gpusph.bib

@inproceedings{herault_lava_2008,
  title = {A {SPH} thermal model for the cooling of a lava lake},
  author = {H\'erault, Alexis and Vicari, Annamaria and Del Negro, Ciro},
  booktitle = {Proceedings of the 3th {SPHERIC} Workshop},
  address = {Lausanne},
  year = 2008
}
@inproceedings{dalrymple_levee_2009,
  title = {Levee Breaching with {GPU-SPH}ysics Code},
  author = {Dalrymple, Robert A. and H\'erault, Alexis},
  booktitle = {Proceedings of the 4th {SPHERIC} Workshop},
  address = {Nantes},
  url = {http://www.ce.jhu.edu/dalrymple/GPU/SPHERICIVDalrympleHerault.pdf},
  year = 2009
}
@inproceedings{herault_modeling_2009,
  title = {Modeling water waves in the surf zone with {GPU-SPH}ysics},
  author = {H\'erault, Alexis and Vicari, Annamaria and Del Negro, Ciro and Dalrymple, Robert A.},
  booktitle = {Proceedings of the 4th {SPHERIC} Workshop},
  address = {Nantes},
  year = 2009
}
@article{herault_sph_2010,
  title = {{SPH} on {GPU} with {CUDA}},
  author = {H\'erault, Alexis and Bilotta, Giuseppe and Dalrymple, Robert A.},
  journal = {Journal of Hydraulic Research},
  volume = 48,
  number = {Extra Issue},
  year = 2010,
  pages = {74--79}
}
@article{dalrymple_gpu-accelerated_2011,
  title = {{GPU}-Accelerated {SPH} model for water waves and free surface flows},
  author = {Dalrymple, Robert A. and H\'erault, Alexis and Bilotta, Giuseppe and Farahani, Rozita Jalali},
  journal = {Coastal Engineering Proceedings},
  volume = {1},
  number = {32},
  year = {2011},
  issn = {2156-1028},
  pages = {9},
  doi = {10.9753/icce.v32.waves.9},
  url = {https://icce-ojs-tamu.tdl.org/icce/index.php/icce/article/view/1449}
}
@article{weiss_three-dimensional_2011,
  title = {Three-dimensional modeling of long-wave runup: simulation of tsunami inundation with {GPU-SPHYSICS}},
  author = {Weiss, Robert and Munoz, Andrew James and Dalrymple, Robert A. and H\'erault, Alexis and Bilotta, Giuseppe},
  journal = {Coastal Engineering Proceedings},
  volume = {1},
  number = {32},
  year = {2011},
  issn = {2156-1028},
  pages = {8},
  doi = {10.9753/icce.v32.currents.8},
  url = {https://icce-ojs-tamu.tdl.org/icce/index.php/icce/article/view/1432}
}
@article{herault_annals_2011,
  title = {Numerical simulation of lava flow using a {GPU} {SPH} model},
  author = {H\'erault, Alexis and Bilotta, Giuseppe and Vicari, Annamaria and Rustico, Eugenio and Del Negro, Ciro},
  journal = {Annals of Geophysics},
  volume = 54,
  number = 5,
  year = 2011,
  pages = {600--620},
  doi = {10.4401/ag-5343}
}
@article{bilotta_annals_2011,
  title = {Moving least-squares corrections for {S}moothed {P}article {H}ydrodynamics},
  author = {Bilotta, Giuseppe and Russo, Giovanni and H\'erault, Alexis and Del Negro, Ciro},
  journal = {Annals of Geophysics},
  volume = 54,
  number = 5,
  year = 2011,
  pages = {622--633},
  doi = {10.4401/ag-5344}
}
@inproceedings{rustico_journey_2012,
  title = {A journey from single-{GPU} to optimized multi-{GPU} {SPH} with {CUDA}},
  author = {Rustico, Eugenio and Bilotta, Giuseppe and Gallo, Giovani and H\'erault, Alexis and Del Negro, Ciro and Dalrymple, Robert A.},
  booktitle = {Proceedings of the 7th {SPHERIC} Workshop},
  address = {Prato},
  year = 2012,
  pages = {274--281}
}
@inproceedings{jalali_farahani_turbulent_2012,
  title = {Turbulent Coherent Structures under Breaking Water Waves},
  author = {Farahani, Rozita Jalali and Dalrymple, Robert A. and H\'erault, Alexis and Bilotta, Giuseppe},
  booktitle = {Proceedings of the 7th {SPHERIC} Workshop},
  address = {Prato},
  year = 2012,
  pages = {171–-178}
}
@article{edge_2012,
  author = {Edge, Billy L. and Overton, Margery and Dalrymple, Robert A. and H\'erault, Alexis and Bilotta, Giuseppe and Kurum, M. and Gamiel, Kevin},
  title = {Application of {GPU} {S}mooth {P}article {H}ydrodynamics: wave runup and overtopping on composite slopes},
  journal = {Coastal Engineering Proceedings},
  volume = {1},
  number = {33},
  year = {2012},
  issn = {2156-1028},
  pages = {74},
  doi = {10.9753/icce.v33.waves.74},
  url = {https://icce-ojs-tamu.tdl.org/icce/index.php/icce/article/view/7025}
}
@article{ferrand_2012,
