S. Batool, Areeba Amer, Syed Amer Mehmood, M. Shahzad, Muhammad Khubaib Abuzar, Asad Waseem, M. Shafiq
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It gives complete information regarding the lithology based erosional marginsand demarcation of neotectonic scarps and established the relationship between Strahler order streams and neotectonicsettings in an actively deformed KR. This study aims to delineate margins for geomorphological variations and to findthe effects of neotectonics. Another purpose is to examine the geomorphic parameters and to map active tectonicsdevelopment due to transform sinistral movement of the Chaman Fault system (CFS) in the context of the ongoingcollision of India-Eurasia. The resultant and generated surface dynamic maps (SDMs) were due to neotectonicdevelopments, progressions and orientations along with CFS and Suleman fold, and thrust belts (SFTBs). The resultsobtained revealed that IBL values are higher in the NNE, SSW, and central parts along with the CFS, and partially in theNW corner of the KR due to uplifted SFTBs. 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引用次数: 0
摘要
本文研究了位于巴基斯坦-阿富汗边境奎达北部的Katwaz地区(KR)的新构造圈定及其与区域地表变形的联系。它由以硅酸盐和碳酸盐为主的岩石组成,由于区域构造而隆起。本研究利用SRTM DEM (90m空间分辨率)分析了KR的地表动力学(SDMs),探讨了等基水平(IBL)、相对地形(RR)、地形表面粗糙度(TSR)和地形坡度(TS)图对区域新构造引起的地表活动变形的约束。该研究提供了基于岩性的侵蚀边缘和新构造陡坡划分的完整信息,并建立了活跃变形KR中Strahler阶流与新构造环境的关系。另一个目的是在印度-欧亚大陆持续碰撞的背景下,检查地貌参数并绘制由于查曼断裂系统(CFS)的左旋变换运动而导致的活跃构造发育图。所生成的地表动力图(SDMs)是由CFS、Suleman褶皱和冲断带(SFTBs)的新构造发育、进动和定向引起的。结果显示,北北北、南西、中部及中部地区的IBL值均较高,而北西北角的IBL值则部分较高。南北缘的活动构造性质和TSR值在KR中部和北部较低,沿南北缘和中北缘的TSR值较高,这是由于南北缘和中北缘两个活动断裂系统之间的垂直解剖作用较大。基于DEM的sdm具有时效性和成本效益,可以利用遥感和GIS技术轻松识别和描绘新构造活动区。
Remote Sensing Study of Neotectonics of Katwaz Region in Balochistan-Pakistan
This investigation deals with the delineation of neotectonics and its connection to the regional surfacedeformation in the Katwaz region (KR) located in the north of Quetta along the Pakistan-Afghan border. It consists ofrocks dominated by silicates and carbonates, were uplifted due to regional tectonics. In this study, SRTM DEM (90mspatial resolution) based Surface Dynamics (SDMs) of KR is analyzed to investigate the Isobase level (IBL), Relativerelief (RR), Topographic surface roughness (TSR) and topographic Slope (TS) map to constrain the active surfacedeformation due to regional neotectonics. It gives complete information regarding the lithology based erosional marginsand demarcation of neotectonic scarps and established the relationship between Strahler order streams and neotectonicsettings in an actively deformed KR. This study aims to delineate margins for geomorphological variations and to findthe effects of neotectonics. Another purpose is to examine the geomorphic parameters and to map active tectonicsdevelopment due to transform sinistral movement of the Chaman Fault system (CFS) in the context of the ongoingcollision of India-Eurasia. The resultant and generated surface dynamic maps (SDMs) were due to neotectonicdevelopments, progressions and orientations along with CFS and Suleman fold, and thrust belts (SFTBs). The resultsobtained revealed that IBL values are higher in the NNE, SSW, and central parts along with the CFS, and partially in theNW corner of the KR due to uplifted SFTBs. The active tectonic nature of SFTBs and TSR values are lower in the centraland northern parts of KR. The TSR values are higher along SFTBs and CFS due to greater vertical dissection betweenthese two active faults system. The DEM based SDMs are time-efficient and cost-effective for easy identification anddelineation of neo-tectonically active zones using remote sensing and GIS techniques.