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首页> 外文期刊>Journal of structural geology >Control of the geometry of precursor brittle structures on the type of ductile shear zone in the Adamello tonalites, Southern Alps (Italy)
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Control of the geometry of precursor brittle structures on the type of ductile shear zone in the Adamello tonalites, Southern Alps (Italy)

机译:控制南部阿尔卑斯山阿达梅洛同色岩中韧性剪切带类型的前体脆性结构的几何形状(意大利)

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Amphibolite facies ductile shear zones developed during the immediate post-intrusive cooling history of the Adamello tonalites (Southern Alps, Italy). Shear zones include: (ⅰ) thin (a few mm's thick) fault-like shear zones that accommodate shear strain values up to several 100's (the dominant type); (ⅱ) mylonitic horizons (dm's thick) in sharp contact with the undeformed wall rock; (ⅲ) continuous shear zones with sigmoidal-shaped S or composite S-C' foliations. A transition between the different types occurs along strike over short distances. Discontinuous shear zones are also localized on pegmatite dykes and quartz veins, and both (ⅰ) and (ⅱ) are discontinuously outlined by quartz layers. Detailed surface mapping reveals that most fault-like shear zones are arranged en-echelon, mainly forming contractional steps. Markers crosscut by shear zones allow the displacement to be measured at several positions along shear zones and this reveals very steep displacement gradients close to the shear zone tips. Differential displacement is mainly accommodated at contractional steps by the development of foliated domains. Geochemical analyses of major and trace elements show that there is no compositional change along strain gradients. The overall features are consistent with nucleation of shear zones on former sets of en-echelon joints, in many cases intruded by pegmatite dykes or filled with quartz. Reactivation of joints produced strongly localized shear zones, whereas broader foliated zones evolved from the contractional jogs between adjacent stepped joint terminations during progressive shearing. These jogs were progressively involved in the accommodation of shear displacement and overall shear zone development. .
机译:闪石岩相韧性剪切带是在阿达梅洛同色岩(意大利南部阿尔卑斯山)侵入后立即冷却的历史期间形成的。剪切带包括:(ⅰ)像断层一样薄(几毫米厚)的断层剪切带,可容纳高达100的剪切应变值(主要类型); (ⅱ)与未变形的围岩急剧接触的mylonitic层位(dm厚); (ⅲ)具有S形或S-C'复合叶片的连续剪切带。不同类型之间的过渡会沿着短距离的打击发生。不连续的剪切带也位于伟晶岩脉和石英脉上,(ⅰ)和(ⅱ)都被石英层不连续地勾勒出轮廓。详细的表面作图表明,大多数断层状剪切带均按梯级排列,主要形成收缩台阶。被剪切区横切的标记允许沿着剪切区在几个位置处测量位移,这显示了靠近剪切区尖端的非常陡峭的位移梯度。差异位移主要通过叶状结构域的发展而在收缩步骤中得到适应。主要和微量元素的地球化学分析表明,沿应变梯度没有组成变化。整体特征与前一组梯形节理上的剪切带形核相一致,在许多情况下是由伟晶岩堤侵入或充满石英。接头的重新激活产生了强烈的局部剪切区域,而较宽的叶状区域则是在渐进剪切过程中从相邻阶梯状接头终端之间的收缩点动处演化而来的。这些慢跑逐渐参与了剪切位移的调节和整个剪切区的发展。 。

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