Flood Susceptibility Assessment for Improving the Resilience Capacity of Railway Infrastructure Networks

Author:

Varra Giada1ORCID,Della Morte Renata1ORCID,Tartaglia Mario2ORCID,Fiduccia Andrea3,Zammuto Alessandra4,Agostino Ivan4ORCID,Booth Colin A.5ORCID,Quinn Nevil6ORCID,Lamond Jessica E.7ORCID,Cozzolino Luca1ORCID

Affiliation:

1. Department of Engineering, Parthenope University, 80143 Naples, Italy

2. Research Centre, Ferrovie dello Stato Italiane S.p.A., 50123 Florence, Italy

3. Research Centre, Ferrovie dello Stato Italiane S.p.A., 00161 Rome, Italy

4. Technical Department, Rete Ferroviaria Italiana (RFI) S.p.A., 00161 Rome, Italy

5. School of Engineering, College of Arts, Technology and Environment, University of the West of England (UWE), Bristol BS16 1QY, UK

6. School of Architecture and Environment, College of Arts, Technology and Environment, University of the West of England (UWE), Bristol BS16 1QY, UK

7. College of Arts, Technology and Environment, University of the West of England (UWE), Bristol BS16 1QY, UK

Abstract

Floods often cause significant damage to transportation infrastructure such as roads, railways, and bridges. This study identifies several topographic, environmental, and hydrological factors (slope, elevation, rainfall, land use and cover, distance from rivers, geology, topographic wetness index, and drainage density) influencing the safety of the railway infrastructure and uses multi-criteria analysis (MCA) alongside an analytical hierarchy process (AHP) to produce flood susceptibility maps within a geographic information system (GIS). The proposed methodology was applied to the catchment area of a railway track in southern Italy that was heavily affected by a destructive flood that occurred in the autumn of 2015. Two susceptibility maps were obtained, one based on static geophysical factors and another including triggering rainfall (dynamic). The results showed that large portions of the railway line are in a very highly susceptible zone. The flood susceptibility maps were found to be in good agreement with the post-disaster flood-induced infrastructural damage recorded along the railway, whilst the official inundation maps from competent authorities fail to supply information about flooding occurring along secondary tributaries and from direct rainfall. The reliable identification of sites susceptible to floods and damage may provide railway and environmental authorities with useful information for preparing disaster management action plans, risk analysis, and targeted infrastructure maintenance/monitoring programs, improving the resilience capacity of the railway network. The proposed approach may offer railway authorities a cost-effective strategy for rapidly screening flood susceptibility at regional/national levels and could also be applied to other types of linear transport infrastructures.

Funder

European Union program FSE-REACT-EU

Publisher

MDPI AG

Reference94 articles.

1. Vulnerability assessment and mitigation for the Chinese railway system under floods;Hong;Reliab. Eng. Syst. Saf.,2015

2. Estimating flood damage to railway infrastructure—The case study of the March River flood in 2006 at the Austrian Northern Railway;Kellermann;Nat. Hazards Earth Syst. Sci.,2015

3. Masson-Delmotte, V., Zhai, P., Pirani, A., Connors, S.L., P’ean, C., Berger, S., Caud, N., Chen, Y., Goldfarb, L., and Gomis, M.I. (2021). Summary for Policymakers. Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge University Press.

4. A comprehensive risk assessment of Chinese high-speed railways affected by multiple meteorological hazards;Sun;Weather Clim. Extrem.,2022

5. A global multi-hazard risk analysis of road and railway infrastructure assets;Koks;Nat. Commun.,2019

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