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Three-Dimensional P-Wave Velocity Structure of the Crust of North China

Three-Dimensional P-Wave Velocity Structure of the Crust of North China

作     者:魏文博 叶高峰 李艳军 金胜 邓明 景建恩 

作者机构:State Key Laboratory of Geological Processes and Mineral Resources Geo-detection LaboratoryMinistry of Education School of Geophysics and Information TechnologyChina University of GeosciencesBeijing 100083China 

出 版 物:《Journal of China University of Geosciences》 (中国地质大学学报(英文版))

年 卷 期:2007年第18卷第3期

页      面:257-268页

核心收录:

学科分类:081801[工学-矿产普查与勘探] 081802[工学-地球探测与信息技术] 0709[理学-地质学] 08[工学] 0708[理学-地球物理学] 0818[工学-地质资源与地质工程] 0704[理学-天文学] 

基  金:This paper is supported by the National Natural Science Foundation of China (No.40434010) the Focused Subject Program of Beijing (No. XK104910589) 

主  题:North China crust deep seismic sounding three-dimensional P-wave velocity structure 

摘      要:Since the Xingtai (邢台) earthquake in 1966, China Earthquake Administration has carried out a survey campaign along more than thirty deep seismic sounding (DSS) profiles altogether about twenty thousand kilometers long in North China to study the velocity structure of the crust and the upper mantle in this region, and has obtained a great number of research findings. However, these researches have not provided a 3D velocity structure model of the crust of North China and cannot provide seismic evidence for the study of the deep tectonic characteristics of the crust of the whole region. Hence, based on the information from the published data of the DSS profiles, we have chosen 14 profiles to obtain a 3D velocity structure model of North China using the vectorization function of the GIS software (Arc/Info) and the Kriging data gridding method. With this velocity structure model, we have drawn the following conclusions: (1) The P-wave velocity of the uppermost crust of North China changes dramatically, exhibiting a complicated velocity structure in plane view. It can be divided into three velocity zones mainly trending towards north-west. In the research area, the lowest-velocity zones lie in the Haihe (海河) plain and Bohai (渤海) Bay. Although the geological structure of the sedimentary overburden in the study area is somewhat inherited by the upper crust, there are still several differences between them. (2) Generally, the P-wave velocity of the crust increases with depth in the study area, but there still exists local velocity reversion. In the east, low-velocity anomalies of the Haihe plain gradually disappear with increasing depth, and the Shanxi (山西) graben in the west is mainly characterized by relatively low velocity anomalies. Bounded by the Taihang (太行) Mountains, the eastern and western parts differ in structural trend of stratum above the crystalline basement. The structural trend of the Huanghuaihai (黄淮海) block in the east is mainly north-east, while that of t

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