  title = {Unified semi-analytical wall boundary conditions for inviscid, laminar or turbulent flows in the meshless {SPH} method},
  author = {Ferrand, Martin and Laurence, D. R. and Rogers, Benedict D. and Violeau, Damien and Kassiotis, Christophe},
  journal = {International Journal for Numerical Methods in Fluids},
  year = 2012,
  volume = 71,
  number = 4,
  pages = {446--472},
  doi = {10.1002/fld.3666},
  url = {https://onlinelibrary.wiley.com/doi/abs/10.1002/fld.3666},
  eprint = {https://onlinelibrary.wiley.com/doi/pdf/10.1002/fld.3666}
}
@article{mayrhofer_2013,
  title = {Investigation of wall bounded flows using {SPH} and the unified semi-analytical wall boundary conditions},
  author = {Mayrhofer, Arno and Rogers, Benedict D. and Violeau, Damien and Ferrand, Martin},
  journal = {Computer Physics Communications},
  year = 2013,
  volume = 184,
  number = 11,
  pages = {2515--2527},
  issn = {0010-4655},
  doi = {https://doi.org/10.1016/j.cpc.2013.07.004},
  url = {http://www.sciencedirect.com/science/article/pii/S0010465513002324}
}
@article{jalali_farahani_three-dimensional_2014,
  title = {Three-Dimensional {SPH} Modeling of a {Bar/Rip} Channel System},
  author = {Farahani, Rozita Jalali and Dalrymple, Robert A. and H\'erault, Alexis and Bilotta, Giuseppe},
  journal = {Journal of Waterway, Port, Coastal, and Ocean Engineering},
  volume = 140,
  number = 1,
  year = 2014,
  pages = {82--99},
  doi = {10.1061/(ASCE)WW.1943-5460.0000214}
}
@article{rustico_advances_2014,
  title = {Advances in Multi-{GPU} Smoothed Particle Hydrodynamics Simulations},
  author = {Rustico, Eugenio and Bilotta, Giuseppe and H\'erault, Alexis and Del Negro, Ciro and Gallo, Giovani},
  journal = {{IEEE} Transactions on Parallel and Distributed Systems},
  volume = 25,
  number = 1,
  year = 2014,
  doi = {10.1109/TPDS.2012.340},
  issn = {1045-9219},
  pages = {43--52}
}
@inproceedings{rustico_multi-gpu_2014,
  title = {Multi-{GPU}, multi-node {SPH} implementation with arbitrary domain decomposition},
  author = {Rustico, Eugenio and Jankowski, Jacek A. and H\'erault, Alexis and Bilotta, Giuseppe and Del Negro, Ciro},
  booktitle = {Proceedings of the 9th {SPHERIC} Workshop},
  address = {Paris},
  month = mar,
  year = 2014,
  pages = {127--133}
}
@inproceedings{edge_application_2014,
  title = {Application of {GPUSPH} to Design of Wave Energy},
  author = {Edge, Billy L. and Gamiel, Kevin and Dalrymple, Robert A. and H\'erault, Alexis and Bilotta, Giuseppe},
  booktitle = {Proceedings of the 9th {SPHERIC} Workshop},
  address = {Paris},
  month = mar,
  year = 2014,
  pages = {342--347}
}
@inproceedings{jalali_farahani_modeling_2014,
  title = {Modeling the coherent vortices in breaking waves},
  author = {Farahani, Rozita Jalali and Dalrymple, Robert A. and H\'erault, Alexis and Bilotta, Giuseppe and Rustico, Eugenio},
  booktitle = {Proceedings of the 9th {SPHERIC} Workshop},
  address = {Paris},
  month = mar,
  year = 2014,
  pages = {297--304}
}
@inproceedings{bilotta_modelling_2014,
  title = {Modelling real-life flows in hydraulic waterworks with {GPUSPH}},
  author = {Bilotta, Giuseppe and Vorobyev, Alexander and H\'erault, Alexis and Mayrhofer, Arno and Violeau, Damien},
  booktitle = {Proceedings of the 9th {SPHERIC} Workshop},
  address = {Paris},
  month = mar,
  year = 2014,
  pages = {335--341}
}
@inproceedings{herault_accuracy_2014,
  title = {Achieving the best accuracy in an {SPH} implementation},
  author = {H\'erault, Alexis and Bilotta, Giuseppe and Dalrymple, Robert A.},
  booktitle = {Proceedings of the 9th {SPHERIC} Workshop},
  address = {Paris},
  month = mar,
  year = 2014,
  pages = {134--139}
}
@article{farahani_horseshoe-2014,
  title = {Three-dimensional reversed horseshoe vortex structures under broken solitary waves},
  journal = {Coastal Engineering},
  volume = {91},
  pages = {261-279},
  year = {2014},
  issn = {0378-3839},
  doi = {https://doi.org/10.1016/j.coastaleng.2014.06.006},
  url = {https://www.sciencedirect.com/science/article/pii/S0378383914001252},
  author = {Farahani, Rozita Jalali and Dalrymple, Robert A.},
  keywords = {Solitary wave, Obliquely descending eddies, Reversed horseshoe vortices, Smoothed particle hydrodynamics method},
