Operational Reliability of Emergency Measures, a Case Study for the BresDefender

IF 3 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
D. Janssen, S. N. Jonkman, A. J. M. Schmets, B. Hofland, E. Dado
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Abstract

During extreme high-water events in river systems, the load on a levee section may exceed its resistance, initiating the breaching process which eventually leads to levee failure. The success of an emergency measure to intervene in the initial phases of levee failure is mainly dependent on its timely application. Quick action is required to prepare and deploy an emergency measure before damages to the levee section have become irreparable. In this study, we investigate the key parameters for successful application of an emergency measure, focusing on the BresDefender case study. The BresDefender is a floating pontoon used by the Dutch military, which is intended to avoid or postpone levee failure. A model has been developed taking the operational steps in the implementation of the emergency measure during a high water and the (uncertainty) in the duration of these processes into account. The model is used to quantify the probability of successful operation to prevent levee failure due to overflow or slope instability. The probability of successful application of the BresDefender has been simulated for river flood situations in the Netherlands. For the river Rhine, where the examined cases were prone to slope instabilities, the probability of arriving in time was found to be 70%. But for the Meuse case, where the examined cases were prone to overflow, the probability of arriving in time was found to be only 0%. The critical steps in the process after the occurrence of damage to the levee are damage detection, the decision to repair the damage, the transport of the emergency measure, and the placement of the measure. By incorporating emergency measures in emergency preparedness procedures, the time required for the critical steps will be decreased and the probability of successful application of the emergency measure, i.e., its contribution to flood risk reduction, will be enhanced.

Abstract Image

应急措施的运行可靠性——以BresDefender为例的研究
在河流水系的极端高水位事件中,堤段上的荷载可能超过其阻力,引发决口过程,最终导致堤身破坏。堤防破坏初期应急干预措施的成功与否,主要取决于应急措施的及时应用。必须迅速采取行动,准备和部署紧急措施,以免对堤坝部分造成不可挽回的损害。在本研究中,我们研究了成功应用应急措施的关键参数,重点是BresDefender案例研究。BresDefender是荷兰军方使用的浮桥,旨在避免或推迟堤坝的破坏。已经制定了一个模型,考虑到在高水位期间执行紧急措施的业务步骤和这些过程持续时间的(不确定性)。该模型用于量化防止堤防因溢流或边坡失稳而破坏的成功操作概率。在荷兰的河流洪水情况下,模拟了BresDefender成功应用的概率。对于检查案例容易发生边坡失稳的莱茵河,发现及时到达的概率为70%。但在默兹河案例中,检查的案例容易溢出,及时到达的概率仅为0%。堤防发生损伤后的关键步骤是损伤检测、损伤修复决策、应急措施的运输、应急措施的安置。通过将紧急措施纳入应急准备程序,将减少关键步骤所需的时间,并提高成功实施紧急措施的可能性,即提高其对减少洪水风险的贡献。
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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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