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Morphotectonic study of the lower Sangro River valley (Abruzzi, Central Italy)

机译:桑格罗河下游河谷的形态构造研究(意大利中部阿布鲁齐)

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This work analyses the morphotectonic setting of the Adriatic piedmont of Central Italy, in order to outline the role of tectonics in the development of the fluvial landscape in this area. Particularly, it focuses on the Sangro River, which flows in the southern Abruzzi, from the Apennines, through the piedmont, to the Adriatic coast. The piedmont area developed in a marine environment from the Pliocene to the Early Pleistocene resulting in the deposition of a clayey-sandy sequence. Afterwards, regional uplift processes with NE tilting led to the deposition of a regressive conglomeratic sequence, as the area evolved into a continental environment. This work is based on the qualitative and quantitative study of drainage patterns and on the analysis and correlation of selected morphological evidence of tectonics on fluvial terraces, in order to define the role of tectonics in the geomorphological evolution of the lower Sangro River valley. The drainage network and its statistical azimuthal distributions are analysed; the distribution and the transverse and longitudinal profiles of fluvial terraces are investigated and the morphological evidence for tectonics is then assessed: river bends, linear valleys, beheaded and hanging valleys, counterflow confluences of streams. Space and time correlation of these features allows us to highlight the effects of regional uplift, tilting, and local tectonics on drainage development. Following the emergence of the piedmont area (Middle Pleistocene), uplift and tilting determined a SW-NE consequent and parallel drainage. Progressive incision shaped the Sangro valley as a consequent valley. Local tectonics along NNW-SSE and WNW-ESE faults and fractures resulted in the incision of linear valleys, beheading the previous SW-NE drainage, and controlled the development of a rectangular drainage network (late Middle Pleistocene). The drainage network was then rearranged by selective erosion processes, maintaining a strong inheritance from of its Middle Pleistocene configuration.
机译:这项工作分析了意大利中部亚得里亚山麓的构造构造背景,以概述构造学在该地区河流景观发展中的作用。特别是,它着重于桑格罗河,该河在阿布鲁齐南部流过,从亚平宁山脉经过山麓一直流向亚得里亚海沿岸。山麓地区是在从上新世到早更新世的海洋环境中发育的,导致了黏土-桑迪序列的沉积。之后,随着东北向倾斜,区域抬升过程导致了回归砾岩层序的沉积,因为该区域演变成大陆环境。这项工作基于对流域格局的定性和定量研究,以及在河流阶地上构造学的选定形态学证据的分析和相关性,以便确定构造学在桑格罗河下游河谷地貌演化中的作用。分析了排水网络及其统计方位角分布;研究了河流阶地的分布和横向和纵向剖面,然后评估了构造学的形态学证据:河弯,线性谷,斩首谷和悬谷,逆流汇合。这些特征的时空相关性使我们能够突出区域隆起,倾斜和局部构造对排水发育的影响。在山麓地区(中更新世)出现之后,隆起和倾斜决定了西南向东北的顺流和平行引流。渐进式切口使Sangro山谷成为后来的山谷。沿着NNW-SSE和WNW-ESE断层和裂缝的局部构造导致了线性山谷的切开,斩断了先前的SW-NE排水,并控制了矩形排水网络(晚更新世)的发展。然后通过选择性侵蚀过程对排水网络进行重新排列,以保持其中更新世构造的强大继承性。

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