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Analysis of flash flood-triggering rainfall for a process-oriented hydrological model

机译:基于过程水文模型的山洪触发降雨分析

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摘要

We propose an extended study of recent flood-triggering storms and resulting hydrological responses for catchments in the Pyrenean foothills up to the Aude region. For hydrometeo-rological sciences, it appears relevant to characterize flash floods and the storm that triggered them over various temporal and spatial scales. There are very few studies of extreme storm-caused floods in the literature covering the Mediterranean and highlighting, for example, the quickness and seasonality of this natural phenomenon. The present analysis is based on statistics that clarify the dependence between the spatial and temporal distributions of rainfall at catchment scale, catchment morphology and runoff response. Given the specific space and time scales of rainfall cell development, we show that the combined use of radar and a rain gauge network appears pertinent. Rainfall depth and intensity are found to be lower for catchments in the Pyrenean foothills than for the nearby Corbieres or Montagne Noire regions. We highlight various hydrological behaviours and show that an increase in initial soil saturation tends to foster quicker catchment flood response times, of around 3 to 10 h. The hydrometeorological data set characterized in this paper constitutes a wealth of information to constrain a physics-based distributed model for regionalization purposes in the case of flash floods. Moreover, the use of diagnostic indices for rainfall distribution over catchment drainage networks highlights a unimodal trend in spatial temporal storm distributions for the entire flood dataset. Finally, it appears that floods in mountainous Pyrenean catchments are generally triggered by rainfall near the catchment outlet, where the topography is lower.
机译:我们提议对最近的洪灾暴风雨以及由此产生的水文响应进行扩展研究,以研究比利牛斯山麓直至奥德地区的流域。对于水文气象科学而言,表征山洪和暴风雨在各种时空尺度上引发暴雨具有重要意义。在有关地中海的文献中,很少有关于极端风暴造成的洪水的研究,例如,突出了这种自然现象的迅速性和季节性。本分析基于统计数据,阐明了流域尺度降雨的时空分布,流域形态和径流响应之间的相关性。给定降雨细胞发育的特定时空尺度,我们表明雷达和雨量计网络的结合使用似乎是适当的。发现比利牛斯山麓集水区的降雨深度和强度低于附近的科比耶尔或蒙塔涅·诺瓦地区。我们着重介绍了各种水文行为,并表明初始土壤饱和度的增加往往会加快集水区洪水的响应时间,大约3至10小时。本文所描述的水文气象数据集构成了大量信息,在山洪暴发的情况下,为区域化目的约束了基于物理的分布式模型。此外,使用诊断指标对集水区排水网络上的降雨进行分布,突显了整个洪水数据集的时空风暴分布的单峰趋势。最后,看来比利牛斯山区流域的洪水通常是由地形较低的流域出口附近的降雨引起的。

著录项

  • 来源
    《Atmospheric research》 |2014年第2期|14-24|共11页
  • 作者单位

    Universite de Toulouse, INPT, UPS, IMFT (Institut de Mecanique des Fluides de Toulouse), Allee Cam111e Soula, 31400 Toulouse, France,CNRS, IMFT, 31400 Toulouse, France;

    Universite de Toulouse, INPT, UPS, IMFT (Institut de Mecanique des Fluides de Toulouse), Allee Cam111e Soula, 31400 Toulouse, France,CNRS, IMFT, 31400 Toulouse, France;

    Universite de Toulouse, INPT, UPS, IMFT (Institut de Mecanique des Fluides de Toulouse), Allee Cam111e Soula, 31400 Toulouse, France,CNRS, IMFT, 31400 Toulouse, France;

    Universite de Toulouse, INPT, UPS, IMFT (Institut de Mecanique des Fluides de Toulouse), Allee Cam111e Soula, 31400 Toulouse, France,Ceosciences Environnement Toulouse-Universite de Toulouse-CNRS-IRD-OMP, 31400 Toulouse, France;

    Universite de Toulouse, INPT, UPS, IMFT (Institut de Mecanique des Fluides de Toulouse), Allee Cam111e Soula, 31400 Toulouse, France,CNRS, IMFT, 31400 Toulouse, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flash floods; Rain gauge; Radar; Catchment; Rainfall characterization; Regionalization;

    机译:山洪暴发;雨量计雷达;集水;降雨特征;区域化;

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