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Zhao, Chenxi;Wu, Yan;Yu, Yongchuan;Haidn, Oskar J.;Hu, Xiangyu
A unified FSI framework for modeling liquid sloshing and baffle suppression in the elastic tank
Applied Ocean Research
2025
157
104498

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Zhang, Shuoguo;Fan, Yu;Wu, Dong;Zhang, Chi;Hu, Xiangyu
Dynamical pressure boundary condition for weakly compressible smoothed particle hydrodynamics
Physics of Fluids
2025
37
2

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Zhang, Shuoguo;Fan, Yu;Zhang, Chi;Adams, Nikolaus A.;Hu, Xiangyu
A diffusive wetting model for water entry/exit based on the weakly-compressible SPH method
Ocean Engineering
2025
325
120818

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Ye, Mai;Ma, Hao;Ren, Yaru;Zhang, Chi;Haidn, Oskar J.;Hu, Xiangyu
DRLinSPH: an open-source platform using deep reinforcement learning and SPHinXsys for fluid-structure-interaction problems
Engineering Applications of Computational Fluid Mechanics
2025
19
1

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

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Tang, Xiaojing;Wu, Dong;Wang, Zhentong;null, Oskar Haidn;Hu, Xiangyu
An Explicit Multi-Time Stepping Algorithm for Multi-Time Scale Coupling Problems in SPH
Communications in Computational Physics
2024
36
5
1219-1261

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Wang, Zhentong;Haidn, Oskar J.;Hu, Xiangyu
An algorithm for the incorporation of relevant FVM boundary conditions in the Eulerian SPH framework
Computer Physics Communications
2025
307
109429

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Zhang, Shuaihao;Wu, Dong;Hu, Xiangyu;Choi, Clarence E.;Lourenço, Sérgio D. N.
An Efficient SPH Framework for Modeling Binary Granular Mixtures and Implications for Granular Flows
International Journal for Numerical and Analytical Methods in Geomechanics
2024

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Fan, Yu;Zhang, Shuoguo;Li, Xiaoliang;Zhu, Yujie;Hu, Xiangyu;Adams, Nikolaus A.
A hybrid method for insoluble surfactant dynamics
Journal of Computational Physics
2025
522
113602

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Zhang, Bo;Adams, Nikolaus;Hu, Xiangyu
Towards high-order consistency and convergence of conservative SPH approximations
Computer Methods in Applied Mechanics and Engineering
2025
433
117484