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Mohammadreza Ebrahimi
Mohammadreza Ebrahimi
在 bms.com 的电子邮件经过验证
标题
引用次数
引用次数
年份
Comprehensive analysis of fluid-particle and particle-particle interactions in a liquid-solid fluidized bed via CFD-DEM coupling and tomography
H Zbib, M Ebrahimi, F Ein-Mozaffari, A Lohi
Powder Technology 340, 116-130, 2018
542018
Mixing assessment of non-cohesive particles in a paddle mixer through experiments and discrete element method (DEM)
A Yaraghi, M Ebrahimi, F Ein-Mozaffari, A Lohi
Advanced Powder Technology 29 (11), 2693-2706, 2018
522018
The effect of impeller configurations on particle mixing in an agitated paddle mixer
M Ebrahimi, A Yaraghi, F Ein-Mozaffari, A Lohi
Powder Technology 332, 158-170, 2018
482018
CFD–DEM simulation of turbulence modulation in horizontal pneumatic conveying
M Ebrahimi, M Crapper
Particuology 31, 15-24, 2017
442017
Numerical and experimental study of horizontal pneumatic transportation of spherical and low-aspect-ratio cylindrical particles
M Ebrahimi, M Crapper, JY Ooi
Powder Technology 293, 48-59, 2016
422016
An investigation of the hydrodynamic similarity of single-spout fluidized beds using CFD-DEM simulations
M Ebrahimi, E Siegmann, D Prieling, BJ Glasser, JG Khinast
Advanced powder technology 28 (10), 2465-2481, 2017
342017
Assessment of bi-disperse solid particles mixing in a horizontal paddle mixer through experiments and DEM
M Ebrahimi, A Yaraghi, B Jadidi, F Ein-Mozaffari, A Lohi
Powder Technology 381, 129-140, 2021
312021
Application of CFD to Analyze the Hydrodynamic Behaviour of a Bioreactor with a Double Impeller
M Ebrahimi, M Tamer, RM Villegas, A Chiappetta, F Ein-Mozaffari
Processes 7 (10), 694, 2019
302019
Experimental and simulation studies of dilute horizontal pneumatic conveying
M Ebrahimi, M Crapper, JY Ooi
Particulate Science and Technology 32 (2), 206-213, 2014
262014
Mixing performance analysis of non-cohesive particles in a double paddle blender using DEM and experiments
B Jadidi, M Ebrahimi, F Ein-Mozaffari, A Lohi
Powder Technology 397, 117122, 2022
252022
A comprehensive review of the application of DEM in the investigation of batch solid mixers
B Jadidi, M Ebrahimi, F Ein-Mozaffari, A Lohi