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Electrical Structure and Fault Features of Crust and Upper Mantle beneath the Western Margin of the Qinghai-Tibet Plateau:Evidence from the Magnetotelluric Survey along Zhada-Quanshui Lake Profile 被引量:3

Electrical Structure and Fault Features of Crust and Upper Mantle beneath the Western Margin of the Qinghai-Tibet Plateau:Evidence from the Magnetotelluric Survey along Zhada-Quanshui Lake Profile
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摘要 The magnetotelluric (MT) survey along the Zhada (札达)-Quanshui (泉水) Lake profile on the western margin of the Qinghai (青海)-Tibet plateau shows that the study area is divided into three tectonic provinces by the Yalung Tsangpo and Bangong (班公)-Nujiang (怒江) sutures. From south to north these are the Himalayan terrane, Gangdise terrane, and Qiangtang (羌塘) terrane. For the study area, there are widespread high-conductivity layers in the mid and lower crust, the top layers of which fluctuate intensively. The high-conductivity layer within the Gangdise terrane is deeper than those within the Qiangtang terrane and the Himalaya terrane, and the deepest high-conductivity layer is to the south of the Bangong-Nujiang suture. The top surface of the high-conductivity layer in the south of the Bangong-Nujiang suture is about 20 km lower than that in the north of it. The high-conductivity layer within the Gangdise terrane dips toward north and there are two high-conductivity layers within the crust of the southern Qiangtang terrane. In the upper crust along the profile, there are groups of lateral electrical gradient zones or distortion zones of different scales and occurrence indicating the distribution of faults and sutures along the profile. According to the electrical structure, the structural characteristics and space distribution of the Yalung Tsangpo suture, Bangong.Nujiang suture, and the major faults of Longmucuo (龙木错) and Geerzangbu are inferred. The magnetotelluric (MT) survey along the Zhada (札达)-Quanshui (泉水) Lake profile on the western margin of the Qinghai (青海)-Tibet plateau shows that the study area is divided into three tectonic provinces by the Yalung Tsangpo and Bangong (班公)-Nujiang (怒江) sutures. From south to north these are the Himalayan terrane, Gangdise terrane, and Qiangtang (羌塘) terrane. For the study area, there are widespread high-conductivity layers in the mid and lower crust, the top layers of which fluctuate intensively. The high-conductivity layer within the Gangdise terrane is deeper than those within the Qiangtang terrane and the Himalaya terrane, and the deepest high-conductivity layer is to the south of the Bangong-Nujiang suture. The top surface of the high-conductivity layer in the south of the Bangong-Nujiang suture is about 20 km lower than that in the north of it. The high-conductivity layer within the Gangdise terrane dips toward north and there are two high-conductivity layers within the crust of the southern Qiangtang terrane. In the upper crust along the profile, there are groups of lateral electrical gradient zones or distortion zones of different scales and occurrence indicating the distribution of faults and sutures along the profile. According to the electrical structure, the structural characteristics and space distribution of the Yalung Tsangpo suture, Bangong.Nujiang suture, and the major faults of Longmucuo (龙木错) and Geerzangbu are inferred.
出处 《Journal of China University of Geosciences》 SCIE CSCD 2007年第4期326-333,共8页 中国地质大学学报(英文版)
基金 This paper is supported by the National Natural Science Foundation of China (No. 40404006) the Focused Subject Program of Beijing (No. XK104910598).
关键词 west margin of Qinghai-Tibet plateau MT high-conductivity layers of crust electrical structure structural characteristics of fault. west margin of Qinghai-Tibet plateau, MT, high-conductivity layers of crust, electrical structure, structural characteristics of fault.
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  • 1马晓冰,孔祥儒.青藏高原岩石圈热状态及其东西部差异[J].地球物理学进展,2001,16(3):12-20. 被引量:15
  • 2冯昭贤,赵文津.INDEPTH与INDEPTH-MT项目简介[J].现代地质,1997,11(3):363-365. 被引量:5
  • 3Zhang, S. Y,Wei, S,Wang, J. Y.Magnetotelluric Studies of Qiangtang Basin in Tibet[].Earth Science—Journal of China University of Geosciences.1996
  • 4Xiong, S. B,Teng, J. W,Yin, Z. X.The Thickness of Crust and Fluctuating of Moho of Tibetan Plateau[].Chinese Journal of Geophysics.1985
  • 5Xiong, S. B,Liu, H. B.The Crustal Structure in West Tibetan Plateau[].Chinese Science Bulletin.1997
  • 6Unsworth, M. J,Jones, A. G,Wei, W. B. et al.Crustal Rheology of the Himalaya and Southern Tibet Inferred from Magnetotelluric Data[].Nature.2005
  • 7Qin, K. Q,Chen, J. H,Liu, D. J.Electrical Structure of the Crust and Upper Mantle of Kunlun Mountain and Kala-Kunlun Mountain Area[].Chinese Journal of Geophysics.1994
  • 8Ma, X. B,Kong, X. R,Yu, S.Result of Magnetotelluric Survey in West Tibetan Plateau[].Chinese Science Bulletin.1997
  • 9Li, S. H,Unsworth, M. J,Booker, J. R. et al.Partial Melt or Aqueous Fluid in the Mid-Crust of Southern Tibet? Constraints from INDEPTH Magnetotelluric Data[].Geophys J Int.2003
  • 10Leshou, C,Booker, J. R,Jones, A. G. et al.Electrically Conductive Crust in Southern Tibet from INDEPTH Magnetotelluric Surveying[].Science.1996

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