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February 5, 2026Hydrology0 citationsOpen Access

Using High-Resolution Hydrodynamic Models to Assess the Environmental Status of Highly Modified Transitional Waters in Salt Marshes

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CBCira BuonocoreJGJuan Jesús Gómiz-PascualAPAnder Lopez Puertas

Key Points

  • The study aims to determine areas vulnerable to contaminant accumulation in transitional waters using hydrodynamic modeling.
  • Combined a high-resolution hydrodynamic model with Lagrangian-particle-tracking approach.
  • Simulated multiple tidal cycles to analyze contamination patterns.
  • Investigated the influence of tidal dynamics on contaminant transport.
  • Contamination concentrates near wastewater discharge points and in low-flow channels.
  • Certain marsh sectors consistently show higher exposure to contaminants.
  • Developed a vulnerability classification of high-, medium-, and low-risk zones.

Abstract

Effective management of transitional waters requires collaboration between administrative and scientific institutions, in line with the sustainable water management principles established by the Water Framework Directive (WFD, 2000/60/EC). The Cadiz and San Fernando salt marshes, classified as wetlands of international importance, currently exhibit an ecological and chemical status that is “worse than good.” However, there is still a lack of high-resolution, spatially explicit tools to identify where contaminants are most likely to accumulate in highly modified transitional waters, which limits effective monitoring and management strategies. This study aims to fill this gap by combining a high-resolution hydrodynamic model with a Lagrangian-particle-tracking approach to determine areas most vulnerable to contaminant accumulation from wastewater discharges. Simulations across multiple tidal cycles revealed that contamination is concentrated near discharge points and in low-flow channels, with tidal dynamics strongly influencing transport patterns. Key findings indicate that certain marsh sectors consistently experience higher contaminant exposure, highlighting priority areas for monitoring and management. The study provides novel insights by integrating modeling tools to produce a vulnerability classification of high-, medium-, and low-risk zones. These results contribute to the broader scientific understanding of contaminant dynamics in transitional waters and offer a transferable framework for improving wetland management in other heavily modified coastal systems.

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Cite This Study

Buonocore et al. (2026) studied this question.

synapsesocial.com/papers/6984347ff1d9ada3c1fb2a57https://doi.org/10.3390/hydrology13020055
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