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Journal publications

  1. Chi Zhang and Yujie Zhu and Dong Wu and Nikolaus A Adams and Xiangyu Hu, "Smoothed particle hydrodynamics: Methodology development and recent achievement", Journal of Hydrodynamics 34(5), 767--805, 2022
    Review Publication

  2. Luhui Han and Xiangyu Hu, "SPH modeling of fluid-structure interaction", Journal of Hydrodynamics, 2018: 30(1):62-69.
    FSI Publication

  3. Chi Zhang and Massoud Rezavand and Xiangyu Hu, "Dual-criteria time stepping for weakly compressible smoothed particle hydrodynamics", Journal of Computational Physics 404 (2020) 109135
    Dual Time Criteria

  4. Chi Zhang et al. "SPHinXsys: An open-source meshless, multi-resolution and multi-physics library", Software Impacts, 6 (2020) 100033
    Software Impact

  5. Chi Zhang, Massoud Rezavand, Xiangyu Hu, "A multi-resolution SPH method for fluid-structure interactions", Journal of Computational Physics, Journal of Computational Physics, 429 (2021) 110028.
    Software Impact

  6. Chi Zhang, Yanji Wei, Frederic Dias, Xiangyu Hu, "An efficient fully Lagrangian solver for modeling wave interaction with oscillating wave energy converter", Ocean Engineering, Volume 236, (2021) 109540
    OWSC

  7. Chi Zhang, Jianhang Wang, Massoud Rezavand, Dong Wu, Xiangyu Hu, "An integrative smoothed particle hydrodynamics framework for modeling cardiac function", Computer Methods in Applied Mechanics and Engineering, 381, 113847, 2021.
    Cardiac Function

  8. Yujie Zhu, Chi Zhang, Yongchuan Yu, Xiangyu Hu, "A CAD-compatible body-fitted particle generator for arbitrarily complex geometry and its application to wave-structure interaction", Journal of Hydrodynamics, 33(2), 195-206, 2021.
    CAD Particle

  9. Chi Zhang, Yujie Zhu, Xiuxiu Lyu, Xiangyu Hu, "An efficient and generalized solid boundary condition for SPH: Applications to multi-phase flow and fluid–structure interaction", European Journal of Mechanics - B/Fluids, 94, 276-292, 2022.
    Boundary FSI

  10. Yujie Zhu, Chi Zhang, Xiangyu Hu, "A dynamic relaxation method with operator splitting and random-choice strategy for SPH", Journal of Computational Physics, 458, 111105, 2022.
    Dynamic Relaxation

  11. Dong Wu, Chi Zhang, Xiaojing Tang, Xiangyu Hu, "An essentially non-hourglass formulation for total Lagrangian smoothed particle hydrodynamics", Computer Methods in Applied Mechanics and Engineering, 407, 115915, 2023.
    Hourglass

  12. Chi Zhang, Hao Gao, Xiangyu Hu, "A multi-order smoothed particle hydrodynamics method for cardiac electromechanics with the Purkinje network", Computer Methods in Applied Mechanics and Engineering, 407, 115885, 2023.
    Purkinje Network

  13. Yongchuan Yu, Yujie Zhu, Chi Zhang, Oskar J. Haidn, Xiangyu Hu, "Level-set based pre-processing techniques for particle method", Computer Physics Communications 289, 108744, 2023.
    Level Set

  14. Shuoguo Zhang, Wenbin Zhang, Chi Zhang, Xiangyu Hu, "A Lagrangian free-stream boundary condition for weakly compressible smoothed particle hydrodynamics", Journal of Computational Physics, 490, 112303, 2023.
    Free Stream

  15. Yaru Ren, Pengzhi Lin, Chi Zhang, Xiangyu Hu, "An efficient weighted correction method in Riemann SPH for the simulation of general free surface flows", Computer Methods in Applied Mechanics and Engineering, 417, 116460, 2023.
    Correction Method

  16. Shuaihao Zhang, Chi Zhang, Xiangyu Hu, Sérgio D.N. Lourenço, "A Riemann-based SPH method for modelling large deformation of granular materials", Computers and Geotechnics, 167, 106052, 2024.
    Riemann-Granular Flows

  17. Nicolò Salis, Xiangyu Hu, Min Luo, Alessandro Reali, Sauro Manenti, 3D SPH analysis of focused waves interacting with a floating structure, Applied Ocean Research, Volume 144, 2024, 103885.
    Floating-structure

  18. Shuaihao Zhang, Sérgio DN Lourenço, Dong Wu, Chi Zhang, Xiangyu Hu, "Essentially non-hourglass SPH elastic dynamics", Journal of Computational Physics, 510, 113072, 2024.
    ul-hourglass

  19. Dong Wu, Chi Zhang, Xiangyu Hu, An SPH formulation for general plate and shell structures with finite deformation and large rotation, Journal of Computational Physics, Volume 510, 2024, 113113.
    shell-plate

  20. Bo Zhang, Chi Zhang, Xiangyu Hu, Target-driven splitting SPH optimization of thermal conductivity distribution, International Journal of Heat and Mass Transfer Volume 227, 2024, 125476.
    optimization-thermal

  21. M Rezavand, X Hu, Numerical simulation of two-phase slug flows in horizontal pipelines: A 3-D smoothed particle hydrodynamics application. European Journal of Mechanics-B/Fluids 104, 56-67.
    slug-flow

  22. B Zhang, C Zhang, X Hu, Automated regression test method for scientific computing libraries: Illustration with SPHinXsys. Journal of Hydrodynamics 36 (3), 466-478.
    repression-test

  23. S Zhang, Y Fan, Y Ren, B Qian, X Hu, Generalized and high-efficiency arbitrary-positioned buffer for smoothed particle hydrodynamics Physics of Fluids 36 (12).
    buffer-pof

  24. Z Wang, B Zhang, OJ Haidn, X Hu, A fourth-order kernel for improving numerical accuracy and stability in Eulerian SPH for fluids and total Lagrangian SPH for solids. Journal of Computational Physics 519, 113385.
    4th-order

  25. B Zhang, N Adams, X Hu, Towards high-order consistency and convergence of conservative SPH approximations. Computer Methods in Applied Mechanics and Engineering 433, 117484.
    rkgc

  26. Shuaihao Zhang, Dong Wu, Sérgio DN Lourenço, Xiangyu Hu, "A generalized non-hourglass updated Lagrangian formulation for SPH solid dynamics", Computer Methods in Applied Mechanics and Engineering, 440, 117948, 2025.
    ul-generalized-hourglass

  27. Shuaihao Zhang, Sérgio DN Lourenço, Xiangyu Hu, "Multiphase SPH for surface tension: Resolving zero-surface-energy modes and achieving high Reynolds number simulations", Computer Methods in Applied Mechanics and Engineering, 444, 118147, 2025.
    surface-tension

  28. Shuaihao Zhang, Feng Wang, Xiangyu Hu, Sérgio DN Lourenço, "A unified transport-velocity formulation for SPH simulation of cohesive granular materials", Computers and Geotechnics, 181, 107139, 2025.
    unified-transport-formulation