activity
20172019
most citedComparing methods of modeling depth-induced breaking of irregular waves with a fully nonlinear potential flow approach

23 citations · 49 across the 3 of their papers we have counts for

collaborators

4 papers

physics.ao-ph201923 cited

Comparing methods of modeling depth-induced breaking of irregular waves with a fully nonlinear potential flow approach

Bruno Simon, Christos E. Papoutsellis, Michel Benoit +1

The modeling of wave breaking dissipation in coastal areas is investigated with a fully nonlinear and dispersive wave model. The wave propagation model is based on potential flow t…

physics.flu-dyn201923 cited

Modeling of depth-induced wave breaking in a fully nonlinear free-surface potential flow model

Christos E. Papoutsellis, Marissa L. Yates, Bruno Simon +1

Two methods to treat wave breaking in the framework of the Hamiltonian formulation of free-surface potential flow are presented, tested, and validated. The first is an extension of…

physics.comp-ph2018

Semi-explicit solutions to the water-wave dispersion relation and their role in the nonlinear Hamiltonian coupled-mode theory

Theodosios K. Papathanasiou, Christos E. Papoutsellis, Gerassimos A. Athanassoulis

The Hamiltonian coupled-mode theory (HCMT), recently derived by Athanassoulis and Papoutsellis [1], provides an efficient new approach for solving fully nonlinear water-wave proble…

physics.flu-dyn20173 cited

Implementation of a fully nonlinear Hamiltonian Coupled-Mode Theory, and application to solitary wave problems over bathymetry

Ch. E. Papoutsellis, A. G. Charalampopoulos, G. A. Athanassoulis

This paper deals with the implementation of a new, efficient, non-perturbative, Hamiltonian coupled-mode theory (HCMT) for the fully nonlinear, potential flow (NLPF) model of water…