A Comparative Hydrodynamic Characterization of the Flow Through Regular and Stochastically Generated Synthetic Coral Reefs Over Flat Topography

Conference Paper (2026)
Author(s)

Akshay Patil (TU Delft - Architecture and the Built Environment)

Clara García-Sánchez (TU Delft - Architecture and the Built Environment)

Research Group
Urban Data Science
DOI related publication
https://doi.org/10.1007/978-3-032-15473-6_81 Final published version
More Info
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Publication Year
2026
Language
English
Research Group
Urban Data Science
Pages (from-to)
533-539
Publisher
Springer
ISBN (print)
978-3-032-15472-9
ISBN (electronic)
978-3-032-15473-6
Event
Coastal Dynamics 2025 (2025-04-07 - 2025-04-11), Aveiro, Portugal
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Abstract

Coral reefs are vital to marine ecosystems, supporting biodiversity and driving nutrient cycling. Despite significant research on the interaction between surface waves and natural or artificial reefs, the turbulent flow dynamics within coral canopies remain poorly understood due to their intricate geometries. This study addresses this knowledge gap using a turbulence-resolving computational framework based on the volume-penalizing immersed boundary method (vIBM). Comparing the serial, staggered, and stochastic arrangements of various coral roughness types we observe that massive corals and cylinders lead to a similar hydrodynamics response and the effect of dispersive stresses can introduce a large difference when stochastic coral reefs are considered. These observations highlight the importance of better understanding the hydrodynamics of complex coral reef geometries, emphasizing the need for further studies on this aspect of coral reef hydrodynamics.