  abstract = {Turbulent vortical structures under broken solitary waves are studied using three-dimensional smoothed particle hydrodynamics (SPH) method. The numerical model predicts water surface evolution and horizontal velocity very well in comparison with the experimental results. The numerical results detect organized coherent structures characterized as reversed horseshoe (hairpin) vortices being generated at the back of the broken spilling wave and traveling downward. The counter rotating legs of the reversed horseshoe structures appear to be a continuous form of the previously found obliquely descending eddies. The reversed horseshoe structures are associated with the turbulence motion of sweep events (downwelling motion) and transport momentum and turbulent kinetic energy downward into the water column. Vortex turning play an important role on the generation and evolution of three dimensional reversed horseshoe structures from the spanwise breaking wave rollers.}
}
@techreport{bilotta_techreport_2014,
  title = {{GPU} implementation and validation of fully three-dimensional multi-fluid {SPH} models},
  author = {Bilotta, Giuseppe},
  type = {Rapporto Tecnico},
  institution = {INGV},
  number = 292,
  year = 2014,
  url = {http://istituto.ingv.it/images/collane-editoriali/rapporti%20tecnici/rapporti-tecnici-2014/rapporto292.pdf}
}
@article{mayrhofer_2015,
  title = {Unified semi-analytical wall boundary conditions in {SPH}: analytical extension to {3-D}},
  author = {Mayrhofer, Arno and Ferrand, Martin and Kassiotis, Christophe and Violeau, Damien and Morel, Fran\c{c}ois-Xavier},
  journal = {Numerical Algorithms},
  year = 2015,
  volume = {68},
  pages = {15--34},
  doi = {10.1007/s11075-014-9835-y}
}
@inproceedings{mayrhofer_spheric_2015,
  title = {Semi-analytical wall boundary conditions for locally flat geometries},
  author = {Mayrhofer, Arno and Bilotta, Giuseppe and H\'erault, Alexis},
  booktitle = {Proceedings of the 10th {SPHERIC} Workshop},
  year = 2015,
  address = {Prato}
}
@article{wei_2015,
  title = {{SPH} modeling of dynamic impact of tsunami bore on bridge piers},
  author = {Wei, Zhangping and Dalrymple, Robert A. and Rustico, Eugenio and H\'erault, Alexis and Bilotta, Giuseppe and Yeh, Harry},
  journal = {Coastal Engineering},
  volume = 104,
  year = 2015,
  pages = {26--42},
  doi = {10.1016/j.coastaleng.2015.06.008}
}
@article{wei_2016a,
  title = {Numerical study on mitigating tsunami force on bridges by an {SPH} model},
  author = {Wei, Zhangping and Dalrymple, Robert A.},
  journal = {Journal of Ocean Engineering and Marine Energy},
  volume = 2,
  issue = 3,
  pages = {365--380},
  year = 2016,
  doi = {10.1007/s40722-016-0054-6}
}
@article{wei_2016b,
  title = {Simulation of nearshore tsunami breaking by {S}moothed {P}article {H}ydrodynamics method},
  author = {Wei, Zhangping and Dalrymple, Robert A. and Rustico, Eugenio and H\'erault, Alexis and Bilotta, Giuseppe},
  journal = {Journal of Waterway, Port, Coastal, and Ocean Engineering},
  volume = 142,
  issue = 4,
  pages = {05016001},
  year = 2016,
  doi = {10.1061/(ASCE)WW.1943-5460.0000334},
  url = {https://ascelibrary.org/doi/abs/10.1061/%28ASCE%29WW.1943-5460.0000334}
}
@inproceedings{wei_spheric_2016,
  title = {Behavior of oil under breaking waves by a two-phase {SPH} model},
  author = {Wei, Zhangping and Shi, H. B. and Li, C. and Katz, J. and Dalrymple, Robert A. and Bilotta, Giuseppe},
  booktitle = {Proceedings of the 11th {SPHERIC} Workshop},
  address = {M\"unich},
  year = 2016
}
@incollection{bilotta_2016,
  title = {{GPUSPH}: a {S}moothed {P}article {H}ydrodynamics model for the thermal and rheological evolution of lava flows},
  author = {Bilotta, Giuseppe and H\'erault, Alexis and Cappello, Annalisa and Ganci, Gaetana and Del Negro, Ciro},
  booktitle = {Detecting, Modelling and Responding to Effusive Eruptions},
  publisher = {Geological Society of London},
  series = {Geological Society, London, Special Publications},
  volume = 426,
  number = 1,
  pages = {387--408},
  year = 2016,
  doi = {10.1144/SP426.24}
}
@mastersthesis{legoff_2017,
  author = {Le Goff, Jean-Marie},
