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首页> 外文期刊>Geoscience frontiers >Exhuming the Meso–Cenozoic Kyrgyz Tianshan and Siberian Altai-Sayan: A review based on low-temperature thermochronology
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Exhuming the Meso–Cenozoic Kyrgyz Tianshan and Siberian Altai-Sayan: A review based on low-temperature thermochronology

机译:挖掘中新生代吉尔吉斯斯坦的天山和西伯利亚的阿尔泰-萨彦:基于低温热年代学的评论

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摘要

Thermochronological datasets for the Kyrgyz Tianshan and Siberian Altai-Sayan within Central Asia reveal a punctuated exhumation history during the Meso–Cenozoic. In this paper, the datasets for both regions are collectively reviewed in order to speculate on the links between the Meso–Cenozoic exhumation of the continental Eurasian interior and the prevailing tectonic processes at the plate margins. Whereas most of the thermochronological data across both regions document late Jurassic–Cretaceous regional basement cooling, older landscape relics and dissecting fault zones throughout both regions preserve Triassic and Cenozoic events of rapid cooling, respectively. Triassic cooling is thought to reflect the Qiangtang–Eurasia collision and/or rifting/subsidence in the West Siberian basin. Alternatively, this cooling signal could be related with the terminal terrane-amalgamation of the Central Asian Orogenic Belt. For the Kygyz Tianshan, late Jurassic–Cretaceous regional exhumation and Cenozoic fault reactivations can be linked with specific tectonic events during the closure of the Palaeo-Tethys and Neo-Tethys Oceans, respectively. The effect of the progressive consumption of these oceans and the associated collisions of Cimmeria and India with Eurasia probably only had a minor effect on the exhumation of the Siberian Altai-Sayan. More likely, tectonic forces from the east (present-day coordinates) as a result of the building and collapse of the Mongol-Okhotsk orogen and rifting in the Baikal region shaped the current Siberian Altai-Sayan topography. Although many of these hypothesised links need to be tested further, they allow a first-order insight into the dynamic response and the stress propagation pathways from the Eurasian margin into the continental interior. Graphical abstract Display Omitted Highlights ? Thermochronology reveals a punctuated Meso–Cenozoic exhumation history of Central Asia. ? Kyrgyz Tianshan reactivations are linked with closure Palaeo- and Neo-Tethys Ocean. ? Siberian Altai-Sayan reactivations are linked with closure Mongol-Okhostk Ocean.
机译:中亚吉尔吉斯斯坦的天山和西伯利亚的阿尔泰-萨彦的热年代学数据集揭示了中新生代间的点断发掘史。在本文中,对这两个地区的数据集进行了综合回顾,以推测欧亚大陆内部的中新生代发掘活动与板块边缘普遍的构造过程之间的联系。尽管这两个地区的大部分热年代学数据都记录了侏罗纪至白垩纪晚期的基底冷却,但两个地区中较老的景观遗迹和解剖断层带分别保留了三叠纪和新生代的快速冷却事件。三叠纪的冷却被认为反映了西西伯利亚盆地的tang塘-欧亚大陆碰撞和/或裂谷/沉陷。可替代地,该冷却信号可能与中亚造山带的终末地层-汞齐化有关。对于吉尔吉斯斯坦的天山,侏罗纪-白垩纪晚期的发掘和新生代断层的活化可能分别与古特提斯和新特提斯海洋封闭期间的特定构造事件有关。这些海洋的逐渐消耗以及西美利亚和印度与欧亚大陆的相撞的影响可能只对西伯利亚阿尔泰-萨彦的发掘产生了较小的影响。蒙古-鄂霍次克造山带的建造和坍塌以及贝加尔湖地区裂谷的结果是,来自东部(今天的坐标)的构造力形成了当前的西伯利亚阿尔泰-萨彦地形。尽管许多这些假设的联系需要进一步检验,但它们可以使人们对从欧亚大陆边缘到大陆内部的动力响应和应力传播途径有一个初步的了解。图形摘要显示省略的突出显示?热年代学揭示了中亚间断的中,新生代发掘史。 ?吉尔吉斯斯坦天山的复活与古海洋和新特提斯海洋的关闭有关。 ?西伯利亚阿尔泰-萨彦(Altai-Sayan)的复活与蒙古-奥卡斯特克海洋的关闭有关。

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