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Modes of fault reactivation from analogue modeling experiments: Implications for the seismotectonics of the Southern Adriatic foreland (Italy)

机译:模拟建模实验中断层复活的模式:对南亚得里亚海前陆(意大利)地震构造的启示

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The active tectonics at the front of the Southern Apennines and in the Adriatic foreland is characterized by E-W striking, right-lateral seismogenic faults, interpreted as reactivated inherited discontinuities. The best studied among these is the Molise-Gondola shear zone (MGsz). The interaction of these shear zones with the Apennines chain is not yet clear. To address this open question, we developed a set of scaled analogue experiments, aimed at analyzing: (1) how dextral strike-slip motion along a pre-existing zone of weakness within the foreland propagates toward the surface and affects the orogenic wedge; (2) the propagation of deformation as a function of increasing displacement; (3) any insights on the active tectonics of Southern Italy. Our results stress the primary role played by these inherited structures when reactivated, and confirm that regional E-W dextral shear zones are a plausible way of explaining the seismotectonic setting of the external areas of the Southern Apennines.
机译:在南亚平宁山脉的前部和亚得里亚海前陆的活跃构造,其特征是由E-W震荡的右侧地震成因断裂,解释为重新激活的继承的不连续性。其中最好的研究是莫利塞-贡多拉剪切带(MGsz)。这些剪切带与亚平宁链的相互作用尚不清楚。为了解决这个悬而未决的问题,我们开发了一组按比例缩放的模拟实验,旨在分析:(1)沿前陆中先前存在的薄弱区域的右旋走滑运动如何向地面传播并影响造山楔; (2)变形的传播与位移的增加有关; (3)对意大利南部活跃构造的任何见解。我们的结果强调了这些遗传结构在重新激活时所起的主要作用,并证实了区域E-W右旋剪切带是解释南部亚平宁山脉外部地震构造背景的一种可行方式。

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