  title = {{N}avier--{S}tokes modelling of offshore wind turbines using the {SPH} method},
  school = {KTH School of Industrial Engineering and Management},
  address = {SE-100 44 STOCKHOLM},
  year = 2017,
  urn = {urn:nbn:se:kth:diva-216161},
  url = {http://urn.kb.se/resolve?urn=urn%3Anbn%3Ase%3Akth%3Adiva-216161}
}
@article{ferrand_2017,
  title = {Unsteady open boundaries for {SPH} using semi-analytical conditions and {R}iemann solver in {2D}},
  author = {Ferrand, Martin and Joly, Antoine and Kassiotis, Christophe and Violeau, Damien and Leroy, Agn\`es and Morel, François-Xavier and Rogers, Benedict D.},
  journal = {Computer Physics Communications},
  volume = 210,
  pages = {29--44},
  year = 2017,
  issn = {0010-4655},
  doi = {https://doi.org/10.1016/j.cpc.2016.09.009},
  url = {http://www.sciencedirect.com/science/article/pii/S0010465516302806}
}
@inproceedings{fonty_spheric_2017,
  title = {Numerical Modelling of the Undersluices of the Rance Tidal Power Station with {SPH}},
  author = {Fonty, Thomas and Leroy, Agn\`es and Violeau, Damien and Joly, Antoine and Milla Lopez Asiain, Jos\'e and
		Guyot, Gr\'egory},
  booktitle = {Proceedings of the 12th {SPHERIC} Workshop},
  address = {Ourense, Spain},
  year = 2017
}
@inproceedings{ganci_egu_2017,
  author = {Ganci, Gaetana and Zago, Vito and Bilotta, Giuseppe and Cappello, Annalisa and H\'erault, Alexis and Del Negro, Ciro},
  title = {Lava cooling modelled with {GPUSPH}},
  booktitle = {EGU General Assembly Conference Abstracts},
  year = 2017,
  series = {EGU General Assembly Conference Abstracts},
  month = apr,
  pages = {15157},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2017EGUGA..1915157G}
}
@inproceedings{zago_spheric_2017,
  title = {Implicit integration of the viscous term and {GPU} implementation in {GPUSPH} for lava flows},
  author = {Zago, Vito and Bilotta, Giuseppe and Cappello, Annalisa and Dalrymple, Robert A. and Fortuna, Luigi and Ganci, Gaetana and H\'erault, Alexis and Del Negro, Ciro},
  booktitle = {Proceedings of the 12th {SPHERIC} Workshop},
  address = {Ourense, Spain},
  year = 2017
}
@article{zago_aog_2017,
  title = {Simulating Complex Fluids with {S}moothed {P}article {H}ydrodynamics},
  author = {Zago, Vito and Bilotta, Giuseppe and Cappello, Annalisa and Dalrymple, Robert A. and Fortuna, Luigi and Ganci, Gaetana and H\'erault, Alexis and Del Negro, Ciro},
  journal = {Annals of Geophysics},
  volume = 60,
  number = 6,
  year = 2017,
  pages = {PH669},
  doi = {10.4401/ag-7362}
}
@inproceedings{zago_spheric_2018,
  title = {Benchmarking of the {GPUSPH} particle engine on lava flows},
  author = {Zago, Vito and Bilotta, Giuseppe and Cappello, Annalisa and Ganci, Gaetana and Del Negro, Ciro and H\'erault, Alexis and Fortuna, Luigi and Dalrymple, Robert A.},
  booktitle = {Proceedings of the 13th {SPHERIC} Workshop},
  address = {Galway, Ireland},
  year = 2018
}
@article{zago_jcp_2018,
  title = {Semi-implicit {3D SPH} on {GPU} for lava flows},
  author = {Zago, Vito and Bilotta, Giuseppe and H\'erault, Alexis and Dalrymple, Robert A. and Fortuna, Luigi and Cappello, Annalisa and Ganci, Gaetana and Del Negro, Ciro},
  journal = {Journal of Computational Physics},
  volume = 375,
  pages = {854--870},
  year = 2018,
  doi = {10.1016/j.jcp.2018.07.060}
}
@inproceedings{moreira_spheric_2018,
  title = {Simulating spillway flows with the {SPH} method},
  author = {Moreira, Andreia B. and Leroy, Agn\`es and Violeau, Damien and Taveira-Pinto, Francisco},
  booktitle = {Proceedings of the 13th {SPHERIC} Workshop},
  address = {Galway, Ireland},
  year = 2018
}
@incollection{bilotta_design_2018,
  author = {Bilotta, Giuseppe and Zago, Vito and H\'erault, Alexis},
  title = {Design and implementation of particle systems for meshfree methods with high performance},
  booktitle = {High Performance Parallel Computing},
  editor = {Satyadhyan Chickerur},
  publisher = {IntechOpen},
  address = {Rijeka},
  chapter = 6,
  doi = {10.5772/intechopen.81755},
  url = {https://doi.org/10.5772/intechopen.81755},
  year = 2018
}
@article{carmigiani_2019,
  author = {Carmigiani, R\'emi and Leroy, Agn\`es and Violeau, Damien},
