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Chronostratigraphic study of the Grottaperfetta alluvial valley in the city of Rome (Italy): investigating possible interaction between sedimentary and tectonic processes

机译:罗马市(意大利)Grottaperfetta冲积河谷的年代地层学研究:研究沉积与构造过程之间可能的相互作用

摘要

We carried out geomorphologic and geological investigations in a south-eastern tributary valley of the Tiber River in Rome, the Grottaperfetta valley, aimed to reconstruct its buried geometry. Since results of the geomorphologic study evidenced anomalies of the stream beds, we performed geoelectric and boreholes prospecting to check whether recent faulting, rather than an inherited structural control, possibly contributed to the evolution of the alluvial valley. Vertical offsets of the stratigraphic horizons across adjacent boreholes were evidenced within the Late Pleistocene-Holocene alluvium and its substratum. In order to rule out the effects of irregular geometry of the alluvial deposits, we focussed on sectors where vertical offsets affected all the stratigraphic horizons (alluvium and pre-Holocene substratum), showing an increasing displacement with depth. We identified a site where repeated displacements occur coupled with a lateral variation of soil resistivity, and we drilled an oblique borehole aimed to cross and sample the possible fault zone affecting the terrain. A 7 cm thick granular layer, inclined 50°÷70° on the horizontal, was recovered 5 m b.g., and it was interpreted as the filling material of a fracture. The convergence of the reported features with independent evidence from geoelectric and geomorphologic investigations leads to hypothesize the presence of a faulting zone within the Holocene alluvial terrains and to propose the excavation of a trench to verify this hypothesis.
机译:我们在罗马的台伯河东南支流谷Grottaperfetta谷进行了地貌和地质调查,旨在重建其埋藏的几何形状。由于地貌学研究的结果证明了河床的异常,我们进行了地电和钻孔勘探,以检查最近的断层(而不是继承的构造控制)是否可能有助于冲积谷的演化。在晚更新世-全新世冲积层及其下层中,可以看到相邻钻孔的地层水平垂直偏移。为了排除冲积层几何形状不规则的影响,我们集中研究了垂直偏移影响所有地层范围(冲积层和全新世前地层)的区域,显示出随着深度的增加位移。我们确定了一个重复发生位移的位置,并伴有土壤电阻率的横向变化,并且我们钻了一个斜井眼,旨在穿越并采样影响地形的可能断层带。 7 m厚的颗粒层在水平方向上倾斜了50°÷70°,恢复到5 m b.g.,被认为是裂缝的填充材料。所报告的特征与来自地电和地貌学调查的独立证据的融合,导致了人们对全新世冲积地形中存在断层带的假设,并提出了开挖沟槽的方法以验证这一假设。

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