An Eulerian-Lagrangian particle method for weakly compressible viscous flows using peridynamic differential operator

被引:0
|
作者
Chang, Haocheng [1 ,2 ]
Chen, Airong [1 ]
Ma, Rujin [1 ]
Kareem, Ahsan [2 ]
Hu, Liang [2 ]
机构
[1] Tongji Univ, Dept Bridge Engn, Shanghai 200092, Peoples R China
[2] Univ Notre Dame, NatHaz Modeling Lab, Notre Dame, IN 46556 USA
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
HYDRODYNAMICS ULPH; SPH; SIMULATION; FLUID; FORMULATION;
D O I
10.1063/5.0186683
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
This study proposes a peridynamic differential operator (PDDO)-based Eulerian-Lagrangian hybrid particle method for weakly compressible viscous flows. The PDDO is utilized to transform the governing partial differential equations into their integral form; hence, the issue of local non-differentiability is eliminated. Both the Eulerian and Lagrangian formulations of particle methods for solving the governing integral equations are derived and then combined to propose the hybrid method. In the proposed method, the Eulerian and Lagrangian formulation is utilized to solve the governing equations in the inner computational domain and in areas with free surfaces, respectively. The results of these two domains are then merged to arrive at the solution. In such a way, the hybrid particle method effectively balances the computational demands and applicability. The numerical stability and interpolation consistency of the proposed method are shown by introducing the laminar viscosity model. A detailed numerical procedure is provided involving the boundary conditions and time-stepping strategy. The proposed method is validated by several benchmark problems. Furthermore, the method was applied to several benchmark problems including the hydrostatic test, Taylor-Green vortex, and numerical wave generation. The results of these numerical examples suggest that the proposed method is computationally less demanding while maintaining accuracy.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] ELAFINT: A mixed Eulerian-Lagrangian method for fluid flows with complex and moving boundaries
    Udaykumar, H.S.
    Shyy, W.
    Rao, M.M.
    1996, (22):
  • [22] Coarse-graining algorithms for the Eulerian-Lagrangian simulation of particle-laden flows
    Eshraghi, H.
    Amani, E.
    Saffar-Avval, M.
    JOURNAL OF COMPUTATIONAL PHYSICS, 2023, 493
  • [23] Global arbitrary lagrangian-eulerian method for compressible multimaterial flows
    Tian, Bao-Lin
    Liu, Yan
    Shen, Wei-Dong
    Wang, Shuang-Hu
    Jiang, Song
    Beijing Ligong Daxue Xuebao/Transaction of Beijing Institute of Technology, 2010, 30 (05): : 622 - 625
  • [24] ON A LAGRANGIAN-EULERIAN METHOD CALCULATION OF UNSTEADY FLOWS COMPRESSIBLE MEDIA
    Shestakovskaya, E. S.
    Starikov, Ya. E.
    Makeeva, I. R.
    BULLETIN OF THE SOUTH URAL STATE UNIVERSITY SERIES-MATHEMATICAL MODELLING PROGRAMMING & COMPUTER SOFTWARE, 2023, 16 (02): : 78 - 90
  • [25] Numerical simulation of supersonic condensation flows using Eulerian-Lagrangian and Eulerian wall film models
    Ding, Hongbing
    Zhang, Yu
    Sun, Chunqian
    Yang, Yan
    Wen, Chuang
    ENERGY, 2022, 258
  • [26] ELAFINT: A mixed Eulerian-Lagrangian method for fluid flows with complex and moving boundaries
    Udaykumar, HS
    Shyy, W
    Rao, MM
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 1996, 22 (08) : 691 - 712
  • [27] Particle decontamination from elliptical bubbles in scrubbing pools simulated using Eulerian-Lagrangian method
    Sun, Dan
    POWDER TECHNOLOGY, 2022, 397
  • [28] Coupled Eulerian-Lagrangian simulations using a level set method
    Mauch, S
    Meiron, D
    Radovitzky, R
    Samtaney, R
    COMPUTATIONAL FLUID AND SOLID MECHANICS 2003, VOLS 1 AND 2, PROCEEDINGS, 2003, : 1448 - 1453
  • [29] A MASSIVELY PARALLEL EULERIAN-LAGRANGIAN METHOD FOR ADVECTION-DOMINATED TRANSPORT IN VISCOUS FLUIDS
    Kohl, Nils
    Mohr, Marcus
    Eibl, Sebastian
    Rude, Ulrich
    SIAM JOURNAL ON SCIENTIFIC COMPUTING, 2022, 44 (03): : C260 - C285
  • [30] An adaptive pathline-based particle tracking algorithm for the Eulerian-Lagrangian method
    Bensabat, J
    Zhou, QL
    Bear, J
    ADVANCES IN WATER RESOURCES, 2000, 23 (04) : 383 - 397