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Anatomy of simultaneous flood peaks at a lowland confluence

机译:低地汇合同时洪水峰的解剖学

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Lowlands are vulnerable to flooding due to their mild topography in often densely populated areas with high social and economic value. Moreover, multiple physical processes coincide in lowland areas, such as those involved in river-sea interactions and in merging rivers at confluences. Simultaneous occurrence of such processes can result in amplifying or attenuating effects on water levels. Our aim is to understand the mechanisms behind simultaneous occurrence of discharge waves in a river and its lowland tributaries. Here, we introduce a new way of analyzing lowland discharge and water level dynamics, by tracing individual flood waves based on dynamic time warping. We take the confluence of the Meuse River (similar to 33000 km(2)) with the joining tributaries of the Dommel and Aa rivers as an example, especially because the January 1995 flood at this confluence was the result of the simultaneous occurrence of discharge peaks in the main stream and the tributaries and because independent observations of water levels and discharge are available for a longer period. The analysis shows that the exact timing of the arrival of discharge peaks is of little relevance because of the long duration of the average discharge wave compared to typical time lags between peaks. The discharge waves last on average 9 days, whereas the lag time between discharge peaks in the main river and the tributaries is typically 3 days. This results in backwaters that can rise up to 1.5 m over a distance of 4 km from the confluence. Thus, local measures to reduce the impact of flooding around the confluence should account for the long duration of flood peaks in the main system.
机译:由于它们的温和地形,普遍存在的人口稠密地区具有高社会和经济价值,因此低地易受洪水。此外,多种物理过程在低地地区重合,例如参与河流相互作用的人和汇合汇率的河流。同时发生这些过程可导致对水位的放大或减少效果。我们的目标是了解河流和其低地支流中同时出现的放电波浪背后的机制。在这里,我们通过基于动态时间翘曲来追踪各个泛波的各个泛波来介绍分析低地排放和水位动态的新方法。我们占据了梅苏河的交汇(类似于33000公里(2)),其中Dommel和AA Rivers的连接支流是一个例子,特别是因为1995年1月在这种汇合的洪水中是同时出现放电峰的结果在主流和支流中,因为在更长的时间内可获得对水位和排放的独立观察。分析表明,由于峰之间的典型时间滞后,放电峰的到达的到达的确切定时几乎没有相关性。排放波平均为9天,而主要河流和支流中的放电峰之间的滞后时间通常为3天。这导致回物中,可以距离汇合4千米高达1.5米。因此,降低汇合洪水影响的本地措施应该考虑主要系统中的洪水峰的长期。

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