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Integrated geophysical survey in a sinkhole-prone area: Microgravity, electrical resistivity tomographies, and seismic noise measurements to delimit its extension

机译:普遍存在地区的集成地球物理调查:微匍匐,电阻率断裂凝视和地震噪声测量,以限制其扩展

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Detection, forecasting, early warning, and effective monitoring are key aspects for the delimitation of sinkhole-prone areas and for susceptibility assessment and risk mitigation. To attain these goals, direct and indirect techniques can be employed, and the integration of different indirect/non-invasive geophysical methods including 2D- and 3D-electrical resistivity tomography, microgravity, and single-station seismic noise measures was carried out at “Il Piano” (Elba Island – Italy), where at least nine sinkholes occurred between 2008 and 2014. The most likely origin for these sinkholes had been considered related to net erosion of sediment from the alluvium, caused by downward water circulation between the aquifer hosted in the upper layer (Quaternary alluvial deposits) and that in the lower (Triassic brecciated dolomitic limestone and Cretaceous slate). The integrated geophysical survey, therefore, was carried out a) to differentiate shallower from deeper geological layers, b) to detect possible cavities that could evolve into sinkholes, c) to suggest possible triggers, and d) to delimit the sinkhole-prone area. The results of the integrated geophysical surveys suggest that the study area is mainly characterised by paleochannels, and that the sinkhole-prone area boundaries correspond to these paleochannels.
机译:检测,预测,预警和有效监测是污水俯卧区域划定和易感性评估和风险缓解的关键方面。为了获得这些目标,可以采用直接和间接技术,并在“IL”中进行包括2D-和3D电阻率断层扫描,微重力和单车间地震噪声措施的不同间接/非侵入性地球物理方法的整合。钢琴“(厄尔巴岛 - 意大利),在2008年和2014年期间至少发生了九个污水孔。这些污水孔最有可能的起源被认为是与饱受的沉积物的净侵蚀有关,由含水层之间的下水循环引起的上层(季醛沉积物)和下部(三叠纪的强化白云石石灰石和白垩纪石板)。因此,集成的地球物理调查是为了区分从更深的地质层,B)来差异,以检测可能发展到下沉孔的可能腔,C)建议可能的触发器和D)限定污水孔易于区分。综合地球物理调查结果表明,研究区主要是古代考虑因素,并且污水胀气区域界限对应于这些古代考虑因素。

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