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Temporal and Spatial Variability of Sediment Transport in a Mountain River: A Preliminary Investigation of the Caldone River, Italy

机译:山区河流泥沙运移的时空变化:意大利卡尔多内河的初步调查

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Sediment transport is a key evolution process of rivers and water basins. This process can pose flood hazards to nearby areas. The Eulerian and Lagrangian methods are usually employed to describe sediment transport in mountain rivers. The application of different methods was proposed by scientists to analyze specific aspects of solid transport, however a complete understanding still alludes us. After a brief review of the most common methods, the coupling of three different methods is proposed and tested in order to study sediment dynamics, and its spatial and temporal variability, in mountain rivers. Tracers, painted bed patches, and digital elevation model (DEM) comparisons are used to characterize sediment transport at both a micro-scale short-term and a macro-scale long-term level on a test reach on Caldone River, Italy. Information about travel distance, critical diameters, active width, and morphological evolution was sought. We focused on how water discharge is changing the relationships between different measurement techniques. High discharge events force the channel to behave in a unique way, while low discharge events generate more intrinsic variability. Only measurement technique coupling can overcome this issue. Results are encouraging and show the potential of a mixed Eulerian-Lagrangian approach.
机译:泥沙输送是河流和流域的关键演变过程。此过程可能对附近地区造成洪水危害。通常使用欧拉和拉格朗日方法来描述山区河流中的泥沙输送。科学家提出了应用不同方法来分析固体运输的特定方面的知识,但是对我们的全面理解仍然在暗示我们。在简要回顾了最常用的方法之后,提出并测试了三种不同方法的耦合,以便研究山区河流中的沉积物动力学及其时空变异性。示踪剂,彩绘床斑块和数字高程模型(DEM)比较用于在意大利卡尔丹河的测试河段上,从微观短期和宏观长期两个角度表征沉积物的运移。寻找有关行进距离,临界直径,有效宽度和形态演变的信息。我们专注于排水如何改变不同测量技术之间的关系。高放电事件迫使通道以独特的方式运行,而低放电事件则产生更多的固有变化。只有测量技术的耦合才能克服这个问题。结果令人鼓舞,并显示出混合欧拉-拉格朗日方法的潜力。

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