HR: 0800h
AN: T11C-1269 [Abstracts]
TI: Joint Inversion Of Local And Teleseismic Data For The Crust And Mantle Structure Of The Chinese Capital
Region
AU: Huang, J
EM: hjl@seis.ac.cn
AF: Center for Analysis and Prediction, China Seismologival Bureau, 63 Fuxing Ave., Beijing, 100036
China
AU: * Zhao, D
EM: zhao@sci.ehime-u.ac.jp
AF: Geodynamic Research Center, Ehime University, Bunkyo-cho 2-5, Matsuyama, 7908577
Japan
AB:
The Chinese Capital (Beijing) region is located in the intersection of the Yanshan and Taihangshan uplifts in North China.
It is one of the regions with the strongest continental earthquakes in the world such as the 1976 Tangshan earthquake (M 7.8)
which killed 240,000 people. Hence the determination of the crust and mantle structure of this region is very important for
understanding the regional tectonics and for the reduction of earthquake hazards. Since October 2001 a new digital seismic
network with 107 stations has been installed in this region, which is the most advanced and densest regional digital seismic
network in mainland China. In this study we used 48750 P-wave arrival times from 2973 local events and 12249 travel time
residuals from 234 teleseismic events recorded by this new digital seismic network. We adopted the local and teleseismic
joint inversion approach by Zhao et al. [1994] and obtained a high-resolution three-dimensional (3-D) P-wave velocity model
of the crust and mantle down to a depth of 1000 km. The resolution is 50 km in the horizontal direction, and in depth it is
4-17 km in the crust and 30-50 km in the mantle. The complex morphology of the Conrad and Moho discontinuities was taken into
account in the tomographic inversions. Our 3-D velocity model provides new insights into the geological structure and
tectonics of this region. The velocity images of the upper crust reflect well the surface geological, topographic and
lithological features. In the North China Basin, the depression and uplift areas are imaged as slow and fast velocity belts
oriented in NE-SW direction. The trend of velocity anomalies is the same as that of major faults and tectonics. Paleozoic
strata and Pre-Cambrian basement rocks outcrop widely in the Taihangshan and Yanshan uplift areas, which exhibit strong and
broad high-velocity(high-V) anomalies in our tomographic images, while the Quaternary intermountain basins show up as small
low-velocity(low-V) anomalies. Our tomographic images of the deep crust and upper mantle layers also show different velocity
features under different tectonic units. In the Yanshan uplift, a high-V patch is visible from the crust to about 300 km
depth, which may reflect that the Yanshan uplift is a stable block without strong earthquakes. In the North China Basin,
especially around Beijing, Tianjin and Tangshan,broad low-V anomalies are visible in the lower crust and at depths of 50но100
km. Beneath the Bohai Bay, low-V anomalies exist and extend down to about 120 km depth. These results suggest that the
lithosphere becomes thinner in this region. From the Taihangshan uplift to the Shanxi rift low-V anomalies exist from the
uppermost mantle to about 300 km depth. In this region, lava rocks are distributed broadly and the Datong volcano is located.
In addition, most of the large earthquakes, such as the 1976 Tangshan earthquake and the 1679 Sanhe earthquake (M 8.0),
generally occurred in high-V areas in the upper to middle crust. However, in the lower crust and uppermost mantle under the
source zones of the large earthquakes, low-V and high-conductivity anomalies exist. This result suggests the occurrence of
strong earthquakes is related to the deep structure and processes in the deep crust and upper mantle.
DE: 8180 Tomography
DE: 9320 Asia
DE: 7218 Lithosphere and upper mantle
DE: 1744 Tectonophysics
DE: 0905 Continental structures (8109, 8110)
SC: Tectonophysics [T]
MN: 2004 AGU Fall Meeting