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Documents dont l'auteur est "Jandaghian, Mojtaba"

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Nombre de documents: 9

Jandaghian, M., & Shakibaeinia, A. (2023). A consistent multi-resolution particle method for fluid-driven granular dynamics. Advances in Water Resources, 178, 26 pages. Lien externe

Siaben, H. M., Jandaghian, M., & Shakibaeinia, A. (mai 2023). A multi-resolution and multiphase mesh-free particle method for tsunami waves generated from transitional landslides [Communication écrite]. Canadian Society for Mechanical Engineering International Congress (CSME 2023) & Computational Fluid Dynamics Canada International Congress (CFD 2023), Sherbrooke, Qc, Canada (6 pages). Lien externe

Jandaghian, M. (2022). Enhancement of Mesh-free Particle Methods for Highly Dynamic Free-Surface and Granular Flows [Thèse de doctorat, Polytechnique Montréal]. Disponible

Jandaghian, M., Siaben, H. M., & Shakibaeinia, A. (2022). Stability and accuracy of the weakly compressible SPH with particle regularization techniques. European Journal of Mechanics, B/Fluids, 94, 314-333. Lien externe

Billy, C., Shakibaeinia, A., Jandaghian, M., Taha, W., Lokhmanets, I., Carbonneau, A.-S., & Larouche, M.-È. (juin 2022). Three-dimensional fully Lagrangian continuum-discrete modeling of river ice jam formation [Communication écrite]. 26th IAHR International Symposium on Ice, Montreal, Qc, Canada (10 pages). Lien externe

Jandaghian, M., Krimi, A., & Shakibaeinia, A. (2021). Enhanced weakly-compressible MPS method for immersed granular flows. Advances in Water Resources, 152, 103908. Lien externe

Jandaghian, M., Krimi, A., Zarrati, A. R., & Shakibaeinia, A. (2021). Enhanced weakly-compressible MPS method for violent free-surface flows: Role of particle regularization techniques. Journal of Computational Physics, 434, 110202 (32 pages). Lien externe

Krimi, A., Jandaghian, M., & Shakibaeinia, A. (2020). A WCSPH Particle Shifting Strategy for Simulating Violent Free Surface Flows. Water, 12(11), 3189 (37 pages). Disponible

Shakibaeinia, A., & Jandaghian, M. (septembre 2019). A Moving Particle Semi-implicit Numerical Method for Modelling Sediment Dynamic [Communication écrite]. 38th IAHR World Congress, Panama City, Panama. Lien externe

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