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首页> 外文期刊>Pure and Applied Geophysics >Application of Gravity and Radon Studies to Delineate the Concealed Section of the Khisor Thrust
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Application of Gravity and Radon Studies to Delineate the Concealed Section of the Khisor Thrust

机译:重力和氡的应用描绘了Khisor推力的隐藏部

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摘要

Radon concentration, a geochemical parameter of naturally occurring noble gas and potential relative gravity field variation, has been studied in the current investigations. These investigations were carried out along and in proximity to the Khisor Thrust in the Trans Indus ranges marking the southern boundary of Bannu basin in Pakistan. The studies were aimed to demark the concealed section of the thrust fault beyond termination of its surface signature. The consistent increasing pattern of radon variation while approaching the approximate location offault and decrease while moving farther from it suggests the existence of a fault to the subsurface, which should be verified through gravity studies. Variation of radon concentration between 2.5 and 4.1kBq/m(3) was observed on or near the fault zone in exposed and concealed segments, whereas the lower bound variation of 1.1-2kBq/m(3) was encountered on points moving away from fault zone. This variation of radon concentration promisingly supported the idea of the existence of a fault zone beyond the cessation of surface signature. The argument was further validated through the relative gravity variation studies following the radon concentration. The Bouguer anomaly was calculated along all 16 profiles cross-cutting the fault zone. The regional gravity mapped along 231 points of investigation showed a variation between -90 and 8 mGal. The residual gravity highlighting the effects of upper crust disturbance because of under-thrusting has shown anomalous values between -11 and 18 mGal. The results when contoured have shown a good congruence with those received from radon concentration contrasts. Conclusively, it can be perceived that these two nondestructive and less laborious techniques work in composite usefully to delineate the unseen earthquake potential source.
机译:氡浓度,在当前的研究中已经研究了天然存在的惰性气体的地球化学参数和潜在的相对重力场变异。这些调查是沿着跨境跨境的Khisor推力进行的,标志着巴基斯坦南南盆地南部边界的Khisor。研究旨在贬值推力断层的隐藏部分,超出其表面签名终止。在接近近似位置的氡变化的一致增加模式,同时从其移动的同时越远离,这表明存在对地下的故障的存在,这应该通过重力研究验证。在暴露和隐藏区段的断层区内或附近观察到2.5和4.1kbq / m(3)之间的氡浓度的变化,而在远离故障的点上遇到1.1-2Kbq / m(3)的下限变化区。氡浓度的这种变化承诺支持超出表面签名停止的故障区域的存在的想法。通过氡浓度后的相对重力变化研究进一步验证了该论点。 Bouguer异常沿着交叉切割断层区域的所有16个型材计算。沿231点调查映射的区域重力显示出-90和8 MGAL之间的变化。由于欠推欠推突出上壳扰动的剩余重力在-11和18 mgal之间示出了异常值。在轮廓的结果表明,与从氡浓度接收的那些良好的同一致性。结论,可以认为这两个无损性和更少的费力技术有用地在复合材料中工作,以描绘看不见的地震潜在来源。

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