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Sediment transport due to extreme events: The Hudson River estuary after tropical storms Irene and Lee

机译:极端事件导致的泥沙输送:热带风暴艾琳和李之后的哈德逊河河口

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摘要

Tropical Storms Irene and Lee in 2011 produced intense precipitation and flooding in the U.S. Northeast, including the Hudson River watershed. Sediment input to the Hudson River was approximately 2.7 megaton, about 5 times the long-term annual average. Rather than the common assumption that sediment is predominantly trapped in the estuary, observations and model results indicate that approximately two thirds of the new sediment remained trapped in the tidal freshwater river more than 1 month after the storms and only about one fifth of the new sediment reached the saline estuary. High sediment concentrations were observed in the estuary, but the model results suggest that this was predominantly due to remobilization of bed sediment. Spatially localized deposits of new and remobilized sediment were consistent with longer term depositional records. The results indicate that tidal rivers can intercept (at least temporarily) delivery of terrigenous sediment to the marine environment during major flow events. Key Points Sediment input to the Hudson by Irene and Lee 5 times the annual average About two thirds of the sediment input by storms remained trapped in the tidal river Suspended sediment in the lower estuary primarily due to bed remobilization
机译:2011年的热带风暴艾琳(Irene)和李(Lee)在美国东北部,包括哈德逊河(Hudson River)流域,造成了强烈的降雨和洪水。哈德逊河的沉积物输入量约为2.7兆吨,约为长期年平均水平的5倍。观测和模型结果表明,暴风雨过后1个月以上,仍有大约三分之二的新沉积物仍留在潮汐淡水河中,而新的沉积物仅约有五分之一,而不是通常的假设,即泥沙主要滞留在河口中。到达盐水河口。在河口观察到较高的沉积物浓度,但是模型结果表明,这主要是由于河床沉积物的迁移所致。新的和迁移的沉积物的空间局部沉积与长期沉积记录一致。结果表明,在大流量事件中,潮汐河可以拦截(至少暂时地)将陆源性沉积物输送到海洋环境。要点艾琳和李将沉积物输入哈德逊河,是年平均水平的5倍暴风雨输入的泥沙中约有三分之二仍然留在潮汐河中

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