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Milad Rakhsha, PhD
Milad Rakhsha, PhD
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Experimental and numerical investigation of nanofluid heat transfer in helically coiled tubes at constant wall temperature using dispersion model
F Akbaridoust, M Rakhsha, A Abbassi, M Saffar-Avval
International Journal of Heat and Mass Transfer 58 (1-2), 480-491, 2013
1222013
Experimental and numerical investigations of turbulent forced convection flow of nano-fluid in helical coiled tubes at constant surface temperature
M Rakhsha, F Akbaridoust, A Abbassi, SA Majid
Powder Technology 283, 178-189, 2015
842015
A consistent multi-resolution smoothed particle hydrodynamics method
W Hu, W Pan, M Rakhsha, Q Tian, H Hu, D Negrut
Computer Methods in Applied Mechanics and Engineering 324, 278-299, 2017
662017
Lagrangian vs. Eulerian: An analysis of two solution methods for free-surface flows and fluid solid interaction problems
M Rakhsha, CE Kees, D Negrut
Fluids 6 (12), 460, 2021
352021
Using a half-implicit integration scheme for the SPH-based solution of fluid–solid interaction problems
M Rakhsha, A Pazouki, R Serban, D Negrut
Computer Methods in Applied Mechanics and Engineering 345, 100-122, 2019
352019
Modeling granular material dynamics and its two-way coupling with moving solid bodies using a continuum representation and the SPH method
W Hu, M Rakhsha, L Yang, K Kamrin, D Negrut
Computer Methods in Applied Mechanics and Engineering 385, 114022, 2021
252021
A consistent multiphase flow model with a generalized particle shifting scheme resolved via incompressible SPH
L Yang, M Rakhsha, W Hu, D Negrut
Journal of Computational Physics 458, 111079, 2022
162022
A differential variational approach for handling fluid–solid interaction problems via smoothed particle hydrodynamics
H Mazhar, A Pazouki, M Rakhsha, P Jayakumar, D Negrut
Journal of Computational Physics 371, 92-110, 2018
162018
A Partitioned Lagrangian-Lagrangian approach for Fluid-Solid Interaction Problems
M Rakhsha, A Pazouki, R Serban, D Negrut
Multibody Systems, Nonlinear Dynamics and Controls Conference, American …, 2017
92017
On the use of multibody dynamics techniques to simulate fluid dynamics and fluid–solid interaction problems
M Rakhsha, L Yang, W Hu, D Negrut
Multibody System Dynamics 53 (1), 29-57, 2021
82021
Incompressible implicit SPH
M Rakhsha, A Pazouki, D Negrut
Technical Report No. TR03, 2016
72016
Comparison of surface tension models in smoothed particles hydrodynamics method
L Yang, M Rakhsha, D Negrut
International Design Engineering Technical Conferences and Computers and …, 2019
62019
Investigation of mesh to point cloud conversion approaches for applications in SPH-based fluid-solid interaction simulations
F Gutierrez, C Ricchio, M Rakhsha, A Pazouki, W Hu, D Negrut
Technical Report TR-2015-10, Simulation-Based Engineering Laboratory …, 2015
62015
Simulation of surface strain in tibiofemoral cartilage during walking for the prediction of collagen fibre orientation
M Rakhsha, CR Smith, AM Recuero, SCE Brandon, MF Vignos, ...
Computer Methods in Biomechanics and Biomedical Engineering: Imaging …, 2018
52018
Multibody dynamics versus fluid dynamics: two perspectives on the dynamics of granular flows
M Rakhsha, C Kelly, N Olsen, R Serban, D Negrut
Journal of Computational and Nonlinear Dynamics 15 (9), 091009, 2020
42020
On simulating sloshing in vehicle dynamics
D Negrut, H Mazhar, R Serban, M Rakhsha
SAE International, 2018
42018
A comparison of three SPH methods for the solution of the Fluid-Solid Interaction problem
M Rakhsha, L Yang, D Negrut
APS Division of Fluid Dynamics Meeting Abstracts, H07. 009, 2019
22019
Technical Report TR-2015-10
F Gutierrez, C Ricchio, M Rakhsha, A Pazouki, W Hu, D Negrut
2020
Chrono: A multi-physics engine for simulation of robophysical systems
M Rakhsha, R Serban, D Negrut
Bulletin of the American Physical Society 65, 2020
2020
Multibody Dynamics vs. Fluid Dynamics: Similarities and Differences
M Rakhsha, C Kelly, N Olsen, R Serban, D Negrut
International Design Engineering Technical Conferences and Computers and …, 2019
2019
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