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首页> 外文期刊>NRIAG Journal of Astronomy and Geophysics >Electrical resistivity imaging of active faults in palaeoseismology: case studies from Karachi Arc, southern Kirthar Fold Belt, Pakistan
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Electrical resistivity imaging of active faults in palaeoseismology: case studies from Karachi Arc, southern Kirthar Fold Belt, Pakistan

机译:猴源事学中活性故障的电阻率成像:卡拉奇弧,南克峰折腰带,巴基斯坦案例研究

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Electric resistivity tomography (ERT) is applied across active concealed faults to confirm the subsurface manifestation and lateral extension of capable faults in Karachi Arc, southern Kirthar Fold Belt, Pakistan. During palaeoseismological investigations, active faults and movements along them are identified using electrical resistivity imaging and trenching. The electrical resistivity images present the general structure of the investigated area, with the possibility of tracking the fault in the subsurface. The verification of faults and comparison of ERT profiles with the excavated trench logs confirmed the success of ERT. The results of ERT and trenching in three major parts of Karachi Arc show: (i) the southern inner part of the arc was inactive in Late Quaternary time, where the Sona Fault did not experience any recent movement; (ii) Kirthar and Khud faults in the northwestern part of the study area are active but do not extend into the southern Karachi Arc; and (iii) the frontal part of Karachi Arc is characterised by Quaternary faulting of limited strike length with a moderate rate of seismic activity. Based on the Karachi Arc case studies, ERT is found to be a reliable geophysical technique for studying near-surface geological structures, subsurface lithological mapping and fault characterisation.
机译:电阻率断层扫描(ERT)应用于主动隐藏的故障,以确认卡拉奇弧,南克峰折叠腰带,巴基斯坦南部的能力故障的地下表现和横向延伸。在Palaeoseismology测量期间,使用电阻率成像和挖沟来识别它们的积极故障和运动。电阻率图像呈现了研究区域的一般结构,可以在地下跟踪故障。挖掘沟槽日志的故障验证和ert曲线的比较证实了ert的成功。 Karachi Arc的三个主要部分的ERT和挖沟的结果显示:(i)弧的南部内部在第四纪时段的后期不活跃,在那里Sona故障没有经历任何最近的运动; (ii)研究区西北部的K鱼和Khud断层处于活跃,但不会延伸到卡拉奇群岛南部; (iii)Karachi弧的正面部分的特征在于,具有适中的地震活动率的有限击球长度的季断。基于Karachi Acc案例研究,发现ERT是一种用于研究近表面地质结构,地下岩性测绘和故障表征的可靠地球物理技术。

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