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The Interplay of Eclogitization and Deformation During Deep Burial of the Lower Continental Crust-A Case Study From the Bergen Arcs (Western Norway)

机译:下大陆壳深埋过程中凝结和变形的相互作用-以卑尔根弧为例(挪威西部)

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摘要

The island of Holsnoy in the Bergen Arcs, which belong to the Caledonides of western Norway, represents an excellent example of how fluid-induced eclogitization modifies material deeply buried by subduction and continental collision. We produced a new detailed map of the northwestern part of Holsnoy, differentiating not only the magnitude of eclogitization but also the strain intensity at different spatial scales: from the outcrop to the entire massif. Using structural data from eclogite-facies shear zones and eclogitized low-strain domains, we show that fluid-mediated eclogitization not only progresses via the development of shear zones (dynamic eclogitization) but occurs over large areas of the island without associated deformation, creating a characteristic static eclogite-facies overprint. Static eclogitization preserves the structural features of the granulitic protolith while the rock body is transformed from a granulite- to an eclogite-facies mineral assemblage. The extent of static eclogitization was underestimated strongly in the past, a finding also relevant for the interpretation of seismological images in currently active orogens, where presumably similar processes are currently occurring. In addition, we find that the general structure of the eclogite-facies shear zones is scale-independent over several orders of magnitude. Although crustal-scale eclogite-facies complexes are rarely preserved without significant modification during exhumation, this implies that similar geometrical configurations are likely produced at the scale of the whole lower crust during subduction or continental collision and therefore shape the crustal geophysical signature.
机译:卑尔根弧线上的霍尔斯诺伊岛属于挪威西部的加里东德群岛,它是流体诱发的凝结作用如何改变俯冲和大陆碰撞深层掩埋的物质的一个很好的例子。我们绘制了Holsnoy西北部的新详细地图,不仅区分了凝结的幅度,而且还区分了不同空间尺度(从露头到整个地块)的应变强度。利用来自榴辉岩相剪切带和胶凝低应变域的结构数据,我们发现流体介导的胶凝不仅通过剪切带的发展而进行(动态胶凝),而且发生在岛屿的大片区域而没有相关的变形,从而形成了典型的静态榴辉岩相叠印。静态岩化作用保留了粒状原生岩的结构特征,而岩体则由粒状-榴辉岩相矿物组合转变。过去,强烈地低估了静态凝结作用的程度,这一发现也与当前活跃的造山带中地震图像的解释有关,而目前这些造山带可能正在发生类似的过程。此外,我们发现榴辉岩相剪切带的总体结构在几个数量级上是尺度独立的。尽管在发掘过程中很少保留地壳规模的榴辉岩相复合物,而没有进行明显的修改,但这意味着在俯冲或大陆碰撞过程中,可能在整个下地壳的尺度上产生相似的几何构造,从而塑造了地壳的地球物理特征。

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  • 来源
    《Tectonics》 |2019年第4期|898-915|共18页
  • 作者单位

    Free Univ Berlin, Inst Geol Sci, Berlin, Germany;

    Sorbonne Univ, CNRS, INSU, Inst Sci Terre Paris,ISTeP,UMR 7193, Paris, France;

    Free Univ Berlin, Inst Geol Sci, Berlin, Germany;

    Univ Oslo, CEED, Dept Geosci, Oslo, Norway;

    Free Univ Berlin, Inst Geol Sci, Berlin, Germany|Deutsch GeoForschgszentrum, Potsdam, Germany;

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