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Timing of recent out-of-sequence active deformation in the frontal Himalayan wedge: Insights from the Darjiling sub-Himalaya, India

机译:喜马拉雅山前缘楔块近期失序活动变形的时机:来自印度喜马拉雅山大吉岭的见解

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摘要

Recent studies of India-Eurasia convergence suggest that the entire convergence in the Himalayan wedge is almost exclusively accommodated along its basal detachment fault (Main Himalayan thrust, MHT) and its near-surface equivalent (Main Frontal thrust, MFT). Using direct dating of fault-zone gouge and strath terrace deposits, we conclude the following. (1) The present mountain front in the Darjiling sub-Himalaya was emplaced by ca. 40 ka. (2) Out-of-sequence deformation on surface-breaking faults north of the MFT in the Darjiling sub-Himalaya began ca. 20 ka and has probably continued since. (3) The Tista River responded to the ca. 20 ka deformation by migrating 150 m eastward (average rate 13 mm yr–1) and by incising 48 m vertically (average rate 4.4 mm yr–1), creating unpaired, disjointed strath terraces between 11.3 ± 1.3 ka and 1.4 ± 0.3 ka. Out-of-sequence, surface-breaking faults in the Himalaya indicate partial accommodation of active convergence within the Himalayan wedge. Using the results from the Bhuj earthquake of 2001, we suggest that active deformation along the out-of-sequence faults is a potential seismic hazard in the Himalaya, and Himalayan seismic hazard models must account for this. We also propose a conceptual model for active deformation in the Himalaya.
机译:印度-欧亚大陆融合的最新研究表明,喜马拉雅山楔体中的 整个会聚几乎全部沿着其基底脱离断层(主喜马拉雅山 ,MHT)及其近地等效值(主正面推力, MFT)。利用断层带泥层和地层阶地 沉积的直接测年,我们得出以下结论。 (1)大吉岭喜马拉雅山目前的山 前缘被约克安置。 40 ka。 (2)大吉岭喜马拉雅山MFT以北的地表断裂上的断层形变开始。此后,大概持续了20 ka和 。 (3)提斯塔河对ca的响应 。向东迁移150 m(平均 速率13 mm yr –1 )并垂直切开48 m(平均s速率4.4 mm yr),产生20 ka变形 –1 ),在11.3±1.3 ka和1.4±0.3 ka之间创建不成对,不相交的strath 梯田。 乱序,表面喜马拉雅山中的断裂断层表明 在喜马拉雅山 楔内的主动收敛的部分调节。使用2001年布杰地震的结果,我们 建议沿着乱序断层 的活动变形在喜马拉雅山和喜马拉雅山 地震危险模型必须考虑到这一点。我们还提出了 喜马拉雅山主动变形的概念模型。

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  • 来源
    《Geology》 |2007年第11期|999-1002|共4页
  • 作者单位

    CSIR Centre for Mathematical Modelling and Computer Simulation, Bangalore 560 037, India;

    Physical Research Laboratory, Navrangpura, Ahmedabad 38 0009, India;

    Physical Research Laboratory, Navrangpura, Ahmedabad 38 0009, India;

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