  title = {A simple {SPH} model of a free surface water wave pump: waves above a submerged plate},
  journal = {Coastal Engineering Journal},
  volume = {61},
  number = {1},
  pages = {96--108},
  year = {2019},
  publisher = {Taylor \& Francis},
  doi = {10.1080/21664250.2018.1560923}
}
@article{wei_energy_2019,
  title = {Modeling of wave energy converters by {GPUSPH} and {P}roject {C}hrono},
  journal = {Ocean Engineering},
  volume = {183},
  pages = {332--349},
  year = {2019},
  issn = {0029-8018},
  doi = {10.1016/j.oceaneng.2019.04.029},
  url = {http://www.sciencedirect.com/science/article/pii/S0029801818317608},
  author = {Wei, Zhangping and Edge, Billy L. and Dalrymple, Robert A. and H\'erault, Alexis}
}
@inproceedings{ding_spheric_2019,
  title = {Simulations of subharmonic edge wave excitation using {GPUSPH}},
  author = {Ding, Xuelin and Coco Giovanni and Dalrymple, Robert A. and Wei, Zhangping and Garnier, Roland and Whittaker, Colin and Guza, Robert T.},
  booktitle = {Proceedings of the 14th {SPHERIC} Workshop},
  address = {Exeter, UK},
  year = 2019
}
@inproceedings{zago_spheric_2019,
  title = {Coupling {SPH} and {FEM} analysis in {GPUSPH} for the study and design of offshore platforms},
  author = {Zago, Vito and Dalrymple, Robert A. and Bilotta, Giuseppe and Cappello, Annalisa and H\'erault, Alexis and Almashan, Noura},
  booktitle = {Proceedings of the 14th {SPHERIC} Workshop},
  address = {Exeter, UK},
  year = 2019
}
@inproceedings{mokos_spheric_2019,
  title = {Simulating wave overtopping on a complex dike structure using {GPUSPH}},
  author = {Mokos, Athanasios and Carmigiani, R\'emi and Violeau, Damien and Leroy, Agn\`es},
  booktitle = {Proceedings of the 14th {SPHERIC} Workshop},
  address = {Exeter, UK},
  year = 2019
}
@inproceedings{bilotta_spheric_2019,
  title = {Bigger, cleaner, faster: notes on the implementation of a powerful, flexible, high-performance {SPH} computational engine},
  author = {Bilotta, Giuseppe and Zago, Vito and H\'erault, Alexis and Saikali, Elie and Dalrymple, Robert A.},
  booktitle = {Proceedings of the 14th {SPHERIC} Workshop},
  address = {Exeter, UK},
  year = 2019
}
@article{moreira_cases_2019,
  title = {Dam spillways and the {SPH} method: two case studies in {P}ortugal},
  author = {Moreira, Andreia B. and Leroy, Agn\`es and Violeau, Damien and Taveira-Pinto, Francisco},
  journal = {Journal of Applied Water Engineering and Research},
  volume = {7},
  number = {3},
  pages = {228--245},
  year = {2019},
  publisher = {Taylor \& Francis},
  doi = {10.1080/23249676.2019.1611496}
}
@article{zago_aog_2019,
  title = {Preliminary validation of lava benchmark tests on the {GPUSPH} particle engine},
  author = {Zago, Vito and Bilotta, Giuseppe and Cappello, Annalisa and Dalrymple, Robert A. and Fortuna, Luigi and Ganci, Gaetana and H\'erault, Alexis and Del Negro, Ciro},
  journal = {Annals of Geophysics},
  volume = 62,
  number = 2,
  year = 2019,
  pages = {VO224},
  doi = {10.4401/ag-7870}
}
@article{moreira_overview_2019,
  title = {Overview of Large-Scale {S}moothed {P}article {H}ydrodynamics modeling of dam hydraulics},
  author = {Moreira, Andreia B. and Leroy, Agn\`es and Violeau, Damien and Taveira-Pinto, Francisco},
  journal = {Journal of Hydraulic Engineering},
  volume = {146},
  number = {2},
  pages = {03119001},
  year = {2020},
  doi = {10.1061/(ASCE)HY.1943-7900.0001658}
}
@article{morteza_2019,
  title = {Temporal and Topographic Source Effects on Tsunami Generation},
  author = {Derakhti, Morteza and Dalrymple, Robert A. and Okal, Emile A. and Synolakis, Costas E.},
  journal = {Journal of Geophysical Research: Oceans},
  volume = {124},
  number = {7},
  pages = {5270-5288},
  keywords = {tsunami genesis, vertical seabed displacements, tsunamis over seamounts, tsunami modeling, SPH method, coastal hazards},
  doi = {10.1029/2019JC015041},
  url = {https://agupubs.onlinelibrary.wiley.com/doi/abs/10.1029/2019JC015041},
  eprint = {https://agupubs.onlinelibrary.wiley.com/doi/pdf/10.1029/2019JC015041},
  year = {2019}
}
@article{saikali_2020,
  author = {Saikali, Elie and Bilotta, Giuseppe and H\'erault, Alexis and Zago, Vito},
