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High-temperature deformation in the basal shear zone of an eclogite-bearing fold nappe, Sveconorwegian orogen, Sweden

机译:瑞典Sveconorwegian造山带含榴辉岩褶皱推覆带基底剪切带的高温变形

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Ductile shear zones associated with emplacement of high-pressure nappes are key features to resolve exhumation mechanisms. The Eastern Segment of the Sveconorwegian orogen hosts an eclogite-bearing fold nappe, whose basal shear zone shows structures associated with emplacement of the eclogite-bearing nappe and decompression under high to intermediate pressure granulite and upper amphibolite fades conditions. Based on detailed structural mapping of a 4 km well-exposed section of the basal shear zone, we describe two major phases of deformation. An early deformation stage (D1) formed a penetrative gneissic foliation and tectonic layering, including isoclinal folds (F1). The sequence was subsequently affected by up to km-scale tight south-vergent folds (F2) with sheared out limbs. At the outcrop scale, asymmetric F2 folds are commonly S-vergent, but symmetric folds with different degrees of tightness are also present. Melt was present at all stages of deformation and the structural relations demonstrate mutual feedback between melt localization and fold formation. F2 folds have shallowly E-plunging fold axis parallel to a stretching lineation defined by high-grade mineral aggregates. Both constitute prominent structures of the basal shear zone. F2-folds are associated with an axial planar fabric (S2), defined by upper-amphibolite- and locally granulite-facies mineral assemblages. D2 shear structures are associated with top-to-the-east kinematic indicators throughout the section. The D1 episode was responsible for emplacement of the eclogite-nappe into its present structural position. The subsequently developed lineation-parallel folds are interpreted to form by general shear, where the structures reflect the regional E-directed flow of the entire eclogite-nappe. (C) 2015 Elsevier B.V. All rights reserved.
机译:与高压尿布安置相关的韧性剪切区是解决发掘机制的关键特征。 Sveconorwegian造山带的东部段有一个含榴辉岩的褶皱推覆带,其基底剪切带显示了与含榴辉岩的推覆的定位和在高至中压花岗石和上部角闪岩褪色条件下减压有关的结构。根据基底剪切区4 km暴露良好的剖面的详细结构图,我们描述了变形的两个主要阶段。早期变形阶段(D1)形成了渗透性片麻状叶面和构造分层,包括等时线褶皱(F1)。随后,该序列受到肢体剪断的高达千米规模的紧紧的南边界褶皱(F2)的影响。在露头尺度上,不对称的F2褶皱通常呈S形,但也存在具有不同紧度的对称褶皱。熔体存在于变形的各个阶段,并且结构关系表明熔体局部化和褶皱形成之间存在相互反馈。 F2折具有浅的E插入折轴,平行于由高级矿物聚集体定义的伸展线。两者都构成了基底剪切带的突出结构。 F2折叠与轴向平面织物(S2)有关,该织物由上闪石和局部花岗石相矿物组合定义。在整个剖面中,D2剪切结构与自上而下的运动学指标相关。 D1发作负责将榴辉岩推入其当前结构位置。随后产生的平行线褶皱是由普通剪切解释形成的,该结构反映了整个榴辉岩-尿布的区域E向流动。 (C)2015 Elsevier B.V.保留所有权利。

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