• 全国中文核心期刊
  • 中国科技核心期刊
  • 美国工程索引(EI)收录期刊
LI Shao-wu, YIN Zhen-jun. Application of non-grid numerical model to hydrodynamics of structures[J]. Advances in Water Science, 2004, 15(6): 739-744.
Citation: LI Shao-wu, YIN Zhen-jun. Application of non-grid numerical model to hydrodynamics of structures[J]. Advances in Water Science, 2004, 15(6): 739-744.

Application of non-grid numerical model to hydrodynamics of structures

Funds: The project is supported by the National Natural Science Foundation of China (No.50479047).
More Information
  • Received Date: July 17, 2003
  • Revised Date: December 09, 2003
  • A non-grid hydrodynamic numerical model is established by using the moving particle semi-implicit (MPS) method to investigating the possibility of the model in the research of the hydrodynamics of the coastal structures under the action of water movement.Without grids,the interaction effect among neighboring particles can be simulated by means of the kernel function,based on which the governing equation is discretized by establishing the smoothing model,the gradient model and the second-derivative model (i.e.the Laplacian model).The incompressibility of the fluid is determined by introduction of a socalled particle density number.The model is free from limitation through complex shape of rigid boundary and arbitrary defomation of the free surface,and thus has the adaptability to special practical situation.In the end,collapsing process of a water column impinging an upright wall after by-passing a set of perforated blocks is simulated by using the MPS model.The numerical results show that the peak value of the pressure in the case of the perforated blocks decrease by 42% compared with the case without perforated blocks.
  • [1]
    Gao X,Zhao Z.Interaction between waves,structure and sand beds[J].Hydrodynamics,1995,7(4):103-110.
    [2]
    Lin P,Liu P L F.A numerical model for breaking wave in the surf zone[J].Journal of Fluid Mechanics,1998,359:239-264.
    [3]
    Belytschko T,Lu Y Y,Gu L.Element-Free Galerkin Methods[J].International Journal of Numerical Methods in Engineering,1994,37:229.
    [4]
    Happer F T,Gorham E D,Elgenk M S,et al.Simulation of liquid Drop Breakup Behavior in a Flow Field Using Discrete Element Techniques[A].American Nuclear Society.Proceedings of the 5th International Topl.Mtg.Reactor Thermal Hydraulics[C].Salt Lake City,Utah,1992,V.II,605.
    [5]
    Gingord R A,Monaghan J J.Kernel estimates as a basis for general particle methods in hydrodynamics[J].Journal of Computational Physics,46:429.
    [6]
    Lo Edmond Y M,Shao S.Simulation of near shore solitary wave mechanics by an incompressible SPH method[J].Applied Ocean Research,2002,24:275-286.
    [7]
    Koshizuka S,Tamako H,Oka Y.A particle method for incompressible viscous flow with fluid fragmentation[J].Computational Fluid Dynamics Journal,1995,4(1):29-46.
    [8]
    Gotoh H,Sakai T.Lagrangian simulation of breaking waves using particle method[J].Coastal Engineering Journal,1999,41:303-326.
    [9]
    徐树方.矩阵计算的理论与方法[M].北京:北京大学出版社,1995.162.

Catalog

    Article Metrics

    Article views (92) PDF downloads (535) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return