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Orogen-transverse tectonic window in the Eastern Himalayan fold belt: A superposed buckling model

机译:喜马拉雅东部褶皱带的造山带横向构造窗:叠加屈曲模型

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The Eastern Lesser Himalayan fold-thrust belt is punctuated by a row of orogen-transverse domal tectonic windows. To evaluate their origin, a variety of thrust-stack models have been proposed, assuming that the crustal shortening occurred dominantly by brittle deformations. However, the Rangit Window (RW) in the Darjeeling-Sikkim Himalaya (DSH) shows unequivocal structural imprints of ductile deformations of multiple episodes. Based on new structural maps, coupled with outcrop-scale field observations, we recognize at least four major episodes of folding in the litho-tectonic units of DSH. The last episode has produced regionally orogen-transverse upright folds (F_4), the interference of which with the third-generation (F_3) orogen-parallel folds has shaped the large-scale structural patterns in DSH. We propose a new genetic model for the RW, invoking the mechanics of superposed buckling in the mechanically stratified litho-tectonic systems. We substantiate this superposed buckling model with results obtained from analogue experiments. The model explains contrasting F_3-F_4 interferences in the Lesser Himalayan Sequence (LHS). The lower-order (terrain-scale) folds have undergone superposed buckling in Mode 1, producing large-scale domes and basins, whereas the RW occurs as a relatively higher-order dome nested in the first-order Tista Dome. The Gondwana and the Proterozoic rocks within the RW underwent superposed buckling in Modes 3 and 4, leading to Type 2 fold interferences, as evident from their structural patterns.
机译:小喜马拉雅东部褶皱冲断带被一排造山带横向的末级构造窗所打断。为了评估它们的起源,已经提出了多种推力叠加模型,假设地壳缩短主要是由脆性变形引起的。但是,大吉岭-锡金喜马拉雅山(DSH)中的朗吉特窗口(RW)显示了多次发作的韧性变形的明确结构印记。基于新的结构图,加上露头规模的实地观察,我们认识到DSH岩石构造单元中至少有4个主要折叠事件。最后一集产生了区域造山带横向直立褶皱(F_4),其干扰与第三代(F_3)造山带平行褶皱形成了DSH的大规模结构模式。我们为RW提出了一种新的遗传模型,并在机械分层的岩石构造系统中调用了叠加屈曲的力学。我们用从模拟实验获得的结果来证实这个叠加的屈曲模型。该模型解释了小喜马拉雅序列(LHS)中F_3-F_4干扰的对比。低阶(地形尺度)褶皱在模式1中经历了叠加屈曲,产生了大型穹顶和盆地,而RW则是嵌套在一阶Tista穹顶中的相对较高阶的穹顶。从结构模式可以明显看出,RW中的冈瓦纳和元古代岩石在模式3和4中经历了叠加屈曲,导致了2型褶皱干扰。

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