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P-wave tomography of crust and upper mantle under Southern California: Influence of topography of Moho discontinuity
作者姓名:黄金莉  赵大鹏
作者单位:Center for Analysis and Prediction,China Seismological Bureau,Beijing 100036,China,Geodynamics Research Center,Ehime University,Matsuyama 790,Japan
基金项目:Japan Society for Promotion of Science (11440134) and Chinese State Key Program of Basic Research on Mecha-nisms and Predictions of Strong Continental Earthquakes (G19980407)
摘    要:We use 146 422 P-wave arrival times from 6 347 local earthquakes recorded by the Southern California SeismicNetwork to determine a detailed three-dimensional P-wave velocity structure at 0~35 km depth. We have takeninto account the Moho depth variations, which were obtained by seismological methods. Checkerboard tests sug-gest that our inversion results are reliable. Our models provide new information on regional geological structuresof Southern California. At shallow depths P-wave velocity structure correlates with surface geological features andexpresses well variations of surface topography of the mountains and basins. The velocity structure at each layer ischaracterized by block structures bounded by large faults. Ventura Basin, Los Angeles Basin, Mojave Desert, Pen-insular Ranges, San Joaquin Valley, Sierra Nevada, and Salton Trough show respectively all-round block. SanAndreas Fault becomes an obvious boundary of the region. To its southwest, the velocity is higher, and there arestrong heterogeneity and deeper seismicity; but to its northeast, the velocity is lower and shows less variation thanto the southwest, the seismicity is shallower. To investigate the effect of the Moho geometry we conducted inver-sions for two cases: one for flat Moho geometry, another for a Moho with lateral depth variations. We found thatthe topography of the Moho greatly affects the velocity structure of the middle and lower crust. When the Mohotopography is considered, a more reasonable tomographic result can be obtained and the resulting 3-D velocitymodel fits the data better.

收稿时间:31 July 2002
修稿时间:5 December 2002

P-wave tomography of crust and upper mantle under Southern California: Influence of topography of Moho discontinuity
Huang Jin-li,and Zhao Da-peng.P-wave tomography of crust and upper mantle under Southern California: Influence of topography of Moho discontinuity[J].Acta Seismologica Sinica(English Edition),2003,16(6):577-587.
Authors:Huang Jin-li  and Zhao Da-peng
Affiliation:1. Center for Analysis and Prediction, China Seismological Bureau, Beijing 100036, China
2. Geodynamics Research Center, Ehime University, Matsuyama 790, Japan
Abstract:We use 146 422 P-wave arrival times from 6 347 local earthquakes recorded by the Southern California Seismic Network to determine a detailed three-dimensional P-wave velocity structure at 0~35 km depth. We have taken into account the Moho depth variations, which were obtained by seismological methods. Checkerboard tests sug-gest that our inversion results are reliable. Our models provide new information on regional geological structures of Southern California. At shallow depths P-wave velocity structure correlates with surface geological features and expresses well variations of surface topography of the mountains and basins. The velocity structure at each layer is characterized by block structures bounded by large faults. Ventura Basin, Los Angeles Basin, Mojave Desert, Pen-insular Ranges, San Joaquin Valley, Sierra Nevada, and Salton Trough show respectively all-round block. San Andreas Fault becomes an obvious boundary of the region. To its southwest, the velocity is higher, and there are strong heterogeneity and deeper seismicity; but to its northeast, the velocity is lower and shows less variation than to the southwest, the seismicity is shallower. To investigate the effect of the Moho geometry we conducted inver-sions for two cases: one for flat Moho geometry, another for a Moho with lateral depth variations. We found that the topography of the Moho greatly affects the velocity structure of the middle and lower crust. When the Moho topography is considered, a more reasonable tomographic result can be obtained and the resulting 3-D velocity model fits the data better.
Keywords:Southern California Moho discontinuity 3-D P-wave velocity structure block feature seismicity
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