Comparison of risk-based methods for bridge scour management

IF 2.7 Q2 ENGINEERING, CIVIL Sustainable and Resilient Infrastructure Pub Date : 2023-03-15 DOI:10.1080/23789689.2023.2175141
M. Pregnolato, P. Giordano, L. Prendergast, P. J. Vardanega, M. P. Limongelli
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引用次数: 2

Abstract

ABSTRACT Scour is a significant cause of bridge failure, and resulting bridge closures are likely to generate significant disruption to infrastructure networks. The management of scour-susceptible bridges is a significant challenge for improving transport resilience, but tends to be heuristic and qualitative. Such assessments often suffer from insufficient knowledge of key factors and require assumptions, which may increase their estimation and relative uncertainty. Analysis of publicly available technical documents reveals that various definitions of “risk” are adopted, as well as multiple approaches are applied. This paper has three objectives: (i) to illustrate the concept of risk in bridge scour management; (ii) to propose a simple scoring system to analyse existing risk-based approaches to manage bridge scour; and (iii) to analyse and compare such approaches on the basis of the obtained scores. A sample of nine documents containing bridge scour risk assessment practices or approaches was analysed using the developed rating system.
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基于风险的桥梁冲刷管理方法比较
摘要冲刷是桥梁故障的重要原因,由此导致的桥梁封闭可能会对基础设施网络造成重大破坏。易受冲刷桥梁的管理是提高运输弹性的一个重大挑战,但往往是启发式和定性的。这种评估往往对关键因素了解不足,需要假设,这可能会增加其估计和相对不确定性。对公开技术文件的分析表明,采用了各种“风险”的定义,并采用了多种方法。本文有三个目的:(i)阐明桥梁冲刷管理中的风险概念;(ii)提出一个简单的评分系统,以分析现有的基于风险的桥梁冲刷管理方法;以及(iii)根据所获得的分数分析和比较这些方法。使用开发的评级系统分析了包含桥梁冲刷风险评估实践或方法的九份文件样本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.60
自引率
10.20%
发文量
34
期刊介绍: Sustainable and Resilient Infrastructure is an interdisciplinary journal that focuses on the sustainable development of resilient communities. Sustainability is defined in relation to the ability of infrastructure to address the needs of the present without sacrificing the ability of future generations to meet their needs. Resilience is considered in relation to both natural hazards (like earthquakes, tsunami, hurricanes, cyclones, tornado, flooding and drought) and anthropogenic hazards (like human errors and malevolent attacks.) Resilience is taken to depend both on the performance of the built and modified natural environment and on the contextual characteristics of social, economic and political institutions. Sustainability and resilience are considered both for physical and non-physical infrastructure.
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