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首页> 外文期刊>Water resources research >Hydraulic Characterization of River Networks Based on Flow Patterns Simulated by 2-D Shallow Water Modeling: Scaling Properties, Multifractal Interpretation, and Perspectives for Channel Heads Detection
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Hydraulic Characterization of River Networks Based on Flow Patterns Simulated by 2-D Shallow Water Modeling: Scaling Properties, Multifractal Interpretation, and Perspectives for Channel Heads Detection

机译:基于二维浅水模型模拟的水流模型的河网水力表征:定标特性,多重分形解释和河床水头检测的前景

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摘要

This paper is focused on the contribution that the two-dimensional Shallow Water Equations could provide in respect to the fields of research devoted to the river networks analysis. The novelty introduced in this work is represented, in particular, by the hydraulic characterization of the river drainage networks, starting from flow patterns simulated by the two-dimensional Shallow Water Equations on high-resolution digital elevation model (DEM) through the analysis of water depths flowing down the hillslopes, channelized in both the main river and in all the tributaries or stored in small depressions. The first finding of this research is the determination of scaling laws that describe the relations between the water depth threshold, used to identify the network cells, and a dimensionless area, related to the total area of the network cells themselves. The observed bimodal scaling behavior has been considered as representative of the flow patterns belonging to the channel networks (CN) and hillslope plus channel networks (HCN), the physical and geomorphological interpretation of which has been provided from a multifractal point of view. In particular, the analysis of the multifractal spectra highlights significant variations in the multifractal signatures, between the CN and the HCN structures, leading to the proposal of a novel criterion for channels heads detection that has provided encouraging predictions of field observations.
机译:本文专注于二维浅水方程对河网分析研究领域的贡献。这项工作中引入的新颖性尤其体现在河流排水网络的水力表征上,从二维浅水方程在高分辨率数字高程模型(DEM)上模拟水流模型开始,通过对水的分析顺着山坡向下流动的深处,在主要河流和所有支流中形成沟道,或储存在小洼地中。这项研究的第一个发现是确定比例定律,该定律描述了用于识别网络单元的水深阈值和与网络单元自身总面积相关的无量纲区域之间的关系。观察到的双峰尺度行为已被认为是代表通道网络(CN)和山坡加通道网络(HCN)的流动模式的代表,从多分形的角度对它们进行了物理和地貌解释。特别是,多重分形光谱的分析突出显示了CN和HCN结构之间多重分形特征的显着变化,从而导致提出了一种新的通道头部检测标准,从而为现场观测提供了令人鼓舞的预测。

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