East-west crustal structure and "down-bowing" Moho under the northern Tibet revealed by wide-angle seismic profile

We recognized 6 sets of reflecting P- and S-wave events from Moho and other interfaces within the crust, respectively, with the wide-angle seismic data acquired from 510 km-long Selincuo-Ya'anduo profile in the northern Tibet, fitted the observed events with forward modeling, and interpreted cr...

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Published inScience China. Earth sciences Vol. 45; no. 6; pp. 550 - 558
Main Authors Zhang, Zhongjie, Li, Yingkang, Wang, Guangjie, Teng, Jiwen, Klemperer, S., Li, Jingwei, Fan, Jinyi, Chen, Yun
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Nature B.V 01.06.2002
Subjects
Online AccessGet full text
ISSN1674-7313
1006-9313
1869-1897
1862-2801
DOI10.1360/02yd9057

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Abstract We recognized 6 sets of reflecting P- and S-wave events from Moho and other interfaces within the crust, respectively, with the wide-angle seismic data acquired from 510 km-long Selincuo-Ya'anduo profile in the northern Tibet, fitted the observed events with forward modeling, and interpreted crustal structure of P- and S-wave velocities and Poisson's ratio under the profile. The results demonstrate that the crustal structure between Yarlungzangbo and Bangong-Nujiang sutures changes abruptly, and the crust is the thickest at the middle part of the profile with thickness of 80 km or more. The "down-bowing" Moho is the striking feature for the crustal variation along the west-east direction. The Moho uplifts with steps, and the uplifting rate westward is greater than that eastward. The heterogeneity of P- and S-wave velocities exists both vertically and horizontally, and one lower velocity layer (LVL) exists with the depth range of 27-34 km and the thickness range of 5-7 km. For the upper crust, Poisson's ratio is the lowest at the middle part of the profile; for the lower crust, the Poisson's ratio at the east segment is lower than that at west segment, which means that the crustal rigidity for the upper crust is different from the lower crust, and the lower crust under the east segment of the profile is more ductile. We infer that the substance in the lower crust endured eastward flow along with the collision between Eurasian and Indian plates, and the "down-bowing" Moho is attributable to the multi-phase E-W tectonic processes.
AbstractList We recognized 6 sets of reflecting P- and S-wave events from Moho and other interfaces within the crust, respectively, with the wide-angle seismic data acquired from 510 km-long Selincuo-Ya’anduo profile in the northern Tibet, fitted the observed events with forward modeling, and interpreted crustal structure of P- and S-wave velocities and Poisson’s ratio under the profile. The results demonstrate that the crustal structure between Yarlungzangbo and Bangong-Nujiang sutures changes abruptly, and the crust is the thickest at the middle part of the profile with thickness of 80 km or more. The “down-bowing” Moho is the striking feature for the crustal variation along the west-east direction. The Moho uplifts with steps, and the uplifting rate westward is greater than that eastward. The heterogeneity of P- and S-wave velocities exists both vertically and horizontally, and one lower velocity layer (LVL) exists with the depth range of 27–34 km and the thickness range of 5–7 km. For the upper crust, Poisson’s ratio is the lowest at the middle part of the profile; for the lower crust, the Poisson’s ratio at the east segment is lower than that at west segment, which means that the crustal rigidity for the upper crust is different from the lower crust, and the lower crust under the east segment of the profile is more ductile. We infer that the substance in the lower crust endured eastward flow along with the collision between Eurasian and Indian plates, and the “down-bowing” Moho is attributable to the multi-phase E-W tectonic processes.
ArticleNumber 550
Author ZHANG Zhongjie(张中杰) LI Yingkang(李英康) WANG Guangjie(王光杰) TENG Jiwen(滕吉文) S.Klemperer LI Jingwei(李敬卫) FAN Jinyi(范进义) CHEN Yun(陈赟)
AuthorAffiliation Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100101, China Institute of 562, Academy of Geological Sciences, Ministry of Land and Resources, Yanjiao 101601, China Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100101, China Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100101, China Department of Geophysics, Stanford University, Stanford CA94305-2215, USA Institute of 562, Academy of Geological Sciences, Ministry of Land and Resources, Yanjiao 101601, China Institute of 562, Academy of Geological Sciences, Ministry of Land and Resources, Yanjiao 101601, China Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100101, China
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  issue: 5293
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  publication-title: Science
  doi: 10.1126/science.274.5293.1692
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Snippet We recognized 6 sets of reflecting P- and S-wave events from Moho and other interfaces within the crust, respectively, with the wide-angle seismic data...
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chongqing
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SubjectTerms "down-bowing"
and
Bowing
Crustal structure
Data acquisition
eastward
flow
Heterogeneity
Interfaces
materials
Moho
northern
Oceanic crust
P waves
Plate tectonics
Poisson's
Poisson's ratio
profile
ratio
Rigidity
S waves
S-wave
Segments
seismic
Seismic analysis
Seismic data
Seismic profiles
Seismic velocities
Seismological data
Tectonic processes
Tectonics
Thickness
Tibet
velocity
Wave velocity
wide-angle
Title East-west crustal structure and "down-bowing" Moho under the northern Tibet revealed by wide-angle seismic profile
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Volume 45
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