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Crespo AJC, Gómez-Gesteira M, Dalrymple RA (2008) Modeling dambreak behavior over a wet
bed by a SPH technique. J WaterW Port, Coast, Ocean Eng 134:313-320
Crespo AJC, Dominguez JM, Barreiro A, Gómez-Gesteira M, Rogers BD (2011) GPUs, a new tool
of acceleration in CFD: efficiency and reliability on smoothed particle hydrodynamics methods.
PLoS ONE 6(6):e20685
Dalrymple RA, Rogers BD (2006) Numerical modeling of water waves with the SPHmethod. Coast
Eng 53:141-147
Domínguez JM, Crespo AJC, Gómez-Gesteira M, Marongiu JC (2011) Neighbour lists in smoothed
particle hydrodynamics. Int J Numer Methods Fluids 67(12):2026-2042
Domínguez JM, Crespo AJC, Gómez-Gesteira M (2013a) Optimization strategies for CPU and
GPU implementations of a smoothed particle hydrodynamics method. Comput Phys Commun
184(3):617-627
Domínguez JM, Crespo AJC, Rogers BD, Gómez-Gesteira M (2013b) New multi-GPU implemen-
tation for smoothed particle hydrodynamics on heterogeneous clusters. Comput Phys Commun
184:1848-1860
Gingold RA, Monaghan JJ (1977) Smoothed particle hydrodynamics: theory and application to
non- spherical stars. Mon Not R Astron Soc 181:375-389
Gómez-Gesteira M, Dalrymple RA (2004) Using a 3D SPH method for wave impact on a tall
structure. J Waterw Port, Coast, Ocean Eng 130(2):63-69
Gómez-Gesteira M, Cerqueiro D, Crespo AJC, Dalrymple RA (2005) Green water overtopping
analyzed with a SPH model. Ocean Eng 32:223-238
Gómez-Gesteira M, Rogers BD, Dalrymple RA, Crespo AJC (2010) State-of-the-art of classical
SPH for free surface flows. J Hydraul Res 48:6-27. doi : 10.3826/jhr.2010.0012
Gómez-Gesteira M, Rogers BD, Crespo AJC, Dalrymple RA, Narayanaswamy M, Domínguez JM
(2012a) SPHysics-development of a free-surface fluid solver-part 1: theory and formulations.
Comput Geosci 48:289-299
Gómez-Gesteira M, Crespo AJC, Rogers BD, Dalrymple RA, Domínguez JM, Barreiro A (2012b)
SPHysics-development of a free-surface fluid solver-part 2: efficiency and test cases. Comput
Geosci 48:300-307
Kleefsman KMT, Fekken G, Veldman AEP, Iwanowski B, Buchner B (2005) A volume-of-fluid
based simulation method for wave impact problems. J Comput Phys 206:363-393
Leimkuhler BJ, Reich S, Skeel RD (1996) Integration methods for molecular dynamic IMA volume
in mathematics and its application. Springer, New York
Liu GR (2003) Mesh free methods: moving beyond the infinite element method. CRC Press, Boca
Raton
Monaghan JJ (1982) Why particle methods work. SIAM J Sci Stat Comput 3:422-433
Monaghan JJ (1989) On the problem of penetration in particle methods. J Comput Phys 82:1-15
Monaghan JJ (1992) Smoothed particle hydrodynamics. Annu Rev Astron Appl 30:543-574
Monaghan JJ (1994) Simulating free surface flows with SPH. J Comput Phys 110:399-406
Monaghan JJ (2005) Smoothed particle hydrodynamics. Rep Prog Phys 68:1703-1759
Monaghan JJ, Kos A (1999a) Solitary waves on a Cretan beach. J Waterw Port, Coast, Ocean Eng
125:145-154
Monaghan JJ, Cas RF, Kos A, Hallworth M (1999b) Gravity currents descending a ramp in a
stratified tank. J Fluid Mech 379:39-70
Narayanaswamy MS, Crespo AJC, Gómez-Gesteira M, Dalrymple RA (2010) SPHysics-Funwave
hybrid model for coastal wave propagation. J Hydraul Res 48:85-93. doi: 10.3826/jhr.2010.0007
Rogers BD, Dalrymple RA, Stansby PK (2010) Simulation of caisson break water movement using
SPH. J Hydraul Res 48:135-141. doi: 10.3826/jhr.2010.0013
Verlet L (1967) Computer experiments on classical fluids. I. Thermodynamical properties of
Lennard-Jones molecules. Phys Rev 159:98-103
Wendland H (1995) Piecewiese polynomial, positive definite and compactly supported radial func-
tions of minimal degree. Adv Comput Math 4:389-396
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