  title = {Accuracy Improvements for Single Precision Implementations of the {SPH} Method},
  journal = {International Journal of Computational Fluid Dynamics},
  volume = {34},
  number = {10},
  pages = {774-787},
  year = {2020},
  publisher = {Taylor \& Francis},
  doi = {10.1080/10618562.2020.1836357},
  url = {https://doi.org/10.1080/10618562.2020.1836357},
  eprint = {https://doi.org/10.1080/10618562.2020.1836357}
}
@article{mokos_2020,
  author = {Athanasios Mokos and R\'emi Carmigniani and Agn\`es Leroy and Damien Violeau},
  title = {Simulating wave overtopping on a complex coastal structure using {SPH}},
  journal = {Journal of Applied Water Engineering and Research},
  volume = {8},
  number = {1},
  pages = {55-65},
  year = {2020},
  publisher = {Taylor \& Francis},
  doi = {10.1080/23249676.2020.1719221},
  url = {https://doi.org/10.1080/23249676.2020.1719221},
  eprint = {https://doi.org/10.1080/23249676.2020.1719221}
}
@article{bilotta_cimento_c_2020,
  author = {Bilotta, Giuseppe},
  title = {Studying the rheology of geophysical flows with physical-mathematical models: An application of the {GPUSPH} particle engine},
  journal = {Il nuovo cimento C},
  year = {2020},
  issue = {4-5},
  pages = {A122},
  doi = {10.1393/ncc/i2020-20122-4},
  url = {http://doi.org/10.1393/ncc/i2020-20122-4}
}
@article{ghaitanellis_2021,
  author = {Gha\"itanellis, Alex and Violeau, Damien and Philip L.-F. Liu and Thomas Viard},
  title = {{SPH} simulation of the 2007 {C}hehalis {L}ake landslide and subsequent tsunami},
  journal = {Journal of Hydraulic Research},
  volume = {0},
  number = {0},
  pages = {1-25},
  year = {2021},
  publisher = {Taylor \& Francis},
  doi = {10.1080/00221686.2020.1844814},
  url = {https://doi.org/10.1080/00221686.2020.1844814},
  eprint = {https://doi.org/10.1080/00221686.2020.1844814}
}
@inproceedings{bilotta_semi_implicit_2021,
  author = {Bilotta, Giuseppe and Zago, Vito and Veronica Centorrino and H\'erault, Alexis and Dalrymple, Robert A. and Del Negro, Ciro},
  title = {Improvements to a semi-implicit integration scheme for viscous fluids in {SPH}},
  booktitle = {Proceedings of the 15th {SPHERIC} Workshop},
  address = {New York},
  year = 2021
}
@article{zago_ccsph,
  title = {Overcoming excessive numerical dissipation in {SPH} modeling of water waves},
  journal = {Coastal Engineering},
  volume = {170},
  pages = {104018},
  year = {2021},
  issn = {0378-3839},
  doi = {10.1016/j.coastaleng.2021.104018},
  url = {https://www.sciencedirect.com/science/article/pii/S0378383921001666},
  author = {Zago, Vito and Schulze, Lennart J. and N. Almashan and Dalrymple, Robert A.},
  keywords = {WCSPH, Wave propagation, Coastal engineering, Kernel correction, Decay},
  abstract = {Excessive nonphysical energy dissipation is a problem in Smoothed Particle Hydrodynamics (SPH) when modeling free surface waves, resulting in a significant decrease in wave amplitude within a few wavelengths for progressive waves. This dissipation poses a limitation to the physical scale of SPH applications involving water wave propagation. Some prior solutions to this wave decay problem rely on elaborate schemes, which require a complex, or non-straightforward, implementation. Other approaches demand large smoothing lengths that lead to longer simulation times and potential degradation of the results. In this work we present an approach based on a kernel gradient correction. Our scheme is fully 3D and solves the main known drawbacks of kernel gradient corrections, such as instabilities and lack of momentum conservation. The latter is ensured by adopting an averaged correction matrix, so as to conserve reciprocity during particle interactions. We test our model with a standing wave in a basin and a progressive wave train in a wave tank, and in both cases no nonphysical decay occurs. A comparison to an approach based on large smoothing factors shows advantages both in quality of the results and simulation time.}
}
@article{moreira_2021,
  author = {Moreira, Andreia B. and Pedro A. Manso and Violeau, Damien and Francisco Taveira-Pinto},
  title = {Single-phase {SPH} modelling of plunge pool dynamic pressures at a near-prototype scale},
