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首页> 外文期刊>Gondwana research: international geoscience journal >Alkaline magmatism versus collision tectonics in the Eastern Ghats Belt, India: Constraints from structural studies in the Koraput Complex
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Alkaline magmatism versus collision tectonics in the Eastern Ghats Belt, India: Constraints from structural studies in the Koraput Complex

机译:印度东高止山脉的碱性岩浆作用与碰撞构造:来自Koraput复杂构造研究的限制

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Linear domains of deformed alkaline rocks and carbonatites have recently been identified as representing sites of ancient suture zones. In peninsular India, the western margin of the Proterozoic Eastern Ghats Belt (EGB) is characterized by a series of alkaline plutons that are aligned close to the contact with the Archaean Craton. Most of the complexes were deformed and metamorphosed during a subsequent orogenic event. Unlike other plutons in the belt, the alkaline complex at Koraput reportedly escaped deformation and granulite facies metamorphism forming an anomalous entity within the zone. Multiply-deformed country rocks hosting this complex underwent syn-D-1CR granulite facies metamorphism followed by D-2CR thrusting, with pervasive shearing along a NE-SW trending foliation. A second granulite facies event followed localized D-3CR shearing. Within the Koraput Complex, strain partitioning was responsible for preserving igneous textures in the gabbroic core, but aligned magmatic amphibole needles and plagioclase laths occasionally define a S-1AC fabric. Along the margins, S-1AC is rotated parallel to a NE-trending, east-dipping S-2AC fabric in the gabbro, fringing syenodiorite and nepheline syenite bands. Locally, D-3AC shearing follows D-2AC deformation; S-2AC and S-3AC parallel S-2CR and S-3CR in the country rocks. High-grade metamorphism represented by recrystallization of amphibole and plagioclase, and breakdown of amphibole and biotite to garnet, pyroxene and K-feldspar in the complex follows D-3AC. Unlike earlier reports, therefore, the Koraput body is also deformed and metamorphosed. The aligned alkaline complexes in the EGB probably represent deformed alkaline rocks and carbonatites formed by rifting related to an earlier episode of continental break-up that were deformed during subsequent juxtaposition of the EGB with the Archaean Craton. This supports the contention that the western margin of the EGB and its contact with the Archaean Craton is a suture zone related to the Indo-Antarctica collision event.
机译:变形的碱性岩石和碳酸盐岩的线性区域最近被确定为代表古代缝合带的地点。在印度半岛,元古代的东高止山脉带(EGB)的西边缘的特征是一系列碱性俯冲体,这些俯冲体排列成与古生克拉通接触紧密。在随后的造山事件中,大多数复合物都发生了变形和变质。与该带中的其他云母不同,据报道,科拉普特的碱性复合物逃脱了变形和颗粒状相变质作用,形成了该区域内的异常实体。容纳该复合体的多次变形的乡村岩石经历了syn-D-1CR花岗岩相变质作用,然后进行了D-2CR逆冲作用,并沿NE-SW趋势页岩进行了普遍的剪切作用。局部D-3CR剪切之后是第二次粒岩相事件。在科拉普特综合体中,应变分配负责保留辉长岩岩心中的火成质地,但对齐的岩浆闪石针和斜长石条有时会形成S-1AC织物。沿着边缘,S-1AC平行于长颈鹿中的NE趋势,向东浸入的S-2AC织物旋转,边缘有蛇纹石和霞石正长岩带。 D-3AC剪切在局部随D-2AC变形而变化。 S-2AC和S-3AC在乡村岩石中与S-2CR和S-3CR平行。 D-3AC之后,以闪石和斜长石的重结晶以及闪石和黑云母分解为石榴石,辉石和钾长石为代表的高级变质作用。因此,与早期报道不同,科拉普特人的身体也变形和变态。 EGB中对齐的碱性复合物可能代表通过裂谷形成的变形的碱性岩石和碳酸盐岩,与早期大陆分裂有关,这些裂变在随后的EGB与古生的克拉通并置时变形。这支持了以下观点:EGB的西缘及其与古生克拉通的接触是与印度-南极洲碰撞事件有关的缝合带。

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