Waveform inversion of S-wave velocity model in the central Qiangtang in North Tibet and its geological implications

被引:5
作者
Wu Wei [1 ]
Liu Qi-Yuan [2 ]
He Ri-Zheng [1 ]
Qu Zhong-Dang [1 ]
机构
[1] Key Lab Earth Probe & Geodynam, State Key Lab Continental Tecton & Dynam, y, Beijing 100037, Peoples R China
[2] China Earthquake Adm, Inst Geol, State Key Lab Earthquake Dynam, Beijing 100029, Peoples R China
来源
CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION | 2017年 / 60卷 / 03期
关键词
Qiangtang basin; Sedimentary depression; Receiver function nonlinear inversion; Moho depth; Low velocity layers; UPPER-MANTLE BENEATH; CRUSTAL STRUCTURE; SOUTHERN TIBET; TECTONIC EVOLUTION; RECEIVER STRUCTURE; METAMORPHIC BELT; PLATEAU; LITHOSPHERE; TOMOGRAPHY; TOPOGRAPHY;
D O I
10.6038/cjg20170309
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The Qiangtang basin is the largest Mesozoic-to-Cenozoic marine sediment basin in China. The central metamorphic belt in central Qiangtang divides it into South Qiangtang basin and North Qiangtang basin. This study conducted a series of teleseismic receiver functions across the Qiangtang basin. The teleseismic data came from a temporary seismic array in Qiangtang basin. High-quality receiver functions were picked up from 738 teleseismic traces of 338 teleseismic events recorded by 27 stations along 88. 5 degrees E in 2009-2010. 1-D S-wave velocity model was calculated by the nonlinear inversion of conjugate gradients algorithm for the complex spectrum ratios of receiver function. Because the method made full use of amplitude ratio between the vertical and radial components of the receiver function in time domain, the final model from the method is completely independent of the initial model parameters. The velocity model indicated that the Moho beneath Qiangtang area rises slowly from south to north. The South Qiangtang basin has an average Moho depth of 68 km. In the North Qiangtang basin the average Moho depth is 60 km, which are in accordance with H-kappa stack and deep seismic reflection results. There is a continuous low velocity layer beneath the North Qiangtang basin. While in the South Qiangtang basin the low velocity area is discontinuous, which causes hot springs along thrust faults. The sedimentary thickness was determined by deep seismic reflection and Poisson's ratio. There is one large sedimentary basin in the South Qiangtang basin and two in the North. Geological survey suggested that the two depressions in North Qiangtang, Longwei Co and Baitan Lake, have pretty good outlook in petroleum exploration.
引用
收藏
页码:941 / 952
页数:12
相关论文
共 76 条
[11]  
Deng W M, 1996, QINGHAI PROVINCE ACT, V15, P289
[12]   Postcollisional calc-alkaline lavas and xenoliths from the southern Qiangtang terrane, central Tibet [J].
Ding, Lin ;
Kapp, Paul ;
Yue, Yahui ;
Lai, Qingzhou .
EARTH AND PLANETARY SCIENCE LETTERS, 2007, 254 (1-2) :28-38
[13]   DETERMINATION OF EARTHQUAKE SOURCE PARAMETERS FROM WAVEFORM DATA FOR STUDIES OF GLOBAL AND REGIONAL SEISMICITY [J].
DZIEWONSKI, AM ;
CHOU, TA ;
WOODHOUSE, JH .
JOURNAL OF GEOPHYSICAL RESEARCH, 1981, 86 (NB4) :2825-2852
[14]  
Feng Q., 1997, Bull. Geol. Sci. Technol., V16, P59
[15]  
[付修根 Fu Xiugen], 2010, [成都理工大学学报. 自然科学版, Journal of Chengdu University of Technology. Science & Technonogy Edition], V37, P605
[16]   Geophysical survey and geodynamic study of crust and upper mantle in the Qinghai-Tibet Plateau [J].
Gao, R ;
Lu, ZW ;
Li, QS ;
Guan, Y ;
Zhang, JS ;
He, RZ ;
Huang, LY .
EPISODES, 2005, 28 (04) :263-273
[17]   New constraints on crustal structure and Moho topography in Central Tibet revealed by SinoProbe deep seismic reflection profiling [J].
Gao, Rui ;
Chen, Chen ;
Lu, Zhanwu ;
Brown, Larry D. ;
Xiong, Xiaosong ;
Li, Wenhui ;
Deng, Gong .
TECTONOPHYSICS, 2013, 606 :160-170
[18]  
Gao X, 2005, CHINESE J GEOPHYS-CH, V48, P591
[19]  
Guo X F, 1990, ACTA GEOSCIENTICA SI, V11, P191
[20]   Hot and dry deep crustal xenoliths from Tibet [J].
Hacker, BR ;
Gnos, E ;
Ratschbacher, L ;
Grove, M ;
McWilliams, M ;
Sobolev, SV ;
Wan, J ;
Wu, ZH .
SCIENCE, 2000, 287 (5462) :2463-2466