Accurate P-wave reflection and transmission coefficients for non-welded interface incorporating elasto-plastic deformation

IF 1.2 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Annals of Geophysics Pub Date : 2023-11-06 DOI:10.4401/ag-8909
Zihang Fan, Zhaoyun Zong, Fubin Chen
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Abstract

P-wave reflection and transmission coefficients for non-welded interface play crucial roles in broad practical engineering productions, involving fracture properties prediction and seismic inversion. However, the existing reflection coefficient equations for non-welded interface in elasto-plastic media are seldom studied, although the elasto-plastic deformation is frequently encountered in the Earth’s subsurface due to artificial and tectonic activities. In this study, we proposed the accurate reflection and transmission coefficients equation for a non-welded interface embedded in an elasto-plastic deformed medium based on the elasto-plastic acoustoelastic and linear-slip theory. In detail, this paper uses elasto-plastic acoustoelastic theory to derive the reflection and transmission coefficients equation. The reflection and transmission coefficients matrix are solved using the linear-slip theory as the boundary condition. Moreover, we use the hardening parameter and plastic deformation to represent the plastic properties of the rock, which is a function of stress and plastic deformation. Through Numerical analysis, the deformation caused by static stress has significantly changed the amplitude and the slope of the reflection and transmission coefficients amplitude. As the stress increases, the rock’s velocity becomes higher, and all reflection and transmission coefficients (i.e., RPP, RPS, TPP, TPS) abruptly change at the critical angle. Furthermore, with the increase in plastic deformation, the critical angle of the incident P-wave and the hardening parameter becomes larger than the unstressed state. The non-welded interface exhibits a low-pass frequency filter for reflected SV-waves and a high-pass frequency filter for reflected P-waves and transmitted P and SV waves. In addition, we can observe that static vertical stress can weaken the anomalous reflections caused by non-welded formations, but the effect is insignificant. On the other hand, the effect of fracture normal compliance to reflection and transmission is detailly investigated. When N<2.5*10-10(MPa-1), The non-welded interface is close to the welded interface, while N>2.5*10-5(MPa-1), the non-welded interface is close to the solid-air interface.
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考虑弹塑性变形的非焊接界面的精确纵波反射和透射系数
非焊接界面纵波反射和透射系数在广泛的实际工程生产中起着至关重要的作用,涉及裂缝性质预测和地震反演。然而,尽管由于人为活动和构造活动,地球地下经常遇到弹塑性变形,但现有的弹塑性介质中非焊接界面反射系数方程的研究却很少。本文基于弹塑性声弹理论和线滑移理论,提出了弹塑性变形介质中非焊接界面的精确反射和透射系数方程。利用弹塑性声弹性理论推导了反射系数和透射系数方程。采用线性滑移理论作为边界条件,求解了反射系数和透射系数矩阵。此外,我们使用硬化参数和塑性变形来表示岩石的塑性特性,这是应力和塑性变形的函数。通过数值分析,静应力引起的变形幅度和反射透射系数幅度的斜率发生了明显的变化。随着应力的增加,岩石速度增大,所有反射和透射系数(即RPP、RPS、TPP、TPS)在临界角处发生突变。随着塑性变形的增大,入射纵波的临界角和硬化参数均大于无应力状态。非焊接界面对反射的SV波表现出低通频率滤波器,对反射的P波和透射的P波和SV波表现出高通频率滤波器。此外,我们可以观察到静垂直应力可以减弱非焊接地层引起的异常反射,但效果不显著。另一方面,详细研究了裂缝法向柔度对反射透射的影响。当N>2.5* 10-10(MPa-1)时,非焊接界面靠近焊接界面,而当N>2.5*10-5(MPa-1)时,非焊接界面靠近固气界面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Annals of Geophysics
Annals of Geophysics 地学-地球化学与地球物理
CiteScore
2.40
自引率
0.00%
发文量
38
审稿时长
4-8 weeks
期刊介绍: Annals of Geophysics is an international, peer-reviewed, open-access, online journal. Annals of Geophysics welcomes contributions on primary research on Seismology, Geodesy, Volcanology, Physics and Chemistry of the Earth, Oceanography and Climatology, Geomagnetism and Paleomagnetism, Geodynamics and Tectonophysics, Physics and Chemistry of the Atmosphere. It provides: -Open-access, freely accessible online (authors retain copyright) -Fast publication times -Peer review by expert, practicing researchers -Free of charge publication -Post-publication tools to indicate quality and impact -Worldwide media coverage. Annals of Geophysics is published by Istituto Nazionale di Geofisica e Vulcanologia (INGV), nonprofit public research institution.
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