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An Overview of Iterative Coupling Between Geomechanical Deformation and Reservoir Flow

机译:地质力学变形与储层流动耦合概述

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Recently,there is a strong interest in the modelling of reservoir fluid flow with geomechanical deformation.With the help of geomechanics,many physical phenomena can be explained,e.g.reservoir compaction and subsidence,casing failure or pore collapse.Several methods for coupling geomechanics to fluid flow in the reservoir have been proposed: fully coupled,iterative coupled and explicit coupled methods. The iterative coupled method has proven to be the most effective approach.However,no paper has discussed this method in detail from a reservoir engineering perspective.In this paper,the iterative coupling method is described step by step from the basic equations for geomechanics and reservoir flow to the coupling technique through porosity and permeability.This description is aimed at reservoir engineers with little background in geomechanics.A number of examples using different nonlinear constitutive models s ch as elasto- plasticity model,elastoplastic cap model and dilation- recompaction model are used to illustrae the importance of ncluding geomechanics in reservoir simulation
机译:近来,在与地质力学deformation.With地质力学的帮助下储层流体流的建模了浓厚的兴趣,许多物理现象可以解释,egreservoir压实和沉降,套管损坏或孔collapse.Several方法用于耦合地质力学流体在储存器流已经提出:完全耦合,迭代耦合和显式耦合的方法。该迭代方法耦合已被证明是最有效的approach.However,没有全文perspective.In本文从储工程讨论了这一方法详细地,迭代耦合方法从基本方程地质力学储层描述步步流通过的孔隙度和permeability.This描述偶联技术的目的是在与实例geomechanics.A数少背景油藏工程师使用不同的非线性构模型小号CH如elasto-塑性模型,弹塑性帽模型和dilation-再压实模型被用于到illustrae ncluding地质力学油藏模拟的重要性

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