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2D-3D GPR as an efficient tool for paleoseismology: A successful case history across the Castrovillari fault (southern Apennines, Italy)

机译:2D-3D GPR作为古摆力的有效工具:山西罗罗拉里的成功案例历史(南亚伦宁,意大利)

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The Castrovillari basin is located in Northern Calabria, along a sector of the Southern Apennines (Italy). This area is classified by the seismologists as a seismic “gap”, anyway capable of strong earthquakes generation, in a similar way as the adjacent active basins. A 2D and 3D GPR survey, integrated by geological, morphological and paleo-seismological studies, was done across one branch of the Castrovillary fault, a normal fault highlighted on the surface by a series pronounced scarps. The principal aim of the present study was the detection and characterization of the main fault zone and of possible faults strands. We first recorded several 2D common offset GPR profiles along a E-W valley that intercepts the scarps, to focus a smallest area on which acquire a 3D dataset. We used classic interpretative techniques, employing vertical sections, horizontal slices and horizon tracking, together with the calculation of amplitudes and phase related attributes. The information achieved, were useful to plan and realize a new paleo-seismological trench, necessary to intercept events of Holocene faulting, attesting the recent seismic activity of the area. As results, the detection and interpretability of faults, fractures and sedimentary bodies were significantly improved, demonstrating optimal agreement between geophysical and geological datasets.
机译:Castrovillari Basin位于卡拉布里亚北部,沿着南部亚平宁山脉(意大利)的部门。该地区由地震师分类为地震“差距”,无论如何,能够以与相邻的活跃盆地类似的方式。通过地质,形态学和古地震学研究综合的2D和3D GPR调查,在山西圆体故障的一个分支中完成,在表面上突出的正常故障通过串联明显的斯基斯突出显示。本研究的主要目的是检测和表征主故障区和可能的故障股。我们首先录制沿着截取轴的E-W valley的几个常见偏移GPR配置文件,以重点缩影获取3D数据集的最小区域。我们使用经典的解释技术,采用垂直部分,水平切片和地平线跟踪,以及计算幅度和相位相关属性。所取得的信息,对计划和实现新的古地震沟,必要是拦截全新世故障事件,证明该地区最近的地震活动。随着结果,断层,裂缝和沉积体的检测和解释性显着提高,展示了地球物理和地质数据集之间的最佳协议。

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