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Migmatization, granite generation and melt accumulation in the Himalayan Orogenic Channel, Central and Eastern Bhutan

机译:喜马拉雅造山区,中央和东部的喜马拉雅造山区的Migmatization,Granite发电和熔体积累

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摘要

In Central and Eastern Bhutan Himalaya, the Great Himalayan Sequence (GHS) reveals mesoscopic structures within the migmatite-leucogranite association due to crustal anataxis above the Main Central Thrust (MCT). The first phase of dominant melting generates stromatitic migmatite along the main foliation during high grade of metamorphism, possibly by dehydration melting. Subsequent ductile strike-slip shearing caused in situ melting in dilatational sites to produce structureless, non-foliated patchy leucogranite leucosome as well as in boudin necks and post-tectonic patches. In addition, melt-enhanced deformation caused doming of accumulated melt and subsidiary ductile shear zones on either margins of these domes. Surrounded by biotite-rich melanosome, leucosomes destroy the pre-existing foliation during new anatectic phase, which post-dates earlier stromatitic migmatite. These migmatites are the snapshot of mutual relations between newly-developed migmatite and leucogranite melt, and signify the transportation of Himalayan Orogenic Channel to the extreme south in Central and Eastern Bhutan over the Lesser Himalayan sedimentary belt along the MCT.
机译:在中部和东部的不丹喜马拉雅山脉,伟大的喜马拉雅序列(GHS)揭示了由于主要中央推力(MCT)上方的地壳anataxis而导致Migmatite-Leucogranite关联内的介观结构。优势熔化的第一阶段沿着在高等级的变质期间沿着主要叶片产生仲霉菌酰霉菌,可能通过脱水熔化。随后的延性滑动滑剪在扩张位点原位熔化,以产生结构无结构,非叶片蛋白质的白细胞组,以及Boudin颈部和后构造贴片。此外,熔融增强的变形导致累积熔体和辅助延展性剪切区的垂直于这些圆顶的边缘。被生物酸盐富含黑素糖胺包围,白素体在新的含有阶段破坏了预先存在的叶子,该阶段之前的早期仲霉菌术后。这些Migmatites是新开发的Migmatite和Leucogranite融化之间的相互关系的快照,并在沿着MCT的较小的喜马拉雅沉积带上表示喜马拉雅orenainic渠道的交通到中央和东部的极端南方。

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