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首页> 外文期刊>Journal of South American earth sciences >Dynamic topography in South America
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Dynamic topography in South America

机译:南美洲的动态地形

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摘要

Supracrustal tectonics and mantle flow interact to create Earth's topography. While tectonics is associated with the isostatic components of topography, the deflections caused by mantle dynamics, or dynamic topography, represent the non-isostatic components. South America is an ideal natural laboratory to analyze these two contrasting components from the high Andes to the distal plains. Both regions are active and affected by complex geodynamic processes like the subduction of oceanic ridges, geometry and age of slabs, etc. These subducting anomalies affect not only the convergence dynamics and stresses along the entire margin, but also the distribution of mass anomalies in the mantle, which are the main cause of sublithospheric flow and dynamic topography. Here we revisited five examples from north to south, which demonstrate that, the Andes and the distal forelands have been uncompensated since the beginning of the Cenozoic and that additional forces, such as mantle downwellings and up-wellings. are reauired to account for the observed topographies in basins and elevations.
机译:超地壳构造和地幔流相互作用形成地球的地形。虽然构造与地形的等静压分量相关联,但由地幔动力学或动态地形引起的挠度表示非等静压分量。南美是分析从安第斯山脉高地到远景平原这两个对比要素的理想自然实验室。这两个区域都是活跃的,并受到复杂的地球动力学过程的影响,例如洋洋俯冲,板块的几何形状和年龄等。这些俯冲异常不仅影响整个边缘的辐合动力学和应力,而且还影响整个海区的质量异常分布。地幔,是造成岩石圈以下流动和动态地形的主要原因。在这里,我们从北到南重新审视了五个例子,这些例子表明,自新生代开始以来,安第斯山脉和远侧前陆一直没有得到补偿,还有其他力量,例如地幔下倾和上涌。再次考虑到在盆地和高程中观察到的地形。

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