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Projected increases in the annual flood pulse of the Western Amazon

机译:预计西​​亚马逊每年的洪水潮将增加

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The impact of a changing climate on the Amazon basin is a subject of intensive research because of its rich biodiversity and the significant role of rainforests in carbon cycling. Climate change has also a direct hydrological impact, and increasing efforts have focused on understanding the hydrological dynamics at continental and subregional scales, such as the Western Amazon. New projections from the Coupled Model Inter-comparison Project Phase 5 ensemble indicate consistent climatic warming and increasing seasonality of precipitation in the Peruvian Amazon basin. Here we use a distributed land surface model to quantify the potential impact of this change in the climate on the hydrological regime of the upper Amazon river. Using extreme value analysis, historical and future projections of the annual minimum, mean, and maximum river flows are produced for a range of return periods between 1 and 100 yr. We show that the RCP 4.5 and 8.5 scenarios of climate change project an increased severity of the wet season flood pulse (7.5% and 12% increases respectively for the 100 yr return floods). These findings agree with previously projected increases in high extremes under the Special Report on Emissions Scenarios climate projections, and are important to highlight due to the potential consequences on reproductive processes of in-stream species, swamp forest ecology, and socio-economy in the floodplain, amidst a growing literature that more strongly emphasises future droughts and their impact on the viability of the rainforest system over greater Amazonia.
机译:气候变化对亚马逊河流域的影响是一项深入研究的课题,因为其丰富的生物多样性以及雨林在碳循环中的重要作用。气候变化也具有直接的水文影响,越来越多的工作集中在了解大陆和次区域范围(例如西亚马逊)的水文动态。耦合模式比较项目第5阶段合奏的新预测表明,持续的气候变暖和秘鲁亚马逊河流域降水的季节性增加。在这里,我们使用分布式土地表面模型来量化这种气候变化对亚马逊河上游水文状况的潜在影响。使用极值分析,可以得出在1至100年的回报期范围内的年度最小,平均和最大河流流量的历史和未来预测。我们表明,RCP 4.5和8.5气候变化情景预测了雨季洪水脉动的严重性增加(100年的回水洪水分别增加7.5%和12%)。这些发现与《排放情景特别报告》中先前预计的极端极端情况下的增加相吻合,并且由于在洪泛平原上对流域物种繁殖过程,沼泽森林生态学和社会经济的潜在影响而突出显示这一点很重要。 ,越来越多的文献更加强调未来的干旱及其对大亚马逊地区雨林系统生存能力的影响。

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