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声波在非均质二维裂隙多孔介质中的传播

Acoustic wave propagation in heterogeneous two-dimensional fractured porous media.

作者信息

Hamzehpour Hossein, Asgari Mojgan, Sahimi Muhammad

机构信息

Department of Physics, K. N. Toosi University of Technology, Tehran 15875-4416, Iran.

School of Physics, Institute for Research in Fundamental Sciences (IPM), Tehran 19395-5531, Iran.

出版信息

Phys Rev E. 2016 Jun;93(6):063305. doi: 10.1103/PhysRevE.93.063305. Epub 2016 Jun 13.

DOI:10.1103/PhysRevE.93.063305
PMID:27415385
Abstract

This paper addresses an important fundamental question: the differences between wave propagation in fractured porous media with a uniform matrix (constant bulk modulus) and those in which the matrix is heterogeneous with its bulk modulus distributed spatially. The analysis of extensive experimental data [Phys. Rev. E 71, 046301 (2005)PLEEE81539-375510.1103/PhysRevE.71.046301] indicated that such distributions are self-affine and induce correlations at all the relevant length scales. The comparison is important from a practical view point because in many of the traditional models of fractured rock, particularly those that are used to study wave propagation or fit some data, the matrix is assumed to be uniform. Using extensive numerical simulation of propagation of acoustic waves, we present strong evidence indicating that the waves' amplitude in a fractured porous medium with a heterogeneous matrix decays exponentially with the distance from the source. This is in sharp contrast with a fractured porous medium with a uniform matrix in which not only the waves' amplitude decays with the distance as a stretched exponential function, but the exponent that characterizes the function is also dependent upon the fracture density. The localization length depends on the correlations in the spatial distribution of the bulk modulus, as well as the fracture density. The mean speed of the waves varies linearly with the fractures' mean orientation.

摘要

本文探讨了一个重要的基本问题

在具有均匀基质(恒定体积模量)的裂隙多孔介质中波传播与基质体积模量呈空间分布的非均匀裂隙多孔介质中波传播之间的差异。对大量实验数据的分析[《物理评论E》71, 046301 (2005年)]表明,这种分布是自仿射的,并在所有相关长度尺度上产生相关性。从实际角度来看,这种比较很重要,因为在许多传统的裂隙岩石模型中,特别是那些用于研究波传播或拟合某些数据的模型,都假定基质是均匀的。通过对声波传播进行广泛的数值模拟,我们给出了有力证据,表明在具有非均匀基质的裂隙多孔介质中,波的振幅随离源距离呈指数衰减。这与具有均匀基质的裂隙多孔介质形成鲜明对比,在均匀基质的裂隙多孔介质中,不仅波的振幅随距离以拉伸指数函数衰减,而且表征该函数的指数还取决于裂隙密度。定位长度取决于体积模量空间分布中的相关性以及裂隙密度。波的平均速度随裂隙的平均取向呈线性变化。

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引用本文的文献

1
A Numerical Study of Elastic Wave Arrival Behavior in a Naturally Fractured Rock Based on a Combined Displacement Discontinuity-Discrete Fracture Network Model.基于位移不连续-离散裂缝网络组合模型的天然裂缝岩石中弹性波到达行为的数值研究
Rock Mech Rock Eng. 2023;56(4):2717-2736. doi: 10.1007/s00603-022-03180-4. Epub 2022 Dec 19.