对 2021 年 7 月阿赫河谷事件(德国)造成的洪水负荷和相关建筑物损坏进行实地调查评估

IF 3 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Davide Wüthrich, Paul A. Korswagen, Harish Selvam, Jan Oetjen, Jeremy Bricker, Holger Schüttrumpf
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引用次数: 0

摘要

2021年7月的洪水严重影响了德国、比利时和荷兰的许多居民、建筑物和关键基础设施。具体来说,Ahr山谷(德国)展示了与这些极端事件相关的破坏力。因此,该地区是实地调查的重点,旨在描述洪水对建筑物造成的破坏,并评估可能导致结构破坏的潜在过程。现场评估表明,建筑物的破坏与(1)当地水流深度和流速、(2)建筑物位置、(3)与河岸的距离以及(4)建筑物类型密切相关。虽然很难确定导致破坏的确切原因,但详细的评估表明,破坏主要源于局部冲刷和水力荷载,往往不均匀地分布在建筑物周围。重要的是,许多建筑物都受到(大型)漂浮碎片撞击和水坝的显著影响,两者都造成了额外的载荷,突出了它们在抗洪水建筑设计中的重要性。此外,数据显示,靠近河岸和村庄上游的建筑物受损更为严重。总的来说,这些数据使我们更好地了解导致建筑物倒塌的洪水过程,促进未来的研究,以制定更安全的保护措施和更有效的洪水风险管理策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Field survey assessment of flood loads and related building damage from the July 2021 event in the Ahr Valley (Germany)

Field survey assessment of flood loads and related building damage from the July 2021 event in the Ahr Valley (Germany)

The July 2021 flood heavily affected many inhabitants, buildings and critical infrastructure throughout Germany, Belgium and the Netherlands. Specifically, the Ahr Valley (Germany) showcased the destructive power associated with these extreme events. Hence, this region was the focus of a field survey, aiming at describing the flood-induced damage to buildings and assessing the possible underlying processes that led to structural failures. The field assessment revealed a close connection between building failures and (1) local flow depths and velocities, (2) building location, (3) distance from the riverbank and (4) construction type. Although it is difficult to identify the exact causes that induced failures, the detailed assessment revealed that damages mainly originated from local scour and hydraulic loads, often unevenly distributed around buildings. Importantly, many buildings were significantly affected by (large) floating debris impacts and damming, both responsible for additional loads, highlighting their importance in flood-resistant building design. Furthermore, data showed that buildings near the riverbanks and in the upstream part of villages were more severely damaged. Altogether, data provide a better understanding of the flood processes that lead to building failures, fostering future research towards the development of safer protection measures and more effective flood risk management strategies.

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来源期刊
Journal of Flood Risk Management
Journal of Flood Risk Management ENVIRONMENTAL SCIENCES-WATER RESOURCES
CiteScore
8.40
自引率
7.30%
发文量
93
审稿时长
12 months
期刊介绍: Journal of Flood Risk Management provides an international platform for knowledge sharing in all areas related to flood risk. Its explicit aim is to disseminate ideas across the range of disciplines where flood related research is carried out and it provides content ranging from leading edge academic papers to applied content with the practitioner in mind. Readers and authors come from a wide background and include hydrologists, meteorologists, geographers, geomorphologists, conservationists, civil engineers, social scientists, policy makers, insurers and practitioners. They share an interest in managing the complex interactions between the many skills and disciplines that underpin the management of flood risk across the world.
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