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首页> 外文期刊>Geological Magazine >From soft sediment deformation to fluid assisted faulting in the shallow part of a subduction megathrust analogue: the Sestola Vidiciatico tectonic Unit (Northern Apennines, Italy)
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From soft sediment deformation to fluid assisted faulting in the shallow part of a subduction megathrust analogue: the Sestola Vidiciatico tectonic Unit (Northern Apennines, Italy)

机译:从软沉积物变形到展开巨头模拟的浅部分中的流体辅助断层:SeStola Vidiciato构造单元(意大利北亚平宁山脉)

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摘要

The Sestola Vidiciatico tectonic Unit (SVU) accommodated the early Miocene convergence between the subducting Adriatic plate and the overriding Ligurian prism, and has been interpreted as a field analogue for the shallow portion of subduction megathrusts. The SVU incorporated sediments shortly after their deposition and was active down to burial depth corresponding to temperatures around 150 °C. Here, we describe the internal architecture of the basal thrust fault of the SVU through a multi-scale structural analysis and investigate the evolution of the deformation mechanisms with increasing burial depth. At shallow depth, the thrust developed in poorly lithified sediments which deformed by particulate flow. With increasing depth and lithification of sediments, deformation was accommodated in a meter scale, heterogeneous fault zone, including multiple strands of crack-and-seal shear veins, associated with minor distributed shearing in clay-rich domains and pressure solution. In the last stage, slip localized along a sharp, 20 cm thick shear vein, deactivating the fault zone towards the footwall. The widespread formation of crack-and-seal shear veins since the first stages of lithification indicates that failure along the thrust occurred at high fluid pressure and low differential stress already at shallow depth. Progressive shear localization occurs in the last phases of deformation, at temperatures typical of the transition to the seismogenic zone in active megathrusts.
机译:SESTOLA VIDICIATIACO构造单元(SVU)可容纳了底板亚得里亚片和覆盖利古里亚棱镜之间的早期内突会聚,并被解释为俯冲巨头浅层的​​田间模拟。 SVU在沉积后不久的沉积物掺入,并向对应于约150℃的温度的温度致下粗糙深度。在这里,我们通过多尺度结构分析描述SVU基底推力故障的内部架构,并研究了随着埋藏深度的变形机制的演变。在浅深度下,推力在颗粒流动变形的沉积物中产生的推力。随着沉积物的深度和纤维化,变形以仪表秤,异质断裂带,包括多条裂缝 - 密封剪切静脉,与富含粘土的结构域和压力溶液中的次要分布式剪切相关。在最后阶段,沿着夏普,20厘米的厚剪力静脉定位,使故障区朝向脚壁停用。裂缝和密封剪切静脉的广泛形成,因为锂电的第一阶段表示沿着推力的故障发生在高流体压力和浅层深度下的低差分应力。进步剪切定位发生在变形的最后相位,在典型的过渡到活性巨大的透明区的温度。

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