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An equivalent medium model for wave simulation in fractured porous rocks

机译:裂隙多孔岩波模拟的等效介质模型

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Seismic wave propagation in reservoir rocks is often strongly affected by fractures and micropores. Elastic properties of fractured reservoirs are studied using a fractured porous rock model, in which fractures are considered to be embedded in a homogeneous porous background. The paper presents an equivalent media model for fractured porous rocks. Fractures are described in a stress-strain relationship in terms of fracture-induced anisotropy. The equations of poroelasticity are used to describe the background porous matrix and the contents of the fractures are inserted into a matrix. Based on the fractured equivalent-medium theory and Biot's equations of poroelasticity, two sets of porosity are considered in a constitutive equation. The porous matrix permeability and fracture permeability are analysed by using the continuum media seepage theory in equations of motion. We then design a fractured porous equivalent medium and derive the modified effective constants for low-frequency elastic constants due to the presence of fractures. The expressions of elastic constants are concise and are directly related to the properties of the main porous matrix, the inserted fractures and the pore fluid. The phase velocity and attenuation of the fractured porous equivalent media are investigated based on this model. Numerical simulations are performed. We show that the fractures and pores strongly influence wave propagation, induce anisotropy and cause poroelastic behaviour in the wavefields. We observe that the presence of fractures gives rise to changes in phase velocity and attenuation, especially for the slow P-wave in the direction parallel to the fracture plane.
机译:储层岩石中的地震波传播通常受到裂缝和微孔的强烈影响。使用裂缝性多孔岩石模型研究了裂缝性储层的弹性特性,在该模型中,裂缝被认为埋藏在均匀的多孔背景中。本文提出了裂隙多孔岩石的等效介质模型。以应力-应变关系描述了断裂引起的各向异性。孔隙弹性方程用于描述背景多孔基质,并将裂缝内容物插入基质中。基于裂缝等效介质理论和Biot的孔隙弹性方程,本构方程中考虑了两组孔隙度。在运动方程中,使用连续介质渗流理论分析了多孔基质的渗透率和裂缝渗透率。然后,我们设计裂缝多孔等效介质,并得出由于裂缝的存在而对低频弹性常数进行修改的有效常数。弹性常数的表达式简洁明了,并且与主要的多孔基质,插入的裂缝和孔隙流体的性质直接相关。基于该模型研究了裂隙多孔等效介质的相速度和衰减。进行数值模拟。我们表明,裂缝和孔隙强烈影响波传播,引起各向异性并引起波场中的孔隙弹性行为。我们观察到裂缝的存在会引起相速度和衰减的变化,特别是对于平行于裂缝平面的慢P波。

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