  journal = {Journal of Hydraulic Research},
  volume = 59,
  number = 6,
  pages = {888-902},
  year = {2021},
  publisher = {Taylor \& Francis},
  doi = {10.1080/00221686.2020.1862320},
  url = {https://doi.org/10.1080/00221686.2020.1862320},
  eprint = {https://doi.org/10.1080/00221686.2020.1862320}
}
@inproceedings{zago_fem_2022,
  author = {Zago, Vito and Noura Almashan and Dalrymple, Robert A. and Bilotta, Giuseppe and Dana B. Al-Houti and Subramaniam Neelamani},
  title = {Validation of an {SPH-FEM} model for offshore structure},
  booktitle = {Proceedings of the 16th {SPHERIC} Workshop},
  address = {Catania},
  year = 2022
}
@inproceedings{schulze_ccsph_2022,
  author = {Schulze, Lennart J. and Zago, Vito and Bilotta, Giuseppe and Dalrymple, Robert A.},
  title = {Localized kernel gradient correction for {SPH} simulations of water wave propagation},
  booktitle = {Proceedings of the 16th {SPHERIC} Workshop},
  address = {Catania},
  year = 2022
}
@article{bilotta_bicgstab,
  title = {A numerically robust, parallel-friendly variant of {BiCGSTAB} for the semi-implicit integration of the viscous term in Smoothed Particle Hydrodynamics},
  journal = {Journal of Computational Physics},
  pages = {111413},
  volume = 446,
  year = {2022},
  issn = {0021-9991},
  doi = {10.1016/j.jcp.2022.111413},
  url = {https://www.sciencedirect.com/science/article/pii/S0021999122004752},
  author = {Bilotta, Giuseppe and Zago, Vito and Veronica Centorrino and Dalrymple, Robert A. and H\'erault, Alexis and Del Negro, Ciro},
  keywords = {SPH, Low Reynolds number, Implicit integration, BiCGSTAB, GPU},
  abstract = {Implicit integration of the viscous term can significantly improve performance in computational fluid dynamics for highly viscous fluids such as lava. We show improvements over our previous proposal for semi-implicit viscous integration in Smoothed Particle Hydrodynamics, extending it to support a wider range of boundary models. Due to the resulting loss of matrix symmetry, a key advancement is a more robust version of the biconjugate gradient stabilized method to solve the linear systems, that is also better suited for parallelization in both shared-memory and distributed-memory systems. The advantages of the new solver are demostrated in applications with both Newtonian and non-Newtonian fluids, covering both the numerical aspect (improved convergence thanks to the possibility to use more accurate boundary model) and the computing aspect (with excellent strong scaling and satisfactory weak scaling).}
}
@article{mgpu-multires-sph,
  title = {Multi-{GPU} multi-resolution {SPH} framework towards massive hydrodynamics simulations and its applications in high-speed water entry},
  author = {Zhen-Xi Zhao and Bilotta, Giuseppe and Qin-Er Yuan and Zhao-Xin Gong and Hua Liu},
  journal = {Journal of Computational Physics},
  volume = {490},
  pages = {112339},
  year = {2023},
  issn = {0021-9991},
  doi = {10.1016/j.jcp.2023.112339},
  url = {https://www.sciencedirect.com/science/article/pii/S0021999123004345}
}
@inproceedings{bilotta_explog_2023,
  author = {Bilotta, Giuseppe and H\'erault, Alexis and Saikali, Elie and Dalrymple, Robert A.},
  title = {Stability and performance of the acoustic terms in {WCSPH}},
  booktitle = {Proceedings of the 17th {SPHERIC} Workshop},
  address = {Rhodes},
  year = 2023
}
@article{zago_overtopping_2023,
  title = {Characterization and modeling of greenwater overtopping of a sea-level deck},
  journal = {Ocean Engineering},
  volume = {275},
  pages = {114131},
  year = {2023},
  issn = {0029-8018},
  doi = {https://doi.org/10.1016/j.oceaneng.2023.114131},
  url = {https://www.sciencedirect.com/science/article/pii/S0029801823005152},
  author = {Zago, Vito and Dalrymple, Robert A. and N. Almashan and Bilotta, Giuseppe and D. Al-Houti and S. Neelamani},
  keywords = {Greenwater, Wave overtopping, SPH, Offshore structure},
