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Structural insights from geodetic Global Positioning System measurements in the Darjiling-Sikkim Himalaya

机译:来自大吉岭-锡金喜马拉雅山大地测量全球定位系统测量的结构见解

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摘要

Deformation in active convergent wedges like the Himalaya occurs over different time and space scales requiring integrated datasets for holistic insights into wedge-scale deformation. A new long-time series (1998-2009) of geodetic, static Global Positioning System (GPS) dataset suggests that active deformation in the Darjiling-Sikkim Himalaya (DSH) is not confined to the Himalayan front as previously believed. Instead, the similar to 9 mm/yr N-S active convergence here is divided almost equally within the Lesser Himalayan Duplex (LHD) and the Higher Himalaya due to aseismic reverse slip of similar to 18 mm/yr on the Himalayan decollement (Main Himalayan thrust (MHT)) dipping 6 degrees - 006 degrees and locked at similar to 16 km depth. Slip transfer along the MHT causes minor to moderate earthquakes at the brittle-ductile transition in the DSH. Measured East velocities show no systematic variation indicating that strike-slip seismicity, though dominant in the region, does not alleviate the decollement (MHT) seismic hazard. Continued slip along the MHT, therefore, will cause a great decollement earthquake in the region. Also, GPS velocities vary in the eastern and western DSH suggesting segmentation of the Himalayan arc along a transverse fault over geological to decadal time scales. Our integrated approach can provide better insight into active deformation in convergent wedges worldwide.
机译:像喜马拉雅山这样的活动收敛楔形体的变形发生在不同的时间和空间尺度上,需要集成的数据集以全面了解楔形尺度的形变。大地静止静态全球定位系统(GPS)数据集的新的长期序列(1998-2009年)表明,达吉林-锡金喜马拉雅山(DSH)中的主动变形并不像以前所相信的那样局限于喜马拉雅山锋。取而代之的是,由于喜马拉雅断层(主喜马拉雅逆冲( MHT))倾斜6度-> 006度,并锁定在接近16公里的深度。沿MHT的滑移转移在DSH的脆性-延性过渡过程中引起了中度地震。测得的东部速度没有显示出系统的变化,表明走滑地震活动性虽然在该地区占主导地位,但并没有减轻挠度(MHT)地震危险。因此,沿着MHT继续滑动会在该地区造成大的挠曲地震。同样,在DSH东部和西部,GPS速度各不相同,这表明喜马拉雅弧线沿地质断层到年代际尺度的横向断层分段。我们的集成方法可以更好地洞悉全球会聚楔块中的主动变形。

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