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首页> 外文期刊>Journal of geodynamics >Determination of directions of horizontal principal stress and identification of active faults in Kachchh (India) by electromagnetic radiation (EMR)
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Determination of directions of horizontal principal stress and identification of active faults in Kachchh (India) by electromagnetic radiation (EMR)

机译:通过电磁辐射(EMR)确定水平主应力方向并确定印度卡奇奇活动断裂

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摘要

The Kachchh basin in the western India is known for its recent high seismicity. This study presents an application of the geogenic Electromagnetic Radiation (EMR) technique for deciphering the directions of principal horizontal stress in the eastern Kachchh. The principal direction of horizontal stress obtained from EMR differs from those obtained from earthquake focal plane solutions. The major horizontal principal stress based on the EMR study shows an azimuth of N60°E ± 10°. The principal directions of EMR emissions are parallel to the acute bisector of conjugate microcracks. The azimuthal distribution of EMR signal and dimension of microcracks suggest that the EM emissions are transversely polarized.The study also deals with the first application of electromagnetic radiation emissions to identify active fracture planes in sandstones that could become potential active faults later, which might be seismogenic or nonseimogenic. This study is based on linear profiling at six different places across two major faults, the Kachchh Mainland Fault (KMF) and the South Wagad Fault (SWF) in the eastern Kachchh. Anomalously, high EMR emissions are observed in the eastern part of the KMF, indicating active surface deformation.
机译:印度西部的Kachchh盆地以最近的高地震活动而闻名。这项研究提出了地质电磁辐射(EMR)技术在解释东部Kachchh的主要水平应力方向方面的应用。从EMR获得的水平应力的主方向与从地震焦平面解获得的水平应力的主方向不同。基于EMR研究的主要水平主应力显示为N60°E±10°的方位角。 EMR排放的主要方向与共轭微裂纹的急性平分线平行。 EMR信号的方位角分布和微裂纹的尺寸表明EM辐射是横向极化的。该研究还涉及电磁辐射的首次应用,以识别砂岩中的活动裂缝面,这些裂缝随后可能成为潜在的活动断层,这可能会引起地震。或非致同性。这项研究基于跨越两个主要断层的六个不同位置的线性剖面,两个主要断层分别是卡奇东部大陆的卡奇(Kachchh)大陆断裂(KMF)和南瓦加德断裂(SWF)。异常地,在KMF的东部地区观察到高EMR排放,表明活动的表面变形。

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