The dynamics of strong turbulence at free surfaces. Part 1. Description M Brocchini, DH Peregrine Journal of Fluid Mechanics 449, 225-254, 2001 | 360 | 2001 |
Wave impact loads: The role of the flip-through C Lugni, M Brocchini, OM Faltinsen Physics of fluids 18 (12), 2006 | 264 | 2006 |
A reasoned overview on Boussinesq-type models: the interplay between physics, mathematics and numerics M Brocchini Proceedings of the Royal Society A: Mathematical, Physical and Engineering …, 2013 | 202 | 2013 |
On the modeling of sand wave migration G Besio, P Blondeaux, M Brocchini, G Vittori Journal of Geophysical Research: Oceans 109 (C4), 2004 | 171 | 2004 |
The dynamics of strong turbulence at free surfaces. Part 2. Free-surface boundary conditions M Brocchini, DH Peregrine Journal of Fluid Mechanics 449, 255-290, 2001 | 163 | 2001 |
Recent advances in modeling swash zone dynamics: Influence of surf‐swash interaction on nearshore hydrodynamics and morphodynamics M Brocchini, TE Baldock Reviews of Geophysics 46 (3), 2008 | 159 | 2008 |
An efficient solver for nearshore flows based on the WAF method M Brocchini, R Bernetti, A Mancinelli, G Albertini Coastal Engineering 43 (2), 105-129, 2001 | 147 | 2001 |
Integral flow properties of the swash zone and averaging M Brocchini, DH Peregrine Journal of Fluid Mechanics 317, 241-273, 1996 | 147 | 1996 |
Nonlinear shallow water equation modeling for coastal engineering M Brocchini, N Dodd Journal of waterway, port, coastal, and ocean engineering 134 (2), 104-120, 2008 | 129 | 2008 |
Experimental investigation and numerical modelling of steep forced water waves H Bredmose, M Brocchini, DH Peregrine, L Thais Journal of Fluid Mechanics 490, 217-249, 2003 | 120 | 2003 |
Evolution of the air cavity during a depressurized wave impact. II. The dynamic field C Lugni, M Brocchini, OM Faltinsen Physics of fluids 22 (5), 2010 | 118 | 2010 |
Local scour around structures and the phenomenology of turbulence C Manes, M Brocchini Journal of Fluid Mechanics 779, 309-324, 2015 | 113 | 2015 |
Evolution of the air cavity during a depressurized wave impact. I. The kinematic flow field C Lugni, M Miozzi, M Brocchini, OM Faltinsen Physics of fluids 22 (5), 2010 | 113 | 2010 |
A study of violent sloshing wave impacts using an improved SPH method A Colagrossi, G Colicchio, C Lugni, M Brocchini Journal of hydraulic research 48 (sup1), 94-104, 2010 | 105 | 2010 |
The morphodynamics of tidal sand waves: A model overview G Besio, P Blondeaux, M Brocchini, SJMH Hulscher, D Idier, ... Coastal engineering 55 (7-8), 657-670, 2008 | 103 | 2008 |
An experimental study on sediment transport and bed evolution under different swash zone morphological conditions JM Alsina, I Cáceres, M Brocchini, TE Baldock Coastal Engineering 68, 31-43, 2012 | 83 | 2012 |
The boundary value problem for the nonlinear shallow water equations M Antuono, M Brocchini Studies in Applied Mathematics 119 (1), 73-93, 2007 | 81 | 2007 |
Advances in numerical modelling of swash zone dynamics R Briganti, A Torres-Freyermuth, TE Baldock, M Brocchini, N Dodd, ... Coastal Engineering 115, 26-41, 2016 | 78 | 2016 |
Topographically controlled, breaking-wave-induced macrovortices. Part 1. Widely separated breakwaters M Brocchini, A Kennedy, L Soldini, A Mancinelli Journal of Fluid Mechanics 507, 289-307, 2004 | 76 | 2004 |
The mean and turbulent flow structure of a weak hydraulic jump SK Misra, JT Kirby, M Brocchini, F Veron, M Thomas, C Kambhamettu Physics of Fluids 20 (3), 2008 | 70 | 2008 |