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首页> 外文期刊>The Science of the Total Environment >Forensic hydro-meteorological analysis of an extreme flash flood: The 2016-05-29 event in Braunsbach, SW Germany
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Forensic hydro-meteorological analysis of an extreme flash flood: The 2016-05-29 event in Braunsbach, SW Germany

机译:一次特大山洪的法医水文气象分析:2016年5月29日在德国西南部布劳恩斯巴赫举行的活动

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摘要

The flash-flood in Braunsbach in the north-eastern part of Baden-Wuerttemberg/Germany was a particularly strong and concise event which took place during the floods in southern Germany at the end of May/early June 2016. This article presents a detailed analysis of the hydro-meteorological forcing and the hydrological consequences of this event. A specific approach, the “forensic hydrological analysis” was followed in order to include and combine retrospectively a variety of data from different disciplines. Such an approach investigates the origins, mechanisms and course of such natural events if possible in a “near real time” mode, in order to follow the most recent traces of the event. The results show that it was a very rare rainfall event with extreme intensities which, in combination with catchment properties, led to extreme runoff plus severe geomorphological hazards, i.e. great debris flows, which together resulted in immense damage in this small rural town Braunsbach. It was definitely a record-breaking event and greatly exceeded existing design guidelines for extreme flood discharge for this region, i.e. by a factor of about 10. Being such a rare or even unique event, it is not reliably feasible to put it into a crisp probabilistic context. However, one can conclude that a return period clearly above 100years can be assigned for all event components: rainfall, peak discharge and sediment transport. Due to the complex and interacting processes, no single flood cause or reason for the very high damage can be identified, since only the interplay and the cascading characteristics of those led to such an event. The roles of different human activities on the origin and/or intensification of such an extreme event are finally discussed.
机译:德国巴登-符腾堡州东北部布劳恩斯巴赫的暴洪是一个特别强烈而简洁的事件,发生在2016年5月底/ 2016年6月初德国南部的洪水期间。本文提供了详细的分析事件的水文气象强迫和水文后果。为了包括和追溯地合并来自不同学科的各种数据,采用了一种特定的方法“法证水文分析”。这种方法尽可能以“近实时”模式调查此类自然事件的起源,机制和过程,以便追踪该事件的最新痕迹。结果表明,这是一次非常罕见的降雨事件,强度极高,再加上流域特性,导致了极端径流以及严重的地貌危险,即大的泥石流,这对这个小镇布劳恩斯巴赫造成了巨大的破坏。这绝对是一个创纪录的事件,并且大大超出了该地区极端洪水排放的现有设计准则,即大约10倍。这是一次罕见甚至独特的事件,将它分解成一个不可靠的可行性概率背景。但是,可以得出结论,可以为所有事件组成部分分配明显高于100年的回归期:降雨,高峰流量和泥沙输送。由于复杂且相互作用的过程,无法确定单个洪水泛滥的原因或造成极高破坏的原因,因为只有那些洪水的相互作用和级联特性才导致此类事件。最后讨论了不同人类活动对这种极端事件的起源和/或加剧的作用。

著录项

  • 来源
    《The Science of the Total Environment》 |2018年第15期|977-991|共15页
  • 作者单位

    Hydrology and Climatology, Institute for Earth and Environmental Sciences, University of Potsdam;

    Hydrology and Climatology, Institute for Earth and Environmental Sciences, University of Potsdam,Research Domain Transdisciplinary Concepts and Methods, Potsdam-Institute for Climate Impact Research;

    Hydrology and Climatology, Institute for Earth and Environmental Sciences, University of Potsdam;

    Hydrology and Climatology, Institute for Earth and Environmental Sciences, University of Potsdam;

    Institute for Meteorology, Freie Universität Berlin;

    Hydrology and Climatology, Institute for Earth and Environmental Sciences, University of Potsdam;

    Hydrology and Climatology, Institute for Earth and Environmental Sciences, University of Potsdam;

    Hydrology and Climatology, Institute for Earth and Environmental Sciences, University of Potsdam,Mediterranean Ecogeomorphological and Hydrological Connectivity Research Team, Department of Geography, University of the Balearic Islands,Fluvial Dynamics Research Group, Department of Environment and Soil Sciences, University of Lleida;

    Institute for Meteorology, Freie Universität Berlin;

    Natural Hazards, Institute for Earth and Environmental Sciences, University of Potsdam;

    Study Area Environmental Hydrology and Resource Management, Institute of Geographical Sciences, Freie Universität Berlin;

    Hydrology and Climatology, Institute for Earth and Environmental Sciences, University of Potsdam,Section Hydrology, German Research Centre for Geosciences, GFZ;

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

    Flash flood analysis; Forensic disaster analysis; Radar rainfall data; Extreme discharge data; Extreme event;

    机译:暴洪分析;法医学灾害分析;雷达降雨数据;极端排放数据;极端事件;

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