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Crustal Decoupling in Collisional Orogenesis: Examples from the East Greenland Caledonides and Himalaya

机译:碰撞奥发生的地壳脱耦:来自东格陵兰院·萨利登斯和喜马拉雅山的例子

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摘要

Mature orogenic systems built by continent-continent collision feature orogenic plateaus flanked by accretionary wedges. Thermal-mechanical models of these systems predict the development of a thermally weakened orogenic infrastructure that is capable of lateral flow toward the orogenic foreland. Such flow, if it occurs, strongly influences the evolutionary pathway of a wedge. Although the architecture of a wedge features numerous large-displacement faults, three are preeminent in mature orogens: one that marks the base of the wedge and two others that mark the base and top, respectively, of the weakened infrastructure. These structures represent major decoupling horizons separating domains with distinctive deformational and thermal histories. Reviews of the geology of orogenic wedges in two mature orogenic systems-the Cenozoic Himalaya and the Paleozoic East Greenland Caledonides-show how this simple conceptual model provides a valuable context for studies of how collisional orogenic systems develop and how they interact with the surrounding lithosphere.
机译:由大陆碰撞构建的成熟造山系统采用造山节孔隙,侧翼侧翼。这些系统的热电机械模型预测了能够向敌对前陆流向横向流动的热弱化造山基础设施的发展。这种流动,如果发生这种情况,强烈影响楔形的进化途径。虽然楔形的结构具有许多大排量故障,但是在成熟的Origens中卓越:一个标记楔形的底部,另外两个标记为底座和顶部的另外的基础设施。这些结构代表具有独特的变形和热历史的域的主要去耦视野。两种成熟的造山系统or发生楔形地质的评论 - 新生代喜马拉雅和古生代东格陵兰赛赛尼谷族 - 展示了这种简单的概念模型如何为群岛敌对系统发展以及如何与周围的岩石圈进行互动的研究。

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