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首页> 外文期刊>Journal of the Geological Society >Tectonic implications of Palaeoproterozoic anatexis and Late Miocene metamorphism in the Lesser Himalayan Sequence, Sutlej Valley, NW India
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Tectonic implications of Palaeoproterozoic anatexis and Late Miocene metamorphism in the Lesser Himalayan Sequence, Sutlej Valley, NW India

机译:印度西北部Sutlej谷小喜马拉雅层序中的古元古代动物的构造和晚中新世变质的构造意义

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摘要

Unravelling the kinematic evolution of orogenic belts requires that the defining tectonostratigraphic units, and structural elements that bound them, are properly identified and characterized. In the Sutlej Valley (western Himalaya), the Munsiari and Vaikrita thrusts have both been correlated with the Main Central Thrust. The sequence of amphibolite-grade rocks (the Jutogh Group) bounded by these faults has been variously assigned to the Lesser Himalayan Sequence (based on provenance ages) and to the Greater Himalayan Sequence (from its metamorphic grade). Trace-element and geochronological data from leucogranites in the Jutogh Group (1) indicate crustal melting at c. 1810 Ma, before the deposition of the Greater Himalayan Sequence, thus correlating the Jutogh Group with the Lesser Himalayan Sequence, and (2) record Proterozoic metamorphism overprinted at 10.5 ± 1.1 Ma (established from U–Pb analysis of uraninite) during the Himalayan orogeny. Pressure–temperature–time data indicate that the Jutogh Group and Greater Himalayan Sequence represent distinct tectonic units of the metamorphic core that were decoupled during their extrusion. This precludes extrusion along a single, widening channel, and requires a southward shift of the locus of movement during the Late Miocene, coincident with present-day precipitation patterns.
机译:要弄清造山带的运动学演化,需要 正确地识别和表征定义的构造地层单元以及束缚它们的结构性 元素。 Sutlej山谷(喜马拉雅山西部),Munsiari和Vaikrita 的推力都与中央主推力有关。 两闪石级岩石(Jutogh群)的界线<这些断层的sup> 被分别分配给小喜马拉雅 序列(基于出处年龄)和大喜马拉雅 序列(根据其变质等级)。 。 Jutogh组(1)中白云石的微量元素和年代学 数据表明地壳 在c融化。 1810年Ma,在沉积更大的 喜马拉雅序列之前,因此将Jutogh群与 Lesser喜马拉雅序列相关,并且(2)记录了元古代变质 在喜马拉雅造山运动中以10.5±1.1 Ma叠印(根据尿素岩的U–Pb 分析建立)。压力-温度-时间 数据表明,Jutogh群和大喜马拉雅层序 代表了变质岩芯的不同构造单元,这些构造单元在挤压过程中被解耦。 。这排除了沿单个扩大通道的挤压 ,并且要求中新世晚期运动轨迹向南移位 ,与目前的重合 日降水模式。

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  • 来源
    《Journal of the Geological Society》 |2008年第3期|725-737|共13页
  • 作者单位

    Department of Earth Sciences, The Open University, Milton Keynes MK7 6AA, UK (e-mail: j.a.chambers@open.ac.uk);

    Department of Earth Sciences, The Open University, Milton Keynes MK7 6AA, UK (e-mail: j.a.chambers@open.ac.uk);

    NERC Isotope Geoscience Laboratory, Kingsley Dunham Centre, Keyworth, Nottingham NG12 5GG, UK;

    Department of Earth Sciences, The Open University, Milton Keynes MK7 6AA, UK (e-mail: j.a.chambers@open.ac.uk);

    NERC Isotope Geoscience Laboratory, Kingsley Dunham Centre, Keyworth, Nottingham NG12 5GG, UK|Department of Geology, University of Leicester, Leicester LE1 7RH, UK;

    Department of Geology, University of Delhi, Delhi-110007, India;

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