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Ground-penetrating radar investigation Pinjore Garden Fau Implication toward identification of shallow subsurface deformation along active fault, NW Himalaya

机译:探地雷达调查Pinjore Garden Fau喜马拉雅西北地区沿活动断层浅层地下变形识别的意义

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摘要

A total of 24 m Ground Penetrating Radar (GPR) profiles acquired across the 6 m high Pinjore Garden Fault (PGF) scarp with 200 MHz antenna, yielded high-resolution subsurface image with penetration depth up to 6 m. Two strands of low-angle thrust faults (Fl and F2) were identified based on the prominent offset and warping in radar reflections. The Fl fault strand in the GPR profile was consistent with the fault identified in the trench excavated across the PGF. The GPR profile helped us to trace thefault strand of Fl at greater depth (>3 m) than that identified in the trench and also a new trace of fault branch F2 in the upper portion of the scarp. This suggested that multiple events have occurred along the PGF during the recent geologic past. Withthis attempt we suggest that the GPR technique can be a useful tool in mapping the shallow subsurface geometry and in locating the near-surface faults displacing young Quaternary sediments in the Himalayan foothill zone.
机译:使用200 MHz天线在6 m高的Pinjore花园断层(PGF)陡崖上采集的总共24 m探地雷达(GPR)剖面图产生了穿透深度达6 m的高分辨率地下图像。基于雷达反射的明显偏移和翘曲,确定了两股低角度推力断层(F1和F2)。 GPR剖面中的Fl断层链与在PGF上开挖的沟槽中识别出的断层一致。 GPR剖面帮助我们在比沟槽中所确定的深度更大的深度(> 3m)内追踪F1的断层股线,并在断层的上部找到新的断层分支F2的迹线。这表明在最近的地质历史期间,沿PGF发生了多个事件。通过这一尝试,我们建议使用GPR技术在绘制浅层地下几何图形和定位取代喜马拉雅山麓丘陵区年轻第四纪沉积物的近地表断层方面是有用的工具。

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