A Meshfree Approach for Simulating Fluid Flow in Fractured Porous Media

A. R. Lamb, D. Villarroel-Lamb
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Abstract

This paper presents a meshfree approach for simulating fluid flow in fractured porous media using a novel fracture (FM) mapping approach. Fracture mapping is a continuum-based approach which simulates the flow interaction between the porous matrix and existing fractures via a transfer function. The approach simulates fluid flow through both the matrix and the fractures and is well suited to models containing sparsely spaced, unconnected fractures. The presented approach determines the fluid flow using approximating functions constructed employing the radial point interpolation method (RPIM) meshfree formulation which uses radial basis functions (RBFs) augmented with polynomials. As part of this meshfree scheme a nodal integration procedure has been implemented thereby removing the need for background integration cells that are usually required for meshfree schemes that rely on Gaussian integration. Numerical test results illustrate the methods ability to adequately describe the fluid pressure fields within a fractured porous domain
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裂隙多孔介质中流体流动模拟的无网格方法
本文提出了一种利用新型裂缝映射方法模拟裂缝性多孔介质中流体流动的无网格方法。裂缝映射是一种基于连续体的方法,它通过传递函数模拟多孔基质与现有裂缝之间的流动相互作用。该方法模拟了流体在基质和裂缝中的流动,非常适合于包含稀疏间隔、未连接裂缝的模型。该方法采用径向基函数加多项式的径向点插值法(RPIM)无网格公式构造近似函数来确定流体的流动。作为该无网格方案的一部分,实现了节点积分过程,从而消除了依赖高斯积分的无网格方案通常需要的背景积分单元。数值试验结果表明,该方法能够很好地描述裂缝性孔隙区域内的流体压力场
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