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A quadruple-porosity model for transient production analysis of multiple-fractured horizontal wells in shale gas reservoirs

机译:页岩气藏多裂口水平井瞬时生产分析的四孔模型

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Multiple types of pores are present in shale gas reservoirs, including organic pores of nano scale, non-organic pores, natural and hydraulic fractures. Gas flow in different types of pores is controlled by different mechanisms, and Darcy's law is not able to describe all these processes adequately. This paper presents a "quadruple-porosity'' model and corresponding analytical solutions to describe the different permeable media and simulate transient production behavior of multiple-fractured horizontal wells in shale gas reservoirs. Dimensionless transient production decline curves are plotted, and characteristic bi-linear flow and linear flow periods are identified based on the analysis of type curves. Sensitivity analysis of transient production dynamics suggests that desorption of absorbed gas, Knudsen diffusive flow, gas slippage and parameters related to hydraulic fractures have significant influence on the production dynamics of a multiple-fractured horizontal well in shale gas reservoirs. The model provides insights into multiple shale gas flow mechanisms and production prediction of shale gas reservoirs.
机译:页岩气储层中存在多种类型的孔隙,包括纳米级的有机孔隙,非有机孔隙,天然裂缝和水力裂缝。不同类型的孔中的气体流动受不同机制控制,达西定律无法充分描述所有这些过程。本文提出了一种“四孔”模型和相应的解析解来描述不同的渗透介质,并模拟页岩气藏中多裂口水平井的瞬态生产行为,绘制了无量纲的瞬态产量下降曲线,并具有特征双线性。通过对类型曲线的分析确定了流动周期和线性流动周期,对瞬态生产动力学的敏感性分析表明,吸收气的解吸,克努森扩散流,瓦斯滑移和与水力压裂有关的参数对多井生产动态有重大影响。页岩气藏水平井压裂,该模型为多种页岩气流动机理和页岩气藏产量预测提供了见识。

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