首页> 外文期刊>Journal of Asian earth sciences >Characterizing a middle to upper crustal shear zone: Microstructures, quartz c-axis fabrics, deformation temperatures and flow vorticity analysis of the northern Ailao Shan-Red River shear zone, China
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Characterizing a middle to upper crustal shear zone: Microstructures, quartz c-axis fabrics, deformation temperatures and flow vorticity analysis of the northern Ailao Shan-Red River shear zone, China

机译:中上地壳剪切带的特征:中国北部哀牢山-红河剪切带的微观结构,石英c轴织物,形变温度和流动涡度分析

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Structural and microstructural characteristics, deformation temperatures and flow vorticities of the northern Ailao Shan (ALS) high-grade metamorphic belt provide significant information regarding the nature and tectonic evolution of the Ailao Shan-Red River (ASRR) shear zone. Mineral deformation mechanisms, quartz lattice-preferred orientation (LPO) patterns and the opening angles of quartz c-axis fabrics of samples from the Gasa section indicate that the northern ALS high-grade metamorphic belt has experienced progressive shear deformation. The early stage shearing is characterized by a gradual decrease of deformation temperatures from >650 degrees C at the northeastern unit to ca. 300 degrees C at the southwestern unit, that results in the formation of migmatites, mylonitic gneisses, thin bedded mylonites, mylonitic schists and phyllonites from the NE to SW across the strike of the shear zone. The late stage low-temperature (300-400 degrees C) shearing is superimposed on the early deformation throughout the belt with the formation of discrete, small-scale shear zones, especially in the thin-banded mylonitic rocks along both margins. The kinematic vorticity values estimated by rotated rigid porphyroclast method and oblique grainshaped/quartz c-axis-fabric method imply that the general shear-dominated flow (0.49-0.77) progressively changed to a simple shear-dominated flow (0.77-1) toward the late stage of ductile deformation. The two stages of shearing are consistent with early shortening-dominated and late extrusion-controlled regional tectonic processes. The transition between them occurred at ca. 27 Ma in the ALS high-grade metamorphic belt along the ASRR shear zone. The large amount of strike-slip displacement along the ASRR shear zone is predominantly attributed to accelerated flow along the shear zone during the late extrusion-controlled tectonic process. (C) 2016 Elsevier Ltd. All rights reserved.
机译:北部哀牢山(ALS)高级变质带的结构和微结构特征,变形温度和流动涡度为哀牢山-红河(ASRR)剪切带的性质和构造演化提供了重要信息。矿物变形机制,石英晶格优先取向(LPO)模式和加萨剖面样品的石英c轴织物的张开角表明,北部ALS高品位变质带经历了渐进剪切变形。早期剪切的特征是变形温度从东北单元的> 650摄氏度逐渐降低到大约1200摄氏度。西南单元的温度为300摄氏度,在剪切区域的走向范围内,从东北到西南形成了硅铁石,长条麻状片麻岩,薄层状长条棉石,长条性片岩和层系石。后期低温(300-400摄氏度)剪切作用叠加在整个带的早期变形上,形成离散的小尺度剪切带,特别是在沿两个边缘的薄带似泥质岩石中。通过旋转刚性卟啉法和斜纹/石英c轴织物法估算的运动涡度值表明,一般的剪切为主流(0.49-0.77)逐渐变为简单的剪切为主流(0.77-1)。延性变形的后期。剪切的两个阶段与早期起伏为主和后期挤压控制的区域构造过程一致。他们之间的过渡发生在大约。沿ASRR剪切带的ALS高变质带中27 Ma。沿ASRR剪切带的大量走滑位移主要归因于后期挤压控制构造过程中沿剪切带的加速流动。 (C)2016 Elsevier Ltd.保留所有权利。

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