Flood Management with SUDS: A Simulation–Optimization Framework

Research output: Contribution to journalResearch articleContributedpeer-review

Contributors

Abstract

Urbanization and climate change are the main driving force in the development of sustainable strategies for managing water in cities, such as sustainable urban drainage systems (SUDS). Previous studies have identified the necessity to develop decision-making tools for SUDS in order to adequately implement these structures. This study proposes a simulation–optimization methodology that aims to ease the decision-making process when selecting and placing SUDS, with the specific goal of managing urban flooding. The methodology was applied to a real case study in Dresden, Germany. The most relevant variables when selecting SUDS were the spatial distribution of floods and the land uses in the catchment. Furthermore, the rainfall characteristics played an important role when selecting the different SUDS configurations. After the optimal SUDS configurations were determined, flood maps were developed, identifying the high potential that SUDS have for reducing flood volumes and depth, but showing them to be quite limited in reducing the flooded areas. The final section of the study proposes a combined frequency map of SUDS implementation, which is suggested for use as a final guide for the present study. The study successfully implemented a novel methodology that included land-use patterns and flood indicators to select SUDS in a real case study.

Details

Original languageEnglish
Article number426
JournalWater
Volume15
Issue number3
Publication statusPublished - 20 Jan 2023
Peer-reviewedYes

External IDs

Scopus 85147841824
WOS 000932889600001
Mendeley 9b142223-c315-3b75-adb8-3117b3639ced

Keywords

Keywords

  • Flood reduction, Hydrodynamic modelling, Multi-objective optimization, Suds, Sustainable urban drainage, Swmm, hydrodynamic modelling, SWMM, SUDS, flood reduction, multi-objective optimization, sustainable urban drainage