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A staggered-grid high-order finite-difference modeling for elastic wave field in arbitrary tilt anisotropic media
作者姓名:裴正林  王尚旭
作者单位:University of Petroleum,Key Lab of Geophysical Exploration of CNPC,Beijing 100083,China,University of Petroleum,Key Lab of Geophysical Exploration of CNPC,Beijing 100083,China
基金项目:Fund Project of Key Lab of Geophysical Exploration of China National Petroleum Corporation (GPR0408).
摘    要:Introduction The real Earth usually presents anisotropy. Therefore, it is of theoretical and practical sig- nificance for many fields as oil and gas, seismic exploration and production, earthquake prediction, detection of deep structure and so on to study on seismic wave theory, numerical simulation method and its applications in the anisotropic media (Crampin, 1981, 1984; Crampin et al, 1986; Hudson et al, 1996; Liu et al, 1997; Thomsen, 1986, 1995; TENG et al, 1992; HE and ZHANG, 1996)…

收稿时间:13 May 2004
修稿时间:17 September 2004

A staggered-grid high-order finite-difference modeling for elastic wave field in arbitrary tilt anisotropic media
PEI Zheng-lin,WANG Shang-xu.A staggered-grid high-order finite-difference modeling for elastic wave field in arbitrary tilt anisotropic media[J].Acta Seismologica Sinica(English Edition),2005,18(4):471-482.
Authors:PEI Zheng-lin  WANG Shang-xu
Institution:University of Petroleum, Key Lab of Geophysical Exploration of CNPC, Beijing 100083, China
Abstract:The paper presents a staggered-grid any even-order accurate finite-difference scheme for two-dimensional (2D),three-component (3C), first-order stress-velocity elastic wave equation and its stability condition in the arbitrary tilt anisotropic media; and derives a perfectly matched absorbing layer (PML) boundary condition and its staggered-grid any even-order accurate difference scheme in the 2D arbitrary tilt anisotropic media. The results of numerical modeling indicate that the modeling precision is high, the calculation efficiency is satisfactory and the absorbing boundary condition is better. The wave-front shapes of elastic waves are complex in the anisotropic media, and the velocity of qP wave is not always faster than that of qS wave. The wave-front triplication of qS wave and its events in both reflected domain and propagated domain, which are not commonly hyperbola, is a common phenomenon. When the symmetry axis is tilted in the TI media, the phenomenon of S-wave splitting is clearly observed in the snaps of three components and synthetic seismograms, and the events of all kinds of waves are asymmetric.
Keywords:anisotropic media  elastic wave  staggered-grid  high-order finite-difference  PML boundary condition
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