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Slab rollback orogeny in the Alps and evolution of the Swiss Molasse basin

机译:阿尔卑斯山脉的板块回退造山作用与瑞士莫拉斯盆地的演化

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摘要

The stratigraphies of foreland basins have been related to orogeny, where continent-continent collision causes the construction of topography and the downwarping of the foreland plate. These mechanisms have been inferred for the Molasse basin, stretching along the northern margin of the European Alps. Continuous flexural bending of the subducting European lithosphere as a consequence of topographic loads alone would imply that the Alpine topography would have increased at least between 30 Ma and ca.5-10 Ma when the basin accumulated the erosional detritus. This, however, is neither consistent with observations nor with isostatic mass balancing models because paleoaltimetry estimates suggest that the topography has not increased since 20 Ma. Here we show that a rollback mechanism for the European plate is capable of explaining the construction of thick sedimentary successions in the Molasse foreland basin where the extra slab load has maintained the Alpine surface at low, but constant, elevations.
机译:前陆盆地的地层学与造山运动有关,大陆与大陆的碰撞导致地形的构造和前陆板块的下陷。推测这些机制是沿着欧洲阿尔卑斯山北缘延伸的莫拉塞盆地。仅由于地形载荷而引起的俯冲欧洲岩石圈的连续弯曲弯曲将意味着,当盆地积累侵蚀性碎屑时,高山地形至少会增加30 Ma至大约5-10 Ma。但是,这既与观测结果也不与等静质量平衡模型一致,因为古测高法的估计表明,地形自20 Ma以来并未增加。在这里,我们表明,欧洲板块的回滚机制能够解释在莫拉塞前陆盆地中厚厚的沉积演替过程中的构造,那里的额外平板荷载使阿尔卑斯山的表面保持在低而恒定的高度。

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