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SPHYSICS Publications

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The following list of publications have presented the development and application of the SPHYSICS code. If you have used the SPHYSICS code in one of your papers, please email the title and details to the Developers to add your paper to the list:

JOURNAL PAPERS

2014

  1. Altomare C., Crespo A.J.C., Rogers B.D., Dominguez J.M., Gironella X., Gomez-Gesteira M. "Numerical modelling of armour block sea breakwater with smoothed particle hydrodynamics". Computers and Structures. Vol. 130. pp 34-45. January. DOI: 10.1016/j.compstruc.2013.10.011, 2014.
  2. St-Germain, P., Nistor, I., Townsend, R., Shibayama, T. (2014). "Smoothed-Particle Hydrodynamics Numerical Modeling of Structures Impacted by Tsunami Bores." J. Waterway, Port, Coastal, Ocean Eng., 140(1), 66–81. DOI: 10.1061/(ASCE)WW.1943-5460.0000225, 2014.

2013

  1. Vacondio R, Rogers B D, Stansby P K, Mignosa P. "A correction for balancing discontinuous bed slopes in two-dimensional smoothed particle hydrodynamics shallow water modeling". International Journal for Numerical Methods in Fluids. Vol. 71. Issue 7. pp 850-872. March. DOI: 10.1002/fld.3687, 2013.
  2. Fourtakas G, Rogers B D, Laurence D R P. "Modelling Sediment resuspension in Industrial tanks using SPH". La Houille Blanche. Issue 2. pp 39-45. April. DOI: 10.1051/lhb/2013014, 2013.
  3. Valdez-Balderas D, Dominguez J, Rogers B D, Crespo AJC. "Towards accelerating Smoothed Particle Hydrodynamics simulations for free-surface flows on multi-GPU clusters". Journal of Parallel and Distributed Computing. Vol. 73. Issue 11. pp 1483-1493. DOI: 10.1016/j.jpdc.2012.07.010, 2013.
  4. Muhammad N, Rogers B D, Li L. "Understanding the behaviour of pulsed laser dry and wet micromachining processes by multi-phase smoothed particle hydrodynamics (SPH) modelling". Journal of Physics D: Applied Physics. Vol. 46. No. 9. pp 13. DOI: 10.1088/0022-3727/46/9/095101, 2013.
  5. Dominguez JM, Crespo AJC, Valdez-Balderas D, Rogers B D, Gomez-Gesteira M. "New multi-GPU implementation for smoothed particle hydrodynamics on heterogeneous clusters". Computer Physics Communications. Vol. 184. Issue 8. pp 1848-1860. DOI: 10.1016/j.cpc.2013.03.008, 2013.
  6. Vacondio R, Rogers B D, Stansby P K, Mignosa P. "Shallow water SPH for flooding with dynamic particle coalescing and splitting". Advances in Water Resources. Vol. 58. pp 10-23. August. DOI: 10.1016/j.advwatres.2013.04.007, 2013.
  7. Skillen A, Lind SJ, Stansby P K, Rogers B D. "Incompressible Smoothed Particle Hydrodynamics (SPH) with reduced temporal noise and generalised Fickian smoothing applied to body-water slam and efficient wave-body interaction". Computer Methods in Applied Mechanics and Engineering. Vol. 265. pp 163-173. October. DOI: 10.1016/j.cma.2013.05.017, 2013.
  8. Vacondio R, Rogers B D, Stansby P K, Mignosa P, Feldman J. "Variable resolution for SPH: a dynamic particle coalescing and splitting scheme". Computer Methods in Applied Mechanics and Engineering. Vol. 256. pp 132-148. April. DOI: 10.1016/j.cma.2012.12.014, 2013.
  9. Omidvar P., Stansby P.K., Rogers B.D. "SPH for 3D floating bodies using variable mass particle distribution". International Journal for Numerical Methods in Fluids, Vol. 72. Issue 4. pp 427-452. DOI: 10.1002/fld.3749, 2013.

