Moving particle semi-implicit method: Difference between revisions

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16) K. Shibata and S. Koshizuka, “Numerical analysis of shipping water impact on a deck using a particle method,” Ocean Engineering, Vol 34, pp. 585–593, 2007.
 
17) A. Shakibaeinia and Y.C. Jin “A weaklymesh-free compressibleparticle MPS methodmodel for simulation open-boundaryof freemobile-surfacebed dam flowbreak.” Int.Advances J.in Numer.Water Methods FluidsResources, 6334 (106):1208–1232794-807 (Published Online: 7 Aug 2009 DOI: 10.10021016/fldj.advwatres.2011.04.2132011).
 
18) A. Shakibaeinia and Y.C. Jin “Lagrangian“A Modelingweakly ofcompressible flowMPS overmethod spillwaysfor usingsimulation moving particleopen-boundary semifree-implicitsurface methodflow.” ProcInt. 33rdJ. IAHRNumer. Congress,Methods VancouverFluids, Canada,63 (10):1208–1232 (Published Online: 7 Aug 2009, 1809-1816.DOI: 10.1002/fld.2132).
 
19) MA. Sueyoshi, M. KashiwagiShakibaeinia and SY.C. Naito,Jin “Numerical“Lagrangian simulationModeling of wave-induced nonlinear motions of a two-dimensional floatingflow bodyover byspillways theusing moving particle semi-implicit method,.JournalProc. of33rd MarineIAHR ScienceCongress, andVancouver, TechnologyCanada, Vol 132009, pp1809-1816. 85–94, 2008.
 
20) ZM. SunSueyoshi, GM. XiKashiwagi and XS. ChenNaito, “A“Numerical numerical studysimulation of stirwave-induced mixingnonlinear motions of liquidsa withtwo-dimensional floating body by the moving particle semi-implicit method,” ChemicalJournal Engineeringof Marine Science and Technology, Vol 6413, pp. 341–35085–94, 20092008.
 
21) Z. Sun, G. Xi and X. Chen, “Mechanism“A numerical study of deformationstir andmixing mass transfer for binary dropletof collisionsliquids with particle method,” Phys.Chemical Engineering FluidsScience, Vol 2164, 032106pp. 341–350, 2009.
 
22) Z. Sun, G. Xi and X. Chen, “Mechanism study of deformation and mass transfer for binary droplet collisions with particle method,” Phys. Fluids, Vol 21, 032106, 2009.
22) K. Tsubota, S. Wada, H. Kamada, Y. Kitagawa, R. Lima and T. Yamaguchi, “A Particle Method for Blood Flow Simulation – Application to Flowing Red Blood Cells and Platelets–,” Journal of the Earth Simulator, Vol 5, pp. 2–7, 2006.
 
2223) K. Tsubota, S. Wada, H. Kamada, Y. Kitagawa, R. Lima and T. Yamaguchi, “A Particle Method for Blood Flow Simulation – Application to Flowing Red Blood Cells and Platelets–,” Journal of the Earth Simulator, Vol 5, pp. 2–7, 2006.
23) H. Xie, S. Koshizuka and Y. Oka, “Simulation of drop deposition process in annular mist flow using three-dimensional particle method,” Nuclear Engineering and Design, Vol 235, pp. 1687–1697, 2005.
 
2324) H. Xie, S. Koshizuka and Y. Oka, “Simulation of drop deposition process in annular mist flow using three-dimensional particle method,” Nuclear Engineering and Design, Vol 235, pp. 1687–1697, 2005.
24) S. Zhang, K. Morita, K. Fukuda and N. Shirakawa, “An improved MPS method for numerical simulations of convective heat transfer problems,” Int. J. Numer. Meth. Fluid, 51, 31–47, 2005.
 
2425) S. Zhang, K. Morita, K. Fukuda and N. Shirakawa, “An improved MPS method for numerical simulations of convective heat transfer problems,” Int. J. Numer. Meth. Fluid, 51, 31–47, 2005.
 
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