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首页> 外文期刊>Journal of structural geology >Shearing of magma along a high-grade shear zone: Evolution of microstructures during the transition from magmatic to solid-state flow
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Shearing of magma along a high-grade shear zone: Evolution of microstructures during the transition from magmatic to solid-state flow

机译:沿高剪切带的岩浆剪切:从岩浆流到固态流过渡过程中的微观结构演变

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摘要

Syntectonic plutons may record short-lived geological events related to crustal melting and deformation of the continental crust. Therefore, interpretation of microstructure and orientation of fabrics is critical in order to constrain space/time/temperature/deformation relationships during pluton crystallization. Here we describe the transition from magmatic to solid-state deformation in the late-Variscan Diorite-Granite Suite (DCS) emplaced along the Santa Lucia Shear Zone. The systematic collection of meso-, micro-structural and quartz < c > axis data allow us to examine the spatial distribution and the mode of superposition of different fabrics. We identify three magmatic microfabric types, thought to reflect the microstructural evolution at decreasing melt content during pluton crystallization. Our data suggest that diffusion creep, dislocation creep and grain-scale fracturing cooperated in accommodating the shearing of the partially molten quartzofeldspathic aggregate. We suggest that the switch from upward to horizontal magmatic flow occurred at melt fractions ~0.40, and that most of the hypersolidus fabrics formed during horizontal flow, reflecting the stress field imposed by the shear zone, and preserving no memory of the ascent stage.
机译:同构构造体可能记录与地壳融化和大陆壳变形有关的短暂地质事件。因此,织物的微观结构和取向的解释是至关重要的,以便在胶子结晶期间限制空间/时间/温度/变形关系。在这里,我们描述了沿圣卢西亚剪切带布置的晚期Varisscan Diorite-Granite Suite(DCS)中从岩浆变形到固态变形的过渡。细观,微观结构和石英c轴数据的系统收集使我们能够检查不同织物的空间分布和叠加模式。我们确定了三种岩浆微结构类型,认为它们反映了在岩体结晶过程中熔体含量降低时的微观结构演变。我们的数据表明,扩散蠕变,位错蠕变和晶粒度破裂协同作用以适应部分熔融的石英长石骨料的剪切。我们认为从向上的岩浆流动到水平的岩浆流动的转变发生在熔体分数 〜0.40,大多数超固相织物在水平流动时形成,反映了剪切区施加的应力场,并且没有保留上升阶段的记忆。

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