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Pressure Transient Analysis of Complex Fracture Networks in Shale Gas Reservoirs With Multiple-Porosity Transport Mechanisms

机译:具有多孔隙输送机制的页岩气藏复杂骨折网络的压力瞬态分析

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Shale gas flow is controlled by multiple mechanisms and multi-stage hydraulic fracturing often creates complex fracture networks. It is very challenging to incorporate various migration mechanisms of shale gas and accurately simulate the complex fracture networks in shale gas reservoirs. In this work, we present a semi-analytical model to study the pressure behavior in shale gas reservoirs. Multiple migration mechanisms are considered, which contain diffusion of dissolved gas inkerogen bulk, desorption from the surface of kerogen bulk and clay particles, slippage flow simultaneously from both organic pores and inorganic pores into natural fracture system and Darcy flow in natural fractures and hydraulic fracture network system. Line source function, Laplace transformation and the principle of superposition are employed to analytically describe flow behavior in reservoir system and a numerical discrete method is adopted to simulate the complex fracture networks. Main fractures and secondary fractures within the fracture networks are divided into elements with equal length. Gauss elimination method and Stehfest inversion algorithm are employed to calculate the pressure responses. We perform three case studies which contain multistage transverse fracture, orthogonal fracture network and un-orthogonal fracture network. Type curves are plotted and possible flow regimes are identified. With its rapid computational speed, yet capturing the physics of shale gas flow, this semi-analytical approach provides an efficient tool for people from multiple disciplines to perform pressure transient analysis of complex fracture networks in shale gas reservoirs.
机译:页岩气流由多种机制控制,多级液压压裂经常产生复杂的骨折网络。纳入页岩气的各种迁移机制并准确地模拟页岩气藏的复杂骨折网络是非常挑战的。在这项工作中,我们提出了一个半分析模型来研究页岩气藏的压力行为。考虑多种迁移机制,其含有溶解气体吸附剂块状的扩散,从基因块和粘土颗粒的表面解吸,从有机孔和无机孔中同时滑动进入天然骨折系统和自然骨折和液压骨折网络中的达西流动系统。线源功能,LAPPAlt变换和叠加原理用于分析储层系统中的流动行为,采用数值离散方法模拟复杂的裂缝网络。骨折网络内的主要骨折和次级骨折分为相等长度的元件。高斯消除方法和施塞弗斯最反转算法用于计算压力响应。我们进行三种案例研究,含有多级横向骨折,正交骨折网络和非正交骨折网络。绘制型曲线,识别出可能的流动制度。随着其快速计算速度,然而,捕获页岩气流的物理,这种半分析方法为来自多学科的人提供了一种有效的工具,以对页岩气藏复杂骨折网络进行压力瞬态分析。

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