DualSPHysics: Open-source parallel CFD solver based on Smoothed Particle Hydrodynamics (SPH) AJC Crespo, JM Domínguez, BD Rogers, M Gómez-Gesteira, ... Computer Physics Communications 187, 204-216, 2015 | 868 | 2015 |
Boundary conditions generated by dynamic particles in SPH methods AJ Cabrera Crespo, R Gómez Gesteira, RA Dalrymple Computers, Materials, & Continua, 2007 | 588 | 2007 |
State-of-the-art of classical SPH for free-surface flows M Gomez-Gesteira, BD Rogers, RA Dalrymple, AJC Crespo Journal of Hydraulic Research 48 (sup1), 6-27, 2010 | 509 | 2010 |
SPHysics–development of a free-surface fluid solver–Part 1: Theory and formulations M Gomez-Gesteira, BD Rogers, AJC Crespo, RA Dalrymple, ... Computers & Geosciences 48, 289-299, 2012 | 438 | 2012 |
GPUs, a new tool of acceleration in CFD: efficiency and reliability on smoothed particle hydrodynamics methods AC Crespo, JM Dominguez, A Barreiro, M Gómez-Gesteira, BD Rogers PloS one 6 (6), e20685, 2011 | 310 | 2011 |
Applicability of Smoothed Particle Hydrodynamics for estimation of sea wave impact on coastal structures C Altomare, AJC Crespo, JM Domínguez, M Gómez-Gesteira, T Suzuki, ... Coastal Engineering 96, 1-12, 2015 | 286 | 2015 |
Long-crested wave generation and absorption for SPH-based DualSPHysics model C Altomare, JM Domínguez, AJC Crespo, J González-Cao, T Suzuki, ... Coastal Engineering 127, 37-54, 2017 | 269 | 2017 |
DualSPHysics: from fluid dynamics to multiphysics problems JM Domínguez, G Fourtakas, C Altomare, RB Canelas, A Tafuni, ... Computational Particle Mechanics 9 (5), 867-895, 2022 | 265 | 2022 |
New multi-GPU implementation for smoothed particle hydrodynamics on heterogeneous clusters JM Domínguez, AJC Crespo, D Valdez-Balderas, BD Rogers, ... Computer Physics Communications 184 (8), 1848-1860, 2013 | 238 | 2013 |
Modeling dam break behavior over a wet bed by a SPH technique AJ Crespo, M Gómez-Gesteira, RA Dalrymple Journal of waterway, port, coastal, and ocean engineering 134 (6), 313-320, 2008 | 229 | 2008 |
Optimization strategies for CPU and GPU implementations of a smoothed particle hydrodynamics method JM Domínguez, AJC Crespo, M Gómez-Gesteira Computer Physics Communications 184 (3), 617-627, 2013 | 204 | 2013 |
SPHysics–development of a free-surface fluid solver–Part 2: Efficiency and test cases M Gómez-Gesteira, AJC Crespo, BD Rogers, RA Dalrymple, ... Computers & Geosciences 48, 300-307, 2012 | 204 | 2012 |
Numerical modelling of armour block sea breakwater with smoothed particle hydrodynamics C Altomare, AJC Crespo, BD Rogers, JM Dominguez, X Gironella, ... Computers & Structures 130, 34-45, 2014 | 200 | 2014 |
Neighbour lists in smoothed particle hydrodynamics JM Domínguez, AJC Crespo, M Gómez‐Gesteira, JC Marongiu International Journal for Numerical Methods in Fluids 67 (12), 2026-2042, 2011 | 198 | 2011 |
SPH simulation of floating structures with moorings JM Domínguez, AJC Crespo, M Hall, C Altomare, M Wu, V Stratigaki, ... Coastal Engineering 153, 103560, 2019 | 150 | 2019 |
3D SPH simulation of large waves mitigation with a dike AJC Crespo, M Gómez-Gesteira, RA Dalrymple Journal of Hydraulic Research 45 (5), 631-642, 2007 | 149 | 2007 |
SPH–DCDEM model for arbitrary geometries in free surface solid–fluid flows RB Canelas, AJC Crespo, JM Domínguez, RML Ferreira, ... Computer Physics Communications 202, 131-140, 2016 | 148 | 2016 |
A versatile algorithm for the treatment of open boundary conditions in Smoothed particle hydrodynamics GPU models A Tafuni, JM Domínguez, R Vacondio, AJC Crespo Computer methods in applied mechanics and engineering 342, 604-624, 2018 | 147 | 2018 |
Towards simulating floating offshore oscillating water column converters with smoothed particle hydrodynamics AJC Crespo, C Altomare, JM Domínguez, J González-Cao, ... Coastal Engineering 126, 11-26, 2017 | 133 | 2017 |
Modified dynamic boundary conditions (mDBC) for general-purpose smoothed particle hydrodynamics (SPH): application to tank sloshing, dam break and fish pass problems A English, JM Domínguez, R Vacondio, AJC Crespo, PK Stansby, SJ Lind, ... Computational Particle Mechanics 9 (5), 1-15, 2022 | 131 | 2022 |