯变换和数值离散方法求解该新模型。采用高斯乔丹消除法和Stehfest数值反演算法计算压力和生产响应。绘制类型曲线并确定流态。进行了溶解度系数,扩散系数,孔隙率系数,TOC,粘土含量,水力压裂传导率和渗透率校正系数的敏感性分析。最后,通过拟合现场案例的实际生产数据并与其他模型进行比较来验证所提出的模型。匹配结果表明,考虑到溶解气的四重孔隙度模型比三线性流模型和双孔隙径向流模型更接近实际情况。综上所述,该模型考虑了一些关键机理,进一步扩展了页岩气储层中MFHW的瞬态压力模型,可用于分析气井生产寿命中的井性能。 (C)2016 Elsevier B.V.保留所有权利。

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