喜马拉雅西北部克什米尔盆地新发现的Gulmarg断层的地球物理圈定。对主动构造控制的启示

Ayaz Mohmood Dar, Syed Kaiser Bukhari
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引用次数: 0

摘要

克什米尔盆地是由印度和欧亚构造板块碰撞形成的,具有突出的断层,包括巴拉普尔断层和其他断裂带。本研究以喜马拉雅西北部的Gulmarg断层为研究对象,采用先进的地磁技术进行圈定。地磁测量揭示了新发现的Gulmarg断层的特征。利用质子进动磁力计沿线性剖面和磁网格进行地面磁测量,突出与断层有关的异常。结果表明,一条断层穿过Gulmarg草甸,距离Balapur断层约1.6公里,这表明两者之间存在潜在的耦合。断层上的三条剖面显示出独特的磁变化,突出了断层结构的复杂性。网格方法还揭示了与地下水和水力活动相关的异常,强调了先进的地球物理技术的重要性。本研究强调了详细调查对揭示形成克什米尔盆地的复杂地质过程的重要性。这项研究为Gulmarg地区的构造活动提供了有价值的见解,强调了地球物理研究在增强我们对Gulmarg断裂带等动态地质结构的理解方面的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geophysical delineation of the newly identified Gulmarg fault in the Kashmir Basin, NW Himalaya. Implications for active structural control
The Kashmir Basin, shaped by the collision of the Indian and Eurasian tectonic plates, features prominent faults, including the Balapur fault and other fault zones. This study focuses on the Gulmarg fault within the Northwestern Himalaya, using advanced geomagnetic techniques for delineation. Geomagnetic measurements reveal the characteristics of the newly identified Gulmarg fault. Ground magnetic surveys with Proton Precession Magnetometers along linear profiles and a magnetic grid highlight fault-related anomalies. The results indicate a fault running through the Gulmarg meadows, approximately 1.6 ​km from the Balapur fault, suggesting a potential coupling between the two. Three profiles across the fault exhibit distinctive magnetic variations, highlighting the intricate nature of the fault structure. Gridding methods also reveal anomalies associated with subsurface water and hydraulic activities, underscoring the importance of advanced geophysical techniques. This study emphasizes the significance of detailed investigations to unravel the complex geological processes shaping the Kashmir Basin. The study provides valuable insights into the tectonic activity in the Gulmarg region, underscoring the role of geophysical studies in enhancing our understanding of dynamic geological structures like the Gulmarg fault zone.
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