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青藏高原申扎-双湖剖面岩石圈电性结构特征及其含义 被引量:6

Lithospheric Electrical Structure along Shenzha-Shuanghu Profile in Tibetan Plateau and Its Significance
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摘要 为了研究班公湖-怒江缝合带的壳幔电性结构及构造特征,并为其俯冲极性提供电性约束,对青藏高原中部申扎-双湖大地电磁测深剖面进行全面数据处理分析,获得了可靠的二维电性结构模型,研究表明:沿剖面上地壳分布的是规模不等的高阻体,底面埋深在10~25 km变化,高阻层之下发现由不连续的高导体构成的中下地壳高导层.通过对电性结构的分析,认为班公湖-怒江特提斯洋的俯冲消亡极性可能是双向的,随后拉萨-羌塘地体碰撞带处的上地壳高阻体发生拆沉,以上两次动力学事件可能共同作用于缝合带处的壳幔高导体,同时北拉萨地体的壳幔高导体还可能体现了构造作用、岩浆活动和成矿作用之间的关系. To understand the crust-mantle electrical structure and the tectonic feature of Bangong-Nujiang suture, and offer the electrical constraints to its subduction polarity, the magnetotellurics data of the Shenzha-Shuanghu magnetotelluric profile in the central Himalaya -Tibetan Plateau was carefully processed and analyzed, obtaining a reliable 2 -D electrical model. The study represents that there are some different scale resistors distributed along the profile in the upper crust and the bottom depth varying from 10 to 25 km, and meanwhile there is a middle-lower conductive layer composed of some discontinuous conductivities beneath the resistive layer. With the analysis of the electric structure, the study indicates that the subduction polarity of the Bangong -Nujiang Tethyan ocean may be double-sided, and subsequently the detachment of the upper crustal resistor was occurred, and so the twice dynamics above may contribute to the formation of the conductor within the suture. Furthermore, the conductor beneath the northern Lhasa terrane may also reflect the relation among the dynamics, magmatism and mineralization.
作者 金胜 盛跃 梁宏达 魏文博 叶高峰 卢占武 Jin Sheng;Sheng Yue;Liang Hongda;Wei Wenbo;Ye Gaofeng;Lu Zhanwu(School of Geophysics and Information Technology,China University of Geosciences,Beijing 100083,China;State Key Laboratory of Geological Processes and Mineral Resources,China University of Geosciences,Beijing 100083,China;School of Earth Geosciences and Engineering,Sun Yat-Sen University,Guangzhou 510275,China;Key Laboratory of Earth Probe and Geodynamics,Ministry of Natural Resources,Institute of Geology,Chinese Academy of Geological Sciences,Beijing 100037,China)
出处 《地球科学》 EI CAS CSCD 北大核心 2019年第6期1773-1783,共11页 Earth Science
基金 国家重点研发计划资助(No.2016YFC0600301) 国家自然基金项目(No.41704099) 中央高校基本科研业务费(No.181gpy15)
关键词 班公湖-怒江缝合带 大地电磁测深 电性结构 双向俯冲 矿床 上地壳高阻体 成矿作用 地球物理 Bangong-Nujiang suture magnetotellurics electrical structure double-sided subduction deposit uppercrustal resistor mineralization geophysics
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