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Sediment budget in the Ucayali River basin, an Andean tributary of the Amazon River

机译:亚马逊河道的Andean支流中Ucayali River盆地沉积物预算

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Formation of mountain ranges results from complex coupling between lithospheric deformation, mechanisms linked to subduction and surface processes: weathering, erosion, and climate. Today, erosion of the eastern Andean cordillera and sub-Andean foothills supplies over 99% of the sediment load passing through the Amazon Basin. Denudation rates in the upper Ucayali basin are rapid, favoured by a marked seasonality in this region and extreme precipitation cells above sedimentary strata, uplifted during Neogene times by a still active sub-Andean tectonic thrust. Around 40% of those sediments are trapped in the Ucayali retro-foreland basin system. Recent advances in remote sensing for Amazonian large rivers now allow us to complete the ground hydrological data. In this work, we propose a first estimation of the erosion and sedimentation budget of the Ucayali River catchment, based on spatial and conventional HYBAM Observatory network.
机译:山脉的形成是由岩石层变形之间的复杂耦合,与俯冲和表面过程相关的机制:风化,侵蚀和气候。今天,东安安切尔的侵蚀和亚空和安山麓用亚马逊盆地的沉积物负荷超过99%。上部Ucayali盆地中的剥削速率快速,在该地区的明显季节性和极端沉淀细胞上方的沉淀地层中的极端沉淀细胞,通过仍有活跃的亚南部的构造推力在Neogene时升高。大约40%的沉积物被困在Ucayali Recro-Foreland盆地系统中。亚马逊大型河流遥感的最新进展现在允许我们完成地面水文数据。在这项工作中,我们提出了基于空间和传统的帽天文台网络的ucayali河流域侵蚀和沉降预算的首次估算。

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