  abstract = {Greenwater overtopping occurs when the deck of a marine structure or ship is submerged by a large non-breaking wave. This overtopping wave develops into a fast-moving mass of water that can damage deck structures. In this work we use laboratory experiments to characterize the kinematics of the greenwater fronts, showing that there are two main classes of flow. One class is an essentially two-dimensional flow with a single wave front traversing the entire deck, while the second type has multiple wave fronts originating from all sides of the platform. We characterize each type with respect to wave conditions and describe the transition between the two types. We then discuss two modeling approaches that can be used to simulate the kinematic of the overtopping fronts. A simple linear model, based on linear wave theory and on the assumption of the overtopping as a dam break, to predict the type and the propagation of the overtopping wave on the deck. The second is a three-dimensional nonlinear numerical hydrodynamics model, based on Smoothed Particle Hydrodynamics method, which reproduces the geometry of the overtopping in the laboratory more accurately. We compare the outputs of these models with laboratory observations and discuss their applicability.}
}
@article{fast_neib_list,
  title = {Optimization of flexible neighbors lists in {S}moothed {P}article {H}ydrodynamics on {GPU}},
  author = {Bilotta, Giuseppe and Zago, Vito and H\'erault, Alexis and Cappello, Annalisa and Ganci, Gaetana and Hendrik D. {van Ettinger} and Del Negro, Ciro},
  journal = {Advances in Engineering Software},
  volume = {196},
  pages = {103711},
  year = {2024},
  issn = {0965-9978},
  doi = {10.1016/j.advengsoft.2024.103711},
  url = {https://www.sciencedirect.com/science/article/pii/S0965997824001182}
}
@inproceedings{ganci_deposits_2024,
  author = {Ganci, Gaetana and Bilotta, Giuseppe and Cappello, Annalisa and Ciancitto, Francesco and Pecora, Emilio},
  title = {Characterizing volcano deposits with {SPH}},
  booktitle = {Proceedings of the 18th {SPHERIC} Workshop},
  address = {Berlin},
  year = 2024
}
@article{bilotta_cpusph,
  title = {From {GPU} to {CPU} (and beyond): extending hardware support in {GPUSPH} through a {SYCL}-inspired interface},
  author = {Bilotta, Giuseppe},
  year = 2025,
  doi = {10.1002/cpe.8313},
  url = {https://onlinelibrary.wiley.com/doi/10.1002/cpe.8313},
  journal = {Concurrency and Computation: Practice and Experience},
  volume = {37},
  issue = {1},
  pages = {e8313}
}
@article{zago_sph_fem,
  title = {Design and validation of a coupled {SPH-FEM} model for offshore structures},
  journal = {Ocean Engineering},
  volume = {343},
  pages = {123194},
  year = {2026},
  issn = {0029-8018},
  doi = {10.1016/j.oceaneng.2025.123194},
  url = {https://www.sciencedirect.com/science/article/pii/S002980182502877X},
  author = {Zago, Vito and Nourah Almashan and Dalrymple, Robert A. and Bilotta, Giuseppe},
  keywords = {SPH, FEM, Offshore, Coupling},
  abstract = {The design of offshore structures must consider the possible severe conditions created by the marine environment, as waves exert forces that can threaten the integrity of the structures. SPH-FEM coupled models can accurately predict fluid-solid interaction forces and solid deformation. However, when dealing with large structures, the computational load of these models can be very high. Therefore, some applications to large structures assume rigid behavior or treat some subsystems analytically. In this work we discuss the design, implementation, and validation of an entirely numerical model based on Weakly Compressible (WCSPH) and the Absolute Nodal Coordinate Formulation (ANCF) variant of the Finite Element Method (FEM), optimized for the simulation of waves interacting with large structures. Approaches for the reduction of the numerical noise and simulation time are addressed. The model simultaneously estimates pressures, forces, moments, and structure deformations, as well as the 3D representation of sea waves and their interaction with the solid structure, constituting one of the most complete and complex applications of the SPH method to a real-world case study, validated for all the outputs against laboratory data. The data is obtained from a physical scaled model of an offshore platform, tested under various wave and water-level conditions.}
}

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