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April 12, 2026Hydrology0 citationsOpen Access

Model-Based Evaluation of SUDS Efficiency in Urban Stormwater Management: A Case Study in Montería, Colombia

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JMJuan Pablo Medrano-BarbozaLMLuisa Martínez-AcostaASAlberto Flórez Soto

Key Points

  • This research aims to assess the feasibility of implementing sustainable urban drainage systems to manage stormwater and reduce flooding in Montería.
  • Evaluated the performance of SUDS using the stormwater management model (SWMM)
  • Conducted hydrological simulations based on design hyetographs for various return periods
  • Compared a conventional drainage system with five SUDS scenarios
  • Utilized the analytic hierarchy process (AHP) for decision-making in SUDS selection
  • Storage tanks reduced peak flows at outlets 1 and 2 by up to 50%
  • Bioretention zones and rain gardens showed reduced effectiveness, less than 6%
  • Combining SUDS strategies slightly improved overall efficiency
  • The impact of storage tanks remained dominant in managing stormwater

Abstract

The rapid growth of cities and expansion of impervious surfaces have intensified surface runoff problems and urban flooding risk. This scenario, exacerbated by the effects of climate change, demands sustainable and integrated solutions. Thus, this study evaluates the pre-feasibility of implementing sustainable urban drainage systems (SUDS) in the Monteverde neighborhood in Montería, Colombia; an area that is critically affected by floods during rainfall events. Using the storm water management model (SWMM) and hydrological simulations based on design hyetographs for different return periods, the performance of a conventional drainage system was compared with five scenarios using SUDS. To determine the modeling scenarios, a decision-making method through the analytic hierarchy process, AHP, was used to select the most appropriate SUDS. The results showed that implementing storage tanks reduces peak flows at outlets 1 and 2 up to 50%, while bioretention zones and rain gardens in isolation showed reduced effectiveness (<6%). Combining strategies slightly improves overall efficiency, although the impact keeps being dominated by tanks. This study demonstrates that the incorporation of SUDS in vulnerable urban areas lessens water risks, strengthens urban resilience, promotes rainwater harvesting, and eases the transition to a more sustainable infrastructure. In addition, it proposes a methodology that can be replicated in other similar Latin American cities.

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Cite This Study

Medrano-Barboza et al. (2026) studied this question.

synapsesocial.com/papers/69db383b4fe01fead37c67c6https://doi.org/10.3390/hydrology13040111
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