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首页> 外文期刊>Journal of earth system science >Emplacement kinematics of nepheline syenites from the Terrane Boundary Shear Zone of the Eastern Ghats Mobile Belt, west of Khariar, NW Orissa: Evidence from meso- and microstructures
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Emplacement kinematics of nepheline syenites from the Terrane Boundary Shear Zone of the Eastern Ghats Mobile Belt, west of Khariar, NW Orissa: Evidence from meso- and microstructures

机译:来自西北奥里萨邦哈里亚尔以西东高止山脉活动带的地层边界剪切带的霞石正长岩的运动学:来自中微结构的证据

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Nepheline syenite plutons emplaced within the Terrane Boundary Shear Zone of the Eastern Ghats Mobile Belt west of Khariar in northwestern Orissa are marked by a well-developed magmatic fabric including magmatic foliation, mineral lineations, folds and S-C fabrics. The minerals in the plutons, namely microcline, orthoclase, albite, nepheline, hornblende, biotite and aegirine show, by and large, well-developed crystal faces and lack undulose extinction and dynamic recrystallization, suggesting a magmatic origin. The magmatic fabric of the plutons is concordant with a solid-state strain fabric of the surrounding mylonites that developed due to noncoaxial strain along the Terrane Boundary Shear Zone during thrusting of the Eastern Ghats Mobile Belt over the Bastar Craton. However, a small fraction of the minerals, more commonly from the periphery of the plutons, is overprinted by a solid state strain fabric similar to that of the host rock. This fabric is manifested by discrete shear fractures, along which the feldspars are deformed into ribbons, have undergone dynamic recrystallization and show undulose extinction and myrmekitic growth. The shear fractures and the magmatic foliations are mutually parallel to the C-fabric of the host mylonites. Coexistence of concordant solid state strain fabric and magmatic fabric has been interpreted as a transitional feature from magmatic state to subsolidus deformation of the plutons, while the nepheline syenite magma was solidifying from a crystal-melt mush state under a noncoaxial strain. This suggests the emplacement of the plutons synkinematic to thrusting along the Terrane Boundary Shear Zone. The isotopic data by earlier workers suggest emplacement of nepheline syenite at 1500 + 3/a?’ 4Ma, lending support for thrusting of the mobile belt over the craton around that time.
机译:在奥里萨邦西北部哈里亚尔以西的东高止山脉移动带的地层边界剪切带中放置的霞石正长岩类岩屑岩,发育良好的岩浆织物具有标志性作用,包括岩浆叶,矿物纹,褶皱和S-C织物。小行星中的矿物质,即微斜晶,正长石,钠长石,霞石,角闪石,黑云母和a草碱,总体上发育良好,晶体面丰富,没有过度消光和动态重结晶,表明岩浆成因。岩浆岩的岩浆构造与周围的淀粉岩的固态应变构造一致,该构造是由于东部高止山脉活动带在Bastar Craton上被推挤时,沿Terrane边界剪切带产生的非同轴应变而形成的。但是,一小部分矿物(通常来自云母的外围)被类似于基质岩石的固态应变织物套印。这种织物表现为离散的剪切断裂,长石沿着该断裂变形为带状,经历了动态再结晶并显示出过度消光和生肌生长。剪切裂缝和岩浆页岩相互平行于主体my石的C纤维。一致的固态应变织物和岩浆织物的共存被认为是岩浆从岩浆状态到亚固相线变形的过渡特征,而霞石正长岩浆则在非同轴应变下从熔体熔凝状态凝固。这表明与沿地层边界剪切带逆冲作用的运动学上的岩体位置有关。早期工作人员的同位素数据表明,霞石正长岩在1500 + 3 / a?4Ma的位置进位,这为在该时间段将移动带推入克拉通提供了支持。

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