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首页> 外文期刊>Journal of structural geology >Polyphase ductile/brittle deformation along a major tectonic boundary in an ophiolitic nappe, Alpine Corsica: Insights on subduction zone intermediate-depth asperities
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Polyphase ductile/brittle deformation along a major tectonic boundary in an ophiolitic nappe, Alpine Corsica: Insights on subduction zone intermediate-depth asperities

机译:沿滑石质推覆岩浆的主要构造边界发生的多相韧性/脆性变形:俯冲带中等深度凹凸不平的见解

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In an ophiolitic nappe of Alpine Corsica, a major fault zone superimposes metagabbro over serpentinite and peridotite. Ductile and brittle deformation structures are observed in the fault damage zones. In the metagabbro damage zone, early deformation culminates in blueschist or eclogite facies conditions and consists of west-verging mylonitization alternating with pseudotachylyte-forming faulting with undetermined vergence. This early deformation is likely coeval with west-verging seismic (pseudotachylyte-forming) reverse faulting in the footwall peridotite or with aseismic distributed cataclastic deformation of footwall serpentinite. These early events (aseismic mylonitization or distributed cataclasis and seismic faulting) are interpreted as reverse faulting/shear in an east-dipping subducting oceanic lithosphere in Cretaceous to Eocene times. Late deformation events consist of ductile shear and seismic faulting having occurred under retrograde greenschist conditions. Kinematics of the ductile shear is top-to -the-east. These events are interpreted as the result of syn-to post-collision extension of Alpine Corsica in Eocene to Miocene times. The heterogeneous distribution of pseudotachylyte veins along the fault zone (abundant at peridotite-metagabbro interfaces, rare or absent at serpentinite-metagabbro interfaces) is interpreted as the consequence of contrasted frictional properties of the rocks in contact. High-friction peridotite-metagabbro contacts could correspond to asperities whereas low-friction serpentinite-metagabbro contacts could correspond to creeping zones. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在高山可西嘉岛的一个滑石质尿布中,一个主要断层带将蛇纹石和蛇纹岩和橄榄岩叠置。在断层破坏带观察到韧性和脆性变形结构。在变质带破坏区,早变形在蓝片岩或榴辉岩相条件下达到顶峰,由西向的髓系化作用与假速溶形成的断层交替,具有不确定的辐散度组成。这种早期变形可能与下盘橄榄岩中向西趋向的地震(假正卵形岩形成)逆断层或下盘蛇纹岩的抗震分布的碎裂变形同时发生。在白垩纪至始新世的一次东倾俯冲的大洋岩石圈中,这些早期事件(抗震性的隆隆化或分布的破坏和地震断裂)被解释为反向断裂/剪切。后期变形事件包括在逆行格林斯蒂条件下发生的韧性剪切和地震断裂。韧性剪切的运动学是自上而下的。这些事件被解释为始新世至中新世的高山科西嘉发生了自碰撞到碰撞后延伸的结果。沿断层带的假速溶质脉的不均匀分布(在橄榄岩-变质界面处丰富,在蛇纹石-变质界面处很少或不存在)被解释为接触岩石的摩擦特性对比的结果。高摩擦的橄榄岩-变质接触可能对应于粗糙,而低摩擦的蛇纹石-变质接触可能对应于蠕变区。 (C)2016 Elsevier Ltd.保留所有权利。

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