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首页> 外文期刊>Journal of Metamorphic Geology >Inverted Oligo-Miocene metamorphism in the Lesser Himalaya Sequence, Arunachal Pradesh, India; age and grade relationships
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Inverted Oligo-Miocene metamorphism in the Lesser Himalaya Sequence, Arunachal Pradesh, India; age and grade relationships

机译:印度阿鲁纳恰尔邦(Arunachal Pradesh)小喜马拉雅层序中的中新世中反变质作用;年龄和等级关系

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The Lesser Himalaya sequence in the Siyom Valley, eastern Arunachal Pradesh, exposes a telescoped and inverted greenschist-upper amphibolite facies sequence over similar to 20 km, tectonically overlain by an upright (grade decreasing upward) granulite to lower amphibolite facies sequence over similar to 30 km. Such grade relationships would normally attribute the boundary to a Main Central Thrust (MCT) structure, and predict a change from underlying Lesser Himalaya Sequence (LHS) to Greater Himalaya Sequence rocks across the boundary. However, all pelitic and psammitic samples have similar detrital- zircon age spectra, involving c. 2500, 1750-1500, 1200 and 1000 Ma Gondwanan populations correlated with the LHS. Isograds are broadly parallel to a penetrative NW-dipping S2 foliation, developed contemporaneously with the inversion. Garnet growth in garnet, staurolite and kyanitezone schists beneath the thrust commenced at >8 kbar and approximate to 550 degrees C, before syn-to post-S2 heating of staurolite and kyanite-zone rocks to approximate to 640 degrees C at approximate to 8.5 kbar, most probably at c. 18.5 Ma. Kyanite-rutile-garnet migmatite immediately above the thrust records peak conditions of approximate to 10 kbar and approximate to 750 degrees C and c. 21.5 Ma monazite ages. Slip on a SE-propagating thrust was likely contemporaneous with early Miocene metamorphism, based on the distribution of structure, metamorphic textures, and overlap of age relationships. It is inferred to have initially controlled the uplift of granulite to midcrustal levels between 22 and 19 Ma, thermal relaxation within a disrupted LHS metamorphic profile inducing a post-S2 thermal peak in lower grade footwall rocks.
机译:位于阿鲁纳恰尔邦东部的西约姆河谷的小喜马拉雅层序,暴露了一个伸缩的和倒置的绿片岩-上层角砾岩相序列,覆盖了约20 km,构造上被一个直立的(层级逐渐下降)麻粒岩覆盖,下层的角砾岩相序列超过了约30公里这样的坡度关系通常会将边界归因于主中心逆冲(MCT)结构,并预测从边界穿过底层喜马拉雅层序(LHS)到更大喜马拉雅层序岩石的变化。但是,所有的古生和皂石样品具有相似的碎屑锆石年龄谱,涉及c。 2500、1750-1500、1200和1000 Ma冈瓦南人口与LHS相关。 Isograds与渗透性NW浸入的S2叶脉大致平行,与反演同时发展。推力之下的石榴石,星形石和蓝晶岩片岩中的石榴石生长始于> 8 kbar,约550摄氏度,然后在S2加热后,将星形石和蓝晶石带岩石同步加热至约640摄氏度,约8.5 kbar。 ,最有可能在c。 18.5马紧靠推力上方的蓝晶石-金红石-石榴石辉镁石记录了大约10 kbar以及大约750摄氏度和730摄氏度的峰值条件。 21.5玛瑙独居石年龄。基于结构分布,变质纹理和年龄关系的重叠,东南传播的推力滑移可能与中新世早期变质同时发生。可以推断,最初已将花岗石的隆升控制在22Ma至19Ma之间,在破裂的LHS变质剖面内的热松弛在较低品位的下盘岩中引起了S2后的热峰。

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