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机构地区:[1]中国石油大学(华东)地球科学与技术学院,中国山东青岛266580 [2]中国石油勘探开发研究院西北分院,中国兰州730020
出 处:《地震学报》2016年第2期244-258,328,共15页Acta Seismologica Sinica
基 金:国家自然科学基金(41374123)资助
摘 要:本文建立了无分裂复频移卷积完全匹配层(CFS-CPML)吸收边界条件,利用交错网格下的高精度有限差分格式对黏弹性介质中的勒夫波场进行了数值模拟;分析了松弛机制个数对品质因子拟合精度的影响,验证了CFS-CPML边界条件对大角度掠射波的吸收效果.数值结果表明:本文方法所使用的5个松弛机制和空间4阶差分精度,即可在保证计算效率的前提下满足目前理论研究的需要;随着品质因子的减小,频散特征曲线的相速度逐渐向增高的方向偏离理论频散特征曲线的相速度,且各模式的高频能量也随之减弱.本文结果可为发展高精度的面波反演方法提供必要的理论依据.Numerical simulation is an important way to study the characteristics of seismic wavefield. In this paper, we established the unsplit complex frequency shifted eonvolutional perfectly matched layer (CFS-CPML) absorbing boundary condition, and staggered grid and high precision finite difference were used to simulate Love wavefield in viscoelastic medium. And then we analyzed the influence of the number of relaxation mechanisms on the Q value fitting and verified the absorbing effect of CFS-CPML boundary conditions on the waves with large incident angles. The numerical results show that the requirements of the present theoretical wavefield study can be met with higher calculation efficiency if five relaxation mechanisms and finite difference with spatial four-order accuracy are selected for this method. At the same time, the phase velocity of dispersion curve gradually deviates from that of the theoretical curve with the decrease of quality factor, and the high frequency energy of each pattern also weakens. The study provided certain theoretical basis for high precision surface wave inversion method.
关 键 词:勒夫波 正演模拟 复频移卷积完全匹配层(CFS-CPML) 吸收边界条件 频散特征
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