The moving particle semi-implicit(MPS)method was improved to raise the computational efficiency of meshless methods from the search algorithm
the mathematical manipulation and the calculation execution. In the improvement
the program modules which consume the most computing time in the calculation were regarded as the optimization objects
and reducing the calculation level and the calculation amount was viewed as the optimization means. A new search algorithm was proposed to eliminate most of the useless calculation and reduce the complexity and the calculation amount by adopting low level mathematical manipulations and the position comparison. The results show that the MPS method improved has higher computational efficiency and wider application in engineering. It is suggested that the compatibility between different optimization methods should be considered because their combination may not yield the superposition of effects.
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KOSHIZUKA S, OKA Y. Moving-particle semi-implicit method for fragmentation of incompressible fluid[J]. Nuclear Science and Engineering, 1996, 123(3): 421-434.
DUAN Riqiang, JIANG Shenyao, ZHANG Youjie, et al. Two-dimensional numerical simulation of hydrodynamic behaviors of drop covered with vapor film[J]. Science in China: Series E, 2005, 48(2):180-190.
PAN Xujie, ZHANG Huaixin. Moving particle semi-implicit method for simulation of liquid sloshing on roll motion[J]. Journal of Shanghai Jiaotong University, 2008,42(11):1094-1097.
LIANG Yangyang, SUN Zhongguo, XI Guang. Numerical simulation of droplet oblique impact on liquid film with moving particle semi-implicit method[J]. Journal of Xi'an Jiaotong University, 2010, 44(9):93-98.
SUN Z G, XI G, CHEN X. Mechanism study of deformation and mass transfer for binary droplet collisions with particle method[J]. Physics of Fluids, 2009, 21(3): 032106.
SUN Zhongguo, XI Guang, WANG Huanran. Numerical simulation of incompressible flow with moving component using the MPS method[J]. Journal of Engineering Thermophysics, 2008, 29(10):1676-1678.
SUN Z G, XI G, CHEN X. A numerical study of stir mixing of liquids with particle method[J]. Chemical Engineering Science, 2009, 64(2): 341-350.
MONAGHAN J J. Particle methods for hydrodynamics[J]. Computer Physics Reports, 1985, 3(2):71-124.
HERNQUIST L, KATZ N. TREESPH: a unification of SPH with the hierarchical tree method[J]. Astrophysical Journal Supplement Series, 1989, 70(6): 419-446.