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首页> 外文期刊>Journal of Asian earth sciences >Extension driven brittle exhumation of the lower-middle crustal rocks, a paleostress reconstruction of the Neoproterozoic Ambaji Granulite, NW India
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Extension driven brittle exhumation of the lower-middle crustal rocks, a paleostress reconstruction of the Neoproterozoic Ambaji Granulite, NW India

机译:延伸驱动的脆性膨胀的下部地壳岩石,是NW印度NW印度的古老古代古代古代古代古典

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摘要

The exhumation of the deep crustal rocks through brittle crust by extensional tectonics is recognized in orogens of all ages. Paleostress analysis are generally used to understand the brittle exhumation process. In this study, we reconstructed the paleostress of faults of the Neoproterozoic Ambaji Granulite, South Delhi Terrane of the Aravalli-Delhi Mobile Belt, NW India by analyzing the fault slip data in Win Tensor program. Several NE-SW and WNW-ESE faults have been mapped in the area and found to be normal faults with a few strike-slip faults. The strike-slip faults are pre-kinematic to normal faults. Tensor solutions for 237 fault slip data points estimate WNW-ESE extension for strike slip faults and NW-SE direction extension for normal faults. From these results, we interpret that the NE-SW striking, orogen-parallel normal faults were produced from a NW-SE directed extensional stress and are primarily responsible for brittle exhumation of the granulite through crustal extension and thinning at 764-650 Ma. This is comparable to earlier studies on brittle exhumation along the Southern Tibet detachment in the Higher Himalayas. On a more regional scale, our results are in agreement with the extensional tectonics that affected the entire Aravalli-Delhi Mobile Belt and adjoining continents of the Neoproterozoic-Cambrian Gondwanaland Supercontinent.
机译:通过膨胀构造脆性地壳挖掘深层地壳岩石在所有年龄段的奥古斯中都公认。古老人分析通常用于了解脆性挖掘过程。在这项研究中,我们通过分析赢得浪潮程序中的故障防滑数据,重建了南德里地区的新奥德罗古希济汤粒颗粒颗粒颗粒的古老虫族颗粒。在该地区映射了几个NE-SW和WNW-ESE故障,发现具有几个防滑故障的正常故障。防滑故障是预先进行正常故障的。张量解决方案237故障防滑数据点估计罢工滑倒故障和NW-SE方向扩展的WNW-ESE扩展,用于正常故障。从这些结果来看,我们解释了Ne-SW引人注目,造山平行的正常故障是由NW-SE定向的延长应力产生,并且主要负责通过在764-650 mA的地壳延伸和稀释剂中稀释粒度膨胀。这与沿着南部南部南部的脆性挖掘的研究表达了较高的喜马拉雅山。在更具区域性范围内,我们的结果与影响整个Aravalli-Delhi移动皮带和毗邻Neoproterozoic-Cambrian Gondwanaland超大伦的扩展构造的结果一致。

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