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首页> 外文期刊>Journal of Asian earth sciences >Spatial variations in deformation mechanisms along the Main Central thrust zone: Implications for the evolution of the MCT in the Darjeeling -Sikkim Himalaya
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Spatial variations in deformation mechanisms along the Main Central thrust zone: Implications for the evolution of the MCT in the Darjeeling -Sikkim Himalaya

机译:中央主要逆冲带变形机制的空间变化:对大吉岭-锡金喜马拉雅山MCT演化的启示

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In the Darjeeling-Sikkim Himalaya, we recognize two distinct MCT sheets: the structurally higher MCT1 and the lower MCT2. Microstructural studies from three different segments along the transport direction of the MCT2 fault zone suggest that the fault has undergone strain softening by different mechanisms. The geometry of the tapered crystalline orogenic wedge resulted in variation of overburden along the MCT2. Strain softening by different deformation mechanisms accommodated translation of ≥100km along a thin MCT2 fault zone. As the mylonitic trailing part of the MCT2 in Pelling had the greatest overburden, deformation took place by dislocation creep in quartz and by microfracturing in feldspar. Reaction softening of feldspar produced an intrinsically weak matrix that primarily controlled the deformation, resulting in a strain softening fault zone. At Soreng MCT2 zone, under intermediate crustal conditions, finer-grained recrystallized quartz and micaceous matrix deformed by grain-size sensitive diffusion creep mechanisms resulting in strain softening. The fault rocks at Sivitar had the least overburden and record a prominent mineralogical change from the protolith; strain softening occurred by pressure solution slip, possibly by a combination of grain-size reduction by cataclasis and an increase in fluid activity.
机译:在大吉岭-锡金喜马拉雅山,我们认识到两个截然不同的MCT表:结构较高的MCT1和较低的MCT2。沿MCT2断层带传输方向从三个不同部分进行的微结构研究表明,断层通过不同的机制经历了应变软化。锥形晶体造山楔的几何形状导致沿MCT2的覆盖层变化。通过不同的变形机制使应变软化,可沿着薄的MCT2断裂带平移≥100 km。由于Pelling的MCT2的条带状拖尾部分具有最大的覆盖层,因此变形是通过石英中的位错蠕变和长石的微破裂而发生的。长石的反应软化产生了本质上较弱的基体,该基体主要控制了变形,从而导致了应变软化断裂带。在Soreng MCT2区,在中等地壳条件下,细晶粒的重结晶石英和云母质基质由于粒度敏感的扩散蠕变机制而变形,从而导致应变软化。西维塔尔的断层岩层覆盖最小,记录了原生岩的显着矿物学变化。应变软化是由压力溶液滑移引起的,可能是由于催化作用使粒度减小和流体活度增加的组合。

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