Παρακολούθηση
Mohammad Majidi
Mohammad Majidi
PhD Student at Purdue University
Η διεύθυνση ηλεκτρονικού ταχυδρομείου έχει επαληθευτεί στον τομέα purdue.edu - Αρχική σελίδα
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Magnetic field-induced control of a compound ferrofluid droplet deformation and breakup in shear flow using a hybrid lattice Boltzmann-finite difference method
M Majidi, MA Bijarchi, AG Arani, MH Rahimian, MB Shafii
International Journal of Multiphase Flow 146, 103846, 2022
282022
Computational modeling of three-dimensional thermocapillary flow of recalcitrant bubbles using a coupled lattice Boltzmann-finite difference method
TR Mitchell, M Majidi, MH Rahimian, CR Leonardi
Physics of Fluids 33 (3), 2021
252021
Single recalcitrant bubble simulation using a hybrid lattice Boltzmann finite difference model
M Majidi, R Haghani-Hassan-Abadi, MH Rahimian
International Journal of Multiphase Flow 127, 103289, 2020
142020
Numerical study of the effects of minor structures and mean velocity fields in the cerebrospinal fluid flow
Z Wang, M Majidi, C Li, A Ardekani
Fluids and Barriers of the CNS 21 (1), 102, 2024
2024
Deformation and breakup of a ferrofluid compound droplet migrating in a microchannel under a magnetic field: A phase-field-based multiple-relaxation time lattice Boltzmann study
P Poureslami, M Majidi, JR Kermani, MA Bijarchi
arXiv preprint arXiv:2410.11129, 2024
2024
Drag coefficient of a rising bubble in a shear-thinning fluid using the power-law scheme coupled with a Cahn-Hilliard equation with a variable mobility: A lattice Boltzmann …
A Ghorbanpour Arani, R Haghani-Hassan-Abadi, M Majidi, MH Rahimian
Available at SSRN 4229588, 2022
2022
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