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首页> 外文期刊>Hydrology and Earth System Sciences >Flood trends along the Rhine: The role of river training
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Flood trends along the Rhine: The role of river training

机译:莱茵河沿岸的洪水趋势:河流培训的作用

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Several previous studies have detected positive trends in flood flows in German rivers, among others, at Rhine gauges over the past six decades. The presence and detectability of the climate change signal in flood records has been controversially discussed, particularly against the background of massive river training measures in the Rhine. In the past the Rhine catchment has been heavily trained, including the construction of the Rhine weir cascade, flood protection dikes and detention basins. The present study investigates the role of river training on changes in annual maximum daily flows at Rhine gauges starting from Maxau down to Lobith. In particular, the effect of the Rhine weir cascade and of a series of detention basins was investigated. By homogenising the original flood flow records in the period from 1952 till 2009, the annual maximum series were computed that would have been recorded had river training measures not been in place. Using multiple trend analysis, relative changes in the homogenised time series were found to be from a few percentage points to more than 10 percentage points smaller compared to the original records. This effect is attributable to the river training measures, and primarily to the construction of the Rhine weir cascade. The increase in Rhine flood discharges during this period was partly caused by an unfavourable superposition of the Rhine and Neckar flood waves. This superposition resulted from an acceleration of the Rhine waves due to the construction of the weir cascade and associated channelisation and dike heightening. However, at the same time, tributary flows across the entire Upper and Lower Rhine, which enhance annual maximum Rhine peaks, showed strong positive trends. This suggests the dominance of another driver or drivers which acted alongside river training.
机译:过去的数项研究发现,过去六十年来,德国河流以及莱茵河上游的洪水呈积极趋势。关于洪水记录中气候变化信号的存在和可检测性一直存在争议,特别是在莱茵河进行大规模河道整治措施的背景下。过去,莱茵河流域受到过严格的培训,包括莱茵河堰的级联,防洪堤和滞留盆地的建设。本研究调查了河流训练对从Maxau到Lobith的莱茵河水位每年最大日流量变化的作用。特别是,研究了莱茵堰堰和一系列滞留盆地的影响。通过对1952年至2009年期间的原始洪水流量记录进行均化,可以计算出如果没有采取河流整治措施的情况下可以记录的年度最大序列。使用多重趋势分析,发现均质化时间序列中的相对变化比原始记录小了几个百分点到十个百分点以上。这种影响可归因于河流的整治措施,主要归因于莱茵堰的梯级建设。在此期间,莱茵河洪水流量的增加部分是由于莱茵河和内卡河洪水波的叠加不利。这种叠加是由于堰级联的构造以及相关的河道化和堤防加高而引起的莱茵河波加速引起的。但是,与此同时,整个上莱茵河和下莱茵河的支流(每年增加莱茵河的最高峰)显示出强烈的积极趋势。这表明,在河道训练中,另一位或多位驾驶员的统治地位。

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