2012

  1. Gómez-Gesteira M., Rogers B.D., Crespo A.J.C., Dalrymple R.A, Narayanaswamy M. and Dominguez J.M.. "SPHysics - development of a free-surface fluid solver- Part 1: Theory and Formulations". Computers & Geosciences, Vol. 48. pp 289-299. November, DOI:10.1016/j.cageo.2012.02.029, 2012.
  2. Gómez-Gesteira M., Crespo A.J.C., Rogers B.D., Dalrymple R.A., Dominguez J.M. and Barreiro A.. "SPHysics - development of a free-surface fluid solver- Part 2: Efficiency and test cases". Computers & Geosciences, Vol. 48. pp 300-307. DOI:10.1016/j.cageo.2012.02.028, 2012.
  3. Omidvar P., Stansby P.K., Rogers B.D. "Wave body interaction in 2D using Smoothed Particle Hydrodynamics (SPH) with variable particle mass". International Journal for Numerical Methods in Fluids, February, 68(6), 686-705. DOI: 10.1002/fld.2528, 2012.
  4. Vacondio R., Rogers B.D., Stansby P.K.. In Press. "Accurate particle splitting for SPH in shallow water with shock capturing". International Journal for Numerical Methods in Fluids, Vol. 69. Issue 8. pp 1377-1410. DOI: 10.1002/fld.2646, 2012.

2011

  1. Crespo A.J.C., Dominguez J.M., Barreiro A., Gomez-Gesteira M., Rogers B.D.. "GPUs, a new tool of acceleration in CFD: Efficiency and reliability on Smoothed Particle Hydrodynamics methods". PLoS ONE. DOI: 11.1371/journal.pone.0020685, 2011.
  2. Vacondio R., Rogers B.D., Stansby P.K. "Smoothed Particle Hydrodynamics: approximate zero-consistent 2-D boundary conditions and still shallow water tests". International Journal for Numerical Methods in Fluids, Vol. 69. Issue 1. pp 226-253. DOI: 10.1002/fld.2559, 2011.

2010

  1. Dominguez J.M., Crespo A.J.C., Gomez-Gesteira M., Marongiu J.C.. " Neighbour lists in Smoothed Particle Hydrodynamics “. “International Journal for Numerical Methods in Fluids”, DOI: 10.1002/fld.2481, 2010.
  2. Khayyer, A. and H. Gotoh, "On particle-based simulation of a dam break over a wet bed", Journal of Hydraulic Research, 48, 2, 238-249, 2010.
  3. Gómez-Gesteira, M., B.D. Rogers, R.A. Dalrymple and A.J.C. Crespo, "State-of-the-art of classical SPH for free-surface flows", Journal of Hydraulic Research, 48, Extra Issue, 6-27,DOI: 10.3826/jhr.2010.0012, 2010.
  4. Rogers, B.D., R.A. Dalrymple and P.K. Stansby, "Simulation of caisson breakwater movement using 2-D SPH", Journal of Hydraulic Research, 48, Extra Issue, 135-141, DOI:10.1080/00221686.2010.9641254, 2010.
  5. Narayanaswamy, M., A.J.C. Crespo, Gómez-Gesteira, M., and R.A. Dalrymple, "SPHysics-FUNWAVE hybrid model for coastal wave propagation", Journal of Hydraulic Research, 48, Extra Issue, 85-93, DOI: 10.3826/jhr.2010.0007, 2010.

2008

  1. Crespo, A.J.C., M. Gómez-Gesteira, and R.A. Dalrymple, "Modeling Dam Break Behavior over a Wet Bed by a SPH Technique", Journal of Waterway, Port, Coastal, and Ocean Engineering, 134(6), 313-320, 2008.

2007 and earlier

  1. Crespo, A.J.C., M. Gómez-Gesteira, and R.A. Dalrymple, "3D SPH Simulation of large waves mitigation with a dike", Journal of Hydraulic Research, 45, 5, 631-642, 2007.
  2. Crespo, A.J.C., M. Gómez-Gesteira, and R.A. Dalrymple, "Boundary Conditions Generated by Dynamic Particles in SPH Methods”, CMC: Computers, Materials, & Continua, 5, 3, 173-184, 2007.
  3. Dalrymple, R.A. and B.D. Rogers, "Numerical Modeling of Water Waves with the SPH Method," Coastal Engineering, 53/2-3, 141-147, DOI: 10.1016/j.coastaleng.2005.10.004, 2006.
  4. Gómez-Gesteira, M., D. Cerqueiro, A.J.C. Crespo and R.A. Dalrymple, "Green Water Overtopping Analyzed with an SPH Model", Ocean Engineering, 32, 2, 223-238, 2005.
  5. Gómez-Gesteira, M., R.A. Dalrymple, A.J.C. Crespo, and D. Cerquiero, "Uso de la Tecnica SPH para el Estudio de la Interaccion entre Olas y Estructuras," Ingenieria del Agua, 11, 2, 2004.
  6. Gómez-Gesteira, M. and R.A. Dalrymple, "Using a 3D SPH Method for Wave Impact on a Tall Structure, J. Waterway, Port, Coastal, Ocean Engineering, 130(2), 63-69, 2004.

Conference Proceedings

  1. Lind, S, Xu R, Stansby PK, Rogers BD. "A stabilising diffusion-based shifting algorithm for incompressible smoothed particle hydrodynamics", Proc. 6th International SPHERIC Workshop, ISBN: 978-3-89220-658-3, Editors T.Rung & C.Ulrich, Hamburg 8-10 June, 2011, p. 14-21.
  2. Vacondio R, Rogers BD, Stansby PK, Mignosa P, Feldman, J. "A dynamic particle coalescing and splitting scheme for SPH", Proc. 6th International SPHERIC Workshop, ISBN: 978-3-89220-658-3, Editors T.Rung & C.Ulrich, Hamburg 8-10 June, 2011, p. 93-100.
  3. Altomare C, Rogers BD, Crespo AJC, Stansby PK, Mignosa P, Feldman, J. "Modelling armour block sea defences with SPH on GPUs", Proc. 6th International SPHERIC Workshop, ISBN: 978-3-89220-658-3, Editors T.Rung & C.Ulrich, Hamburg 8-10 June, 2011, p. 220-225.
  4. Pearce M, Takeda T, Hudson D. "Prediction of ship motions for a Wigley Hull", Proc. 6th International SPHERIC Workshop, ISBN: 978-3-89220-658-3, Editors T.Rung & C.Ulrich, Hamburg 8-10 June, 2011, p. 226-232.
  5. Valdez-Balderas D, Dominguez JM, Crespo AJC, Rogers BD. "Develoing massively parallel SPH simulations on multi-GPU cluster", Proc. 6th International SPHERIC Workshop, ISBN: 978-3-89220-658-3, Editors T.Rung & C.Ulrich, Hamburg 8-10 June, 2011, p. 340-347.
  6. Crespo AJC, Dominguez JM, Barreiro A, Gomez-Gesteira M, Rogers BD. "DualSPHysics, new GPU computing on SPH models", Proc. 6th International SPHERIC Workshop, ISBN: 978-3-89220-658-3, Editors T.Rung & C.Ulrich, Hamburg 8-10 June, 2011, p. 348-354.
  7. Mayrhofer A, Gomez Gesteira M, Crespo A J , Rogers B D. "Advanced Pre-Processing for SPHysics". Proc. 5th International SPHERIC Workshop, Editor B.D. Rogers. pp 201-208. Manchester, 23-25 June 2010.
  8. Omidvar P, Stansby P K, Rogers B D. "SPH for a 2-D and 3-D heaving body using variable mass particle distribution". Proc. 5th International SPHERIC Workshop, Editor B.D. Rogers. pp 282-288. Manchester, 23-25 June 2010.
  9. Vacondio R, Mignosa P, Rogers B D, Stansby P K. "2-D numerical modeling of rapidly varying shallow water flows by Smoothed Particle Hydrodynamics technique". Proc. of Riverflow 2010. pp 1621. 8-10 September 2010.
  10. Vacondio R, Mignosa P, Rogers B D, Stansby P K. "SPH Shallow Water Equation Solver for real flooding simulation". Proc. 5th International SPHERIC Workshop. Editor B.D. Rogers. pp 106-113, Manchester, 23-25 June 2010.
  11. Rogers B. D., Leduc J., Marongiu J.-C., Leboeuf F., "Comparison and evaluation of multi-phase and surface tension models", In Proc. 4th SPHERIC Int. Workshop, Nantes, 30-37, 2009.
  12. Crespo A.J.C., Marongiu J.-C., Parkinson E., Gómez-Gesteira M., Dominguez J.M., “High Performance of SPH Codes: Best approaches for efficient parallelization on GPU computing”, In Proc. 4th SPHERIC Int. Workshop, Nantes, 69-76, 2009.
  13. Hérault A., Vicari A., Del Negro C., Dalrymple R. A., "Modeling Water Waves in the Surf Zone with GPUSPHysics”, In Proc. 4th SPHERIC Int. Workshop, Nantes, 77-84, 2009.
  14. Omidvar P., Stansby P.K., Rogers B.D. "Investigation of surface waves interacting with a fixed cylinder and generated by a heaving cylinder using Smoothed Particle Hydrodynamics (SPH)". Proc. of 33rd IAHR Congress, Vancouver, 7447-7454, 2009.
  15. Omidvar P., Stansby P.K., Rogers B.D., "SPH for free-surface flow around a heaving oscillating cylinder using variable particle mass distributions: 2-D investigations", In Proc. 4th SPHERIC Int. Workshop, Nantes, 346-351, 2009.
  16. Dalrymple R. A., Hérault A., "Levee breaching with GPU-SPHysics code", In Proc. 4th SPHERIC Int. Workshop, Nantes, 352-355, 2009.
  17. Didier E., Neves M., "Coastal flow simulation using SPH: Wave overtopping on an impermeable coastal structure", In Proc. 4th SPHERIC Int. Workshop, Nantes, 357-364, 2009.
  18. Domínguez J. M., Crespo A. J. C., Gómez-Gesteira M., "Improvements on SPH neighbor list", In Proc. 4th SPHERIC Int. Workshop, Nantes, 366-371, 2009.
  19. Narayanaswamy M., Crespo A. J. C., Gómez-Gesteira M., Dalrymple R. A., "Two way Boussinesq-SPH hybrid model to study free surface waves", In Proc. 4th SPHERIC Int. Workshop, Nantes, 393-398, 2009.
  20. Rogers, B.D., Dalrymple, R.A. and P.K. Stansby, “SPH Modeling of floating bodies in the surf zone”, Proc. 31st Int. Conf. Coastal Engineering (ICCE), edited by J McKee Smith, 204-215, 2009.
  21. Rogers, B.D., Dalrymple, R.A., Stansby, P.K. and Laurence, D.L., “Development of a Parallel SPH Code for free-surface wave hydrodynamics”, In Proc. 2nd Int. SPHERIC Workshop, Madrid, 2007.
  22. Crespo, A.J.C., M. Gómez-Gesteira, and R.A. Dalrymple, “Vorticity Generated By A Dam Break Over A Wet Bed Modeled By Smoothed Particle Hydrodynamics”, Proceedings of 32nd Congress of IAHR, the International Association of Hydraulic Engineering & Research, CORILA, 2007.
  23. Dalrymple, R.A., B.D. Rogers, M. Narayanaswamy, S. Zou, M. Gesteira, A.J.C. Crespo and A. Panizzo, “Smoothed Particle Hydrodynamics for Water Waves”, Proceedings of the 26th International Conference on Offshore Mechanics and Artic Engineering, ASME, 2007.
  24. Rogers, B.D. and R.A. Dalrymple, ``Three-Dimensional SPH-SPS Modeling of Wave Breaking, Symposium on Ocean Wave Measurements and Analysis, ASCE, Madrid, 2005.
  25. Dalrymple, R.A., ``New Technology: SPH for Coastal Processes, Keynote Address, Symposium on Ocean Wave Measurements and Analysis, ASCE, Madrid, 2005.
  26. Narayanaswamy, M. and R.A. Dalrymple, ``A Hybrid Boussinesq and SPH Model for Forced Oscillations, Symposium on Ocean Wave Measurements and Analysis, ASCE, Madrid, 2005.
  27. Rogers, B.D. and R.A. Dalrymple, ``SPH Modeling of Breaking Waves, Proc. 29th Intl. Conference on Coastal Engineering, Lisbon, World Scientific Press, 415-427, 2004.

Book Chapters

Rogers, B.D. and R.A. Dalrymple, SPH Modeling of Tsunamis, Proc. Intl. Workshop on Longwave Run-up, Advances in Coastal Engineering Series, Editors P.L.-F. Liu, H. Yeh and C. Synolakis, World Scientific, 75-100, 2008.

Dalrymple, R.A., Gómez-Gesteira, M., Rogers, B.D., Panizzo, A., Zou, S., Crespo, A.J.C., Cuomo, G., And Narayanaswamy, M., Smoothed Particle Hydrodynamics for Water Waves, in Advances in numerical simulation of nonlinear water waves, Ma, Q. ed., World Scientific Publishing, 2009.

PhD Theses

Omidvar, P., Wave Loading on Bodies in the Free Surface Using Smoothed Particle Hydrodynamics (SPH), University of Manchester, 2010.

Vacondio, R., Shallow Water and Navier-Stokes SPH-like numerical modelling of rapidly varying free-surface flows, Università degli Studi di Parma Facoltà di Ingegneria, 2010.

Xu, R., An Improved Incompressible Smoothed Particle Hydrodynamics Method and Its Application in Free-Surface Simulations, University of Manchester, 2010.

Zou, S., Coastal Sediment Transport Simulation by Smoothed Particle Hydrodynamics, Johns Hopkins University, 2007.

Crespo, A.J.C., Application of the Smoothed Particle Hydrodynamics model SPHysics to free-surface hydrodynamics, University of Vigo, 2008.

Narayanaswamy, M., A Hybrid-Boussinesq SPH Wave Propagation Model with Applications to Forced Waves in Rectangular Tanks, Johns Hopkins University, 2008.