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Impact of erosion, sedimentation, and structural heritage on the structure and kinematics of orogenic wedges: Analog models and case studies

机译:侵蚀,沉积和结构遗产对造山楔的结构和运动学的影响:模拟模型和案例研究

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Interaction between surface and tectonic processes plays a key role in the structural evolution, kinematics, and exhumation of rocks in orogenic wedges. The deformation patterns observed in analog models show that strain partitioning has a strong impact on the vertical component of displacement of tectonic units, which in return favors erosion in domains of important uplift. Partitioning is controlled by tectonic processes and by climate-dependent surface processes, including erosion and sedimentation. The effects of partitioning include localization of deformed domains, exhumation above areas of deep underplating, and steady-state maintenance of wedges for long time periods. Simple models illustrate well how the morphostructural evolution of mountain belts is determined by these complex interactions.
机译:地表和构造过程之间的相互作用在造山楔中的岩石的结构演化,运动学和发掘中起着关键作用。在模拟模型中观察到的变形模式表明,应变分配对构造单元位移的垂直分量有很大影响,反过来又有利于重要隆升区域的侵蚀。分区受构造过程和受气候影响的地表过程控制,包括侵蚀和沉积。分区的影响包括变形区域的定位,深层底板区域上方的掘出以及长期的楔形稳态维护。简单的模型很好地说明了如何通过这些复杂的相互作用来确定山地带的形态结构演化。

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