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Tectonic control on the development and distribution of large landslides in the Northern Apennines (Italy)

机译:北亚平宁山脉(意大利)大滑坡发育和分布的构造控制

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The causes of landslides generally invoked in the Northern Apennines of Italy do not fully explain some observed oriented distributions of large landslides along regional-scale tectonic structures (late orogenic antiforms). The aim of the work is to deeply explore the role of tectonics in controlling the development and arrangement of large landslides. We employed a multidisciplinary approach which took into account geomorphological and geological field data, topographic analysis and deep seismic reflection profiles integrated with previously published apatite fission track cooling ages, shallow geophysical and GPS data. In order to explore these relationships, the Valmozzola area was selected as suitable case study, owing to the presence of clearly expressed relationships between recent extensional faults and related fractures and elements of active landslides. Moreover, in the Valmozzola area contractional tectonics acted to produce rock uplift and thus topographic growth. These processes caused hillslopes to approach their threshold angle, and promoted landslides triggered mainly by climate factors. The geological and geomorphological features characterizing the Valmozzola case study affect the entire study area, as they evolved during the same tectonic and climatic phases that characterized this part of the Northern Apennines. Therefore, the results from the Valmozzola area act as a proxy to constrain the control exerted by tectonics on large landslides across a wider area. The distribution of the large landslides has been controlled by tectonics which determined lines of weakness and failure surfaces (passive role) affecting the slopes. On the other hand, tectonics also caused the topographic growth and over-steepening of the slopes (active role) that promoted the occurrence of large landslides. The distribution of large landslides may, therefore, highlight the existence of tectonic processes and it may be used as an indicator of regional-scale tectonic activity, once the geological and geomorphological framework is well constrained. (C) 2015 Elsevier B.V. All rights reserved.
机译:意大利北部亚平宁山脉通常引起滑坡的原因不能完全解释沿区域尺度构造结构(晚造山反形体)观察到的大型滑坡的定向分布。这项工作的目的是深入探讨构造学在控制大型滑坡发展和布置中的作用。我们采用了多学科方法,将地貌和地质现场数据,地形分析和深地震反射剖面与先前发布的磷灰石裂变径迹冷却年龄,浅层地球物理数据和GPS数据结合在一起。为了探讨这些关系,Valmozzola地区被选为合适的案例研究,因为最近的伸展断层与相关裂缝和活动滑坡要素之间存在明确表达的关系。此外,在瓦尔莫佐拉地区,收缩构造作用引起岩石隆升,从而引起地形生长。这些过程使山坡接近其阈值角,并促进了主要由气候因素触发的滑坡。 Valmozzola案例研究的特征性地质和地貌特征影响了整个研究区域,因为它们是在北部亚平宁山脉的同一构造和气候阶段演变而来的。因此,Valmozzola地区的结果可以替代构造学对更广泛区域的大型滑坡施加的控制。大滑坡的分布已通过构造学来控制,构造学确定了影响斜坡的脆弱线和破坏面(被动作用)。另一方面,构造学也引起地形的增长和斜坡的过度加深(主动作用),从而促进了大滑坡的发生。因此,一旦地质和地貌框架受到很好的约束,大型滑坡的分布可能会突出表明构造过程的存在,并且可以用作区域规模构造活动的指标。 (C)2015 Elsevier B.V.保留所有权利。

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