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首页> 外文期刊>Hydrological Processes >Streamflow scaling properties: investigating characteristic scales from different statistical approaches
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Streamflow scaling properties: investigating characteristic scales from different statistical approaches

机译:流量标度属性:研究来自不同统计方法的特征标度

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摘要

This paper studies the links between scaling properties of river flow time series by comparing the results of three techniques applied to an extended data set of 34 French discharge gauging stations. The three approaches used are based on different mathematical tools and hypotheses: (1) shape analysis of flood hydrographs; (2) a multifractal framework through spectral and moment analyses, and (3) flood frequency analysis through the fitting of flood duration frequency curves (QdF). The general aim is to test the hypothesis of scaling invariance of river flow and the shape invariance of the hydrographs, in order to investigate the link between scaling properties and flow dynamics. In particular, the coherence between different approaches widely used in the literature to describe these characteristics is evaluated through the estimation of parameters defining the range of time-scales on which the scaling properties are valid. The results show that most of these timescale parameters are linked to the flow dynamics and suggest that the approaches applied are interrelated.
机译:本文通过比较三种技术应用于34个法国排污站扩展数据集的结果,研究了河流流量时间序列的定标属性之间的联系。所使用的三种方法基于不同的数学工具和假设:(1)洪水水位图的形状分析; (2)通过频谱和矩分析的多重分形框架,以及(3)通过拟合洪水持续时间频率曲线(QdF)进行洪水频率分析。总体目的是检验河流流量比例不变性和水位图形状不变性的假设,以研究比例特性与流量动态之间的联系。尤其是,通过评估定义比例缩放属性在其上有效的时间范围的参数,来评估在文献中广泛用于描述这些特性的不同方法之间的一致性。结果表明,大多数这些时标参数都与流动动力学有关,并表明所采用的方法相互关联。

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