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Localized ductile shear below the seismogenic zone: Structural analysis of an exhumed strike-slip fault, Austrian Alps

机译:地震发生带下方的局部韧性剪切:奥地利阿尔卑斯山一个发掘的走滑断层的结构分析

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摘要

The Miocene Salzachtal-Ennstal-Mariazell-Puchberg (SEMP) strike-slip fault in Austria allows study of the internal structure of a fault zone from the near surface to ~30 km depth. As it enters the Tauern Window along the Rinderkarsee shear zone, the SEMP fault passes from a dominantly brittle to a dominantly ductile structure. The shear zone consists of three 1- to 100-m-wide zones of brittle-ductile and ductile deformation separated by 500-m-wide zones of less deformed rocks. The southern shear zone is mylonitic, with ductile amphibole and plagioclase; weak crystal preferred orientations imply that the main deformation mechanism was dislocation-accommodated grain boundary sliding. The northern and central shear zones are characterized by discrete millimeter-wide shear zones with ductile quartz, muscovite, and biotite and brittle feldspar. Shear zone nucleation at the grain scale involved dislocation creep and the transformation of plagioclase to muscovite; strain then localized in muscovite-rich grain boundary shear zones that linked to form throughgoing shear zones.
机译:奥地利的中新世Salzachtal-Ennstal-Mariazell-Puchberg(SEMP)走滑断层可以研究从近地表到约30 km深度的断层带的内部结构。当它沿着Rinderkarsee剪切带进入Tauern窗时,SEMP断层从脆性结构转变为韧性结构。剪切带由三个1至100 m宽的脆性和延性变形区组成,并由变形较小的岩石的500 m宽区隔开。南部的剪切带是似棉质的,具有韧性的角闪石和斜长石。较弱的晶体择优取向表明其主要变形机理是位错适应的晶界滑动。北部和中央剪切带的特征是离散的毫米宽剪切带,具有韧性石英,白云母,黑云母和脆性长石。晶粒尺度的剪切带形核包括位错蠕变和斜长石向白云母的转变。应变然后定位在富含白云母的晶界剪切带中,这些剪切带链接形成贯穿的剪切带。

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