首页> 外文期刊>The Journal of the Acoustical Society of America >Seismic wave attenuation and dispersion due to wave-induced fluid flow in rocks with strong permeability fluctuations
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Seismic wave attenuation and dispersion due to wave-induced fluid flow in rocks with strong permeability fluctuations

机译:渗透率波动较大的岩石中由于波浪引起的流体流动引起的地震波衰减和弥散

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摘要

Oscillatory fluid movements in heterogeneous porous rocks induced by seismic waves cause dissipation of wave field energy. The resulting seismic signature depends not only on the rock compressibility distribution, but also on a statistically averaged permeability. This so-called equivalent seismic permeability does not, however, coincide with the respective equivalent flow permeability. While this issue has been analyzed for one-dimensional (1D) media, the corresponding two-dimensional (2D) and three-dimensional (3D) cases remain unexplored. In this work, this topic is analyzed for 2D random medium realizations having strong permeability fluctuations. With this objective, oscillatory compressibility simulations based on the quasi-static poroelasticity equations are performed. Numerical analysis shows that strong permeability fluctuations diminish the magnitude of attenuation and velocity dispersion due to fluid flow, while the frequency range where these effects are significant gets broader. By comparing the acoustic responses obtained using different permeability averages, it is also shown that at very low frequencies the equivalent seismic permeability is similar to the equivalent flow permeability, while for very high frequencies this parameter approaches the arithmetic average of the permeability field. These seemingly generic findings have potentially important implications with regard to the estimation of equivalent flow permeability from seismic data.
机译:地震波引起的非均质多孔岩石中的振荡流体运动引起波场能量的耗散。产生的地震信号不仅取决于岩石的可压缩性分布,而且还取决于统计上的平均渗透率。但是,这种所谓的等效地震渗透率并不与相应的等效流动渗透率一致。尽管已针对一维(1D)介质分析了此问题,但仍未探索相应的二维(2D)和三维(3D)情况。在这项工作中,将针对具有强渗透性波动的2D随机介质实现对该主题进行分析。以此目标为基础,进行了基于准静态多孔弹性方程的振荡可压缩性模拟。数值分析表明,强大的渗透率波动会减小由于流体流动引起的衰减和速度弥散的幅度,而影响显着的频率范围会变宽。通过比较使用不同渗透率平均值获得的声学响应,还显示出在非常低的频率下,等效地震渗透率类似于等效的流动渗透率,而对于非常高的频率,此参数接近渗透率场的算术平均值。这些看似通用的发现对于根据地震数据估算等效渗透率具有潜在的重要意义。

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