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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
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作者 金胜 叶高峰 +2 位作者 魏文博 邓明 景建恩 《Journal of China University of Geosciences》 SCIE CSCD 2007年第4期326-333,共8页
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 ... 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. 展开更多
关键词 west margin of qinghai-tibet plateau mt high-conductivity layers of crust electrical structure structural characteristics of fault.
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青藏高原西缘壳幔电性结构与断裂构造:札达-泉水湖剖面大地电磁探测提供的依据 被引量:16
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作者 金胜 叶高峰 +2 位作者 魏文博 邓明 景建恩 《地球科学(中国地质大学学报)》 EI CAS CSCD 北大核心 2007年第4期474-480,共7页
青藏高原西缘札达至泉水湖剖面大地电磁探测结果表明,研究区被雅江缝合带、班公-怒江缝合带划分为3个构造区域,由南至北分别为喜玛拉雅地体、冈底斯地体和羌塘地体.研究区内普遍存在中下地壳高导层,高导层的顶面埋深起伏较大,冈底斯内... 青藏高原西缘札达至泉水湖剖面大地电磁探测结果表明,研究区被雅江缝合带、班公-怒江缝合带划分为3个构造区域,由南至北分别为喜玛拉雅地体、冈底斯地体和羌塘地体.研究区内普遍存在中下地壳高导层,高导层的顶面埋深起伏较大,冈底斯内的高导层埋深大,羌塘和喜玛拉雅地体内的高导层埋深较浅.在班公-怒江缝合带南侧高导层埋深最大,班公-怒江缝合带南北两侧高导层埋深存在一个约20km的错动.冈底斯地体内的地壳高导层呈北倾形态,南羌塘的地壳具有双高导层.沿剖面的上地壳存在多组规模不等、产状不同的电性梯度带或畸变带,反映了沿剖面地区的缝合带与断裂带分布情况.根据电性结构特征,推断了雅江缝合带、班公-怒江缝合带以及龙木措、噶尔藏布等主要断裂的构造特征与空间分布. 展开更多
关键词 青藏高原西缘 大地电磁探测 地壳高导层 电性结构 断裂构造特征
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