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The impact of extreme El Niño events on modern sediment transport along the western Peruvian Andes (1968–2012)

机译:厄尔尼诺现象极端事件对秘鲁西部安第斯山脉沿现代沉积物运输的影响(1968–2012年)

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摘要

Climate change is considered as one of the main factors controlling sediment fluxes in mountain belts. However, the effect of El Niño, which represents the primary cause of inter-annual climate variability in the South Pacific, on river erosion and sediment transport in the Western Andes remains unclear. Using an unpublished dataset of Suspended Sediment Yield (SSY) in Peru (1968–2012), we show that the annual SSY increases by 3–60 times during Extreme El Niño Events (EENE) compared to normal years. During EENE, 82% to 97% of the annual SSY occurs from January to April. We explain this effect by a sharp increase in river water discharge due to high precipitation rates and transport capacity during EENE. Indeed, sediments accumulate in the mountain and piedmont areas during dry normal years, and are then rapidly mobilized during EENE years. The effect of EENE on SSY depends on the topography, as it is maximum for catchments located in the North of Peru (3–7°S), exhibiting a concave up hypsometric curve, and minimum for catchments in the South (7–18°S), with a concave down hypsometric curve. These findings highlight how the sediment transport of different topographies can respond in very different ways to large climate variability.
机译:气候变化被认为是控制山区沉积物通量的主要因素之一。但是,厄尔尼诺现象(代表南太平洋年际气候变化的主要原因)对安第斯山脉西部的河流侵蚀和泥沙输送的影响尚不清楚。使用秘鲁(1968-2012年)未公布的悬浮泥沙产量(SSY)数据集,我们发现极端厄尔尼诺事件(EENE)期间的年度SSY与正常年份相比增加了3-60倍。在EENE期间,每年的SSY的82%至97%从1月到4月发生。我们通过在EENE期间由于高降水率和运输能力而导致河水排放量急剧增加来解释这种影响。的确,在干燥的正常年份,沉积物在山区和山麓地区积聚,然后在EENE年份迅速动员。 EENE对SSY的影响取决于地形,因为它位于秘鲁北部(3–7°S)的集水区最大,表现出凹向上的水压曲线,而对于南部(7–18°)的集水区则最小S),具有向下凹的测压曲线。这些发现突显了不同地形的沉积物迁移如何以非常不同的方式对较大的气候变化做出反应。

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