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首页> 外文期刊>Water resources research >Flood-type classification in mountainous catchments using crisp and fuzzy decision trees
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Flood-type classification in mountainous catchments using crisp and fuzzy decision trees

机译:基于清晰模糊决策树的山区流域洪水分类。

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摘要

Floods are governed by largely varying processes and thus exhibit various behaviors. Classification of flood events into flood types and the determination of their respective frequency is therefore important for a better understanding and prediction of floods. This study presents a flood classification for identifying flood patterns at a catchment scale by means of a fuzzy decision tree. Hence, events are represented as a spectrum of six main possible flood types that are attributed with their degree of acceptance. Considered types are flash, short rainfall, long rainfall, snow-melt, rainfall on snow and, in high alpine catchments, glacier-melt floods. The fuzzy decision tree also makes it possible to acknowledge the uncertainty present in the identification of flood processes and thus allows for more reliable flood class estimates than using a crisp decision tree, which identifies one flood type per event. Based on the data set in nine Swiss mountainous catchments, it was demonstrated that this approach is less sensitive to uncertainties in the classification attributes than the classical crisp approach. These results show that the fuzzy approach bears additional potential for analyses of flood patterns at a catchment scale and thereby it provides more realistic representation of flood processes.
机译:洪水是由变化很大的过程控制的,因此表现出各种行为。因此,将洪水事件分类为洪水类型并确定其各自的频率对于更好地理解和预测洪水很重要。这项研究提出了一种洪水分类,用于通过模糊决策树识别集水区的洪水模式。因此,事件被表示为六种主要可能的洪水类型的光谱,这些类型归因于它们的接受程度。认为的类型包括暴雨,短降雨,长降雨,融雪,积雪,以及在高山流域,冰川融水。模糊决策树还可以确认洪灾过程识别中存在的不确定性,因此比使用明晰决策树(每个事件识别一种洪灾类型)的清脆决策树更可靠。根据九个瑞士山区流域的数据集,事实证明,这种方法对分类属性不确定性的敏感性不如经典的脆性方法。这些结果表明,模糊方法在集水区规模的洪水模式分析方面具有额外的潜力,因此它提供了更现实的洪水过程表示。

著录项

  • 来源
    《Water resources research》 |2015年第10期|7959-7976|共18页
  • 作者单位

    Univ Zurich, Dept Geog, Zurich, Switzerland|Warsaw Univ Life Sci SGGW, Dept Hydraul Engn, Warsaw, Poland;

    Univ Zurich, Dept Geog, Zurich, Switzerland|Belop Gmbh, Engineers & Experts Nat Hazards, Sarnen, Switzerland;

    Univ Zurich, Dept Geog, Zurich, Switzerland|Uppsala Univ, Dept Earth Sci, Uppsala, Sweden;

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