Resilient Urban Flood Management: A Multi-Objective Assessment of Mitigation Strategies

Author:

Reinstaller Stefan1ORCID,Funke Fabian2,König Albert Willhelm1ORCID,Pichler Markus1ORCID,Kleidorfer Manfred2ORCID,Muschalla Dirk1ORCID

Affiliation:

1. Institute of Urban Water Management and Landscape Water Engineering, Graz University of Technology, 8010 Graz, Austria

2. University of Innsbruck, Department of Infrastructure, Unit of Environmental Engineering, Technikerstrasse 13, 6020 Innsbruck, Austria

Abstract

This study employs a comprehensive multi-objective efficiency index (EI) to assess urban flood mitigation strategies. The EI enables the simple interpretation of a mitigation strategy’s efficiency with a value range between −1 (low efficiency) and 1 (high efficiency), which represents a practical communication tool for decision makers, engineers, and researchers. This was tested at the study site of Feldbach (Austria) with an integrated 1D–2D urban flood model and a distributed hydrological model. A total of 112 scenarios were analysed for six mitigation strategies, which were built from three future challenge scenarios, two observed heavy storm events, and two hydrological pre-conditions. For the given study site, the analysis identifies mitigation strategies implemented in rural boundary areas as the most effective. A novel aspect of this study is the consideration of the urban water balance change, highlighting its impact on the EI. The analysis highlights the importance of analysing each relevant process separately to determine the EI in order to understand why a mitigation strategy is more or less efficient.

Funder

Federal Ministry of Agriculture, Forestry, Regions and Water Management Austria

Publisher

MDPI AG

Reference74 articles.

1. Changes in River Flood Hazard in Europe: A Review;Kundzewicz;Hydrol. Res.,2018

2. Drivers of Changing Urban Flood Risk: A Framework for Action;Berndtsson;J. Environ. Manag.,2019

3. Extreme Weather Impacts of Climate Change: An Attribution Perspective;Clarke;Environ. Res. Clim.,2022

4. Bednar-Friedl, B., Biesbroek, R., Schmidt, D.N., Alexander, P., Børsheim, K.Y., Carnicer, J., Georgopoulou, E., Haasnoot, M., Cozannet, G.L., and Lionello, P. (2022). Climate Change 2022: Impacts, Adaptation and Vulnerability. Contribution of Working Group II to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge University Press.

5. Strong Increase in Convective Precipitation in Response to Higher Temperature;Berg;Nat. Geosci.,2013

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