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Lowe, R. J. (author), Altomare, C. (author), Buckley, M. L. (author), da Silva, R. F. (author), Hansen, J. E. (author), Rijnsdorp, D.P. (author), Domínguez, J. M. (author), Crespo, A. J.C. (author)
As waves interact with the slopes of coral reefs and other steep bathymetry profiles, plunging breaking usually occurs where the free surface overturns and violent water motion is triggered. Resolving these surf zone processes pose significant challenges for conventional mesh-based hydrodynamic models, due to the rapidly-deforming nature of...
journal article 2022
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Lowe, Ryan J. (author), Buckley, Mark L. (author), Altomare, Corrado (author), Rijnsdorp, Dirk P. (author), Suzuki, T. (author), Bricker, J.D. (author)
In this study we assess the capabilities of the mesh-free, Lagrangian particle method (Smooth Particle Hydrodynamics, SPH) method to simulate the detailed hydrodynamic processes generated by both spilling and plunging breaking waves within the surf zone, and present how the approach can be used to predict a broad spectrum of hydrodynamic...
conference paper 2019
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Lowe, R. J. (author), Buckley, M. L. (author), Altomare, C. (author), Rijnsdorp, D. P. (author), Yao, Y. (author), Suzuki, T. (author), Bricker, J.D. (author)
In this study we investigated the capabilities of the mesh-free, Lagrangian particle method (Smoothed Particle Hydrodynamics, SPH) to simulate the detailed hydrodynamic processes generated by both spilling and plunging breaking waves within the surf zone. The weakly-compressible SPH code DualSPHysics was applied to simulate wave breaking over...
journal article 2019