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首页> 外文期刊>Tectonics >Exhumation history of the deepest central Himalayan rocks, Ama Drime range: Key pressure-temperature-deformation-time constraints on orogenic models
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Exhumation history of the deepest central Himalayan rocks, Ama Drime range: Key pressure-temperature-deformation-time constraints on orogenic models

机译:最深的喜马拉雅中部岩石的发掘历史,阿玛德莱姆山脉:造山模型的关键压力-温度-变形-时间约束

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摘要

The Ama Drime range located at the transition between the high Himalayan range and south Tibet is a N-S active horst that offsets the South Tibetan Detachment System (STDS). Within the horst, a paragneissic unit, possibly attributed to the upper Himalayan crystalline series, overly the lower Himalayan crystalline series Ama Drime orthogneissic unit containing large metabasite layers and pods that have experienced pressure ≥1.4 GPa. Combining structural analysis with new and published pressure-temperature (P-T) estimates as well as U-Th/Pb, ~(39)Ar/~(40)Ar and (U-Th)/He ages, the P-T-deformation-time (P-T-D-t) paths of the main units within and on both sides of the horst are reconstructed. They imply that N-S normal faults initiated prior to 11 Ma and have accounted for a total exhumation ≤0.6 GPa (22 km) that probably occurred in two phases: the first one until ~9 Ma and the second one since 6 to 4 Ma at a rate of ~1 mm/yr. In the Ama Drime unit, 1 to 1.3 GPa (37 to 48 km) of exhumation occurred after partial melting since ~30 Ma until ~13 Ma, above the Main Central Trust (MCT) and below the STDS when these two fault systems were active together. The switch from E-W (STDS) to N-S (Ama Drime horst) normal faulting between 13 and 12 Ma occurs at the time of propagation of thrusting from the MCT to the Main Boundary Thrust. These data are in favor of a wedge extrusion or thrust system rather than a crustal flow model for the building of the Himalaya. We propose that the kinematics of south Tibet Cenozoic extension phases is fundamentally driven by the direction and rate of India underthrusting.
机译:位于喜马拉雅山脉与西藏南部之间的过渡地带的Ama Drime山脉是N-S活跃的地心,抵消了西藏南部的分离支系(STDS)。在霍斯特内部,一个可能属于喜玛拉雅山上部结晶系列的Paragneissic单元,可能覆盖了下部喜马拉雅山结晶系列Ama Drime正交岩性单元,该单元包含压力大于或等于1.4 GPa的大型异位块体和豆荚。将结构分析与新的和已发布的压力温度(PT)估计值以及U-Th / Pb,〜(39)Ar /〜(40)Ar和(U-Th)/ He年龄,PT变形时间结合起来重建了霍斯特内部和两侧的主要单位(PTDt)路径。他们暗示,NS正常断层始于11 Ma之前,并且总发掘≤0.6 GPa(22 km),可能发生在两个阶段:第一个阶段直到〜9 Ma,第二个阶段是从6到4 Ma。速度〜1 mm / yr。在Ama Drime单元中,自这两个断层系统处于活动状态以来,从〜30 Ma直到〜13 Ma,部分融化后发生了1至1.3 GPa(37至48 km)的掘出,位于中央中央信任区(MCT)上方和STDS下方。一起。在从MCT向主边界推力传播的时候,从E-W(STDS)到N-S(Ama Drime霍斯特)的正常断层发生在13和12 Ma之间。这些数据有利于建立楔形挤压或推力系统,而不是建立喜马拉雅山的地壳流动模型。我们认为,西藏南部新生代伸展相的运动学从根本上是由印度逆冲作用的方向和速度驱动的。

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  • 来源
    《Tectonics》 |2010年第2期|P.TC2014.1-TC2014.31|共31页
  • 作者单位

    Institut de Physique du Globe de Strasbourg, UMR 7516, CNRS, UDS/EOST, 5 rue Rene Descartes, F-67084 Strasbourg, France;

    rnLST, UMR 5570, Universite de Lyon, ENS Lyon, UCB Lyonl, CNRS, bat Geode, 43 Bd du 11 Novembre 1918, F-69622 Villeurbanne CEDEX, France;

    rnGeosciences Montpellier, Universite de Montpellier 2, Cc.060, Pl. E. Bataillon, F-34095 Montpellier CEDEX 05, France;

    rnLST, UMR 5570, Universite de Lyon, ENS Lyon, UCB Lyonl, CNRS, bat Geode, 43 Bd du 11 Novembre 1918, F-69622 Villeurbanne CEDEX, France;

    rnLaboratory of Continental Dynamics, Institute of Geology, CAGS, 26 Baiwanzhuang Rd., Beijing 100037, China;

    rnLST, UMR 5570, Universite de Lyon, ENS Lyon, UCB Lyonl, CNRS, bat Geode, 43 Bd du 11 Novembre 1918, F-69622 Villeurbanne CEDEX, France;

    rnInstitut de Physique du Globe de Strasbourg, UMR 7516, CNRS, UDS/EOST, 5 rue Rene Descartes, F-67084 Strasbourg, France;

    rnInstitute of Tibetan Plateau Research, Chinese Academy of Sciences, 18 Shuang Qing Rd., Beijing 100085, China;

    rnInstitute of Tibetan Plateau Research, Chinese Academy of Sciences, 18 Shuang Qing Rd., Beijing 100085, China;

    rnLaboratory of Continental Dynamics, Institute of Geology, CAGS, 26 Baiwanzhuang Rd., Beijing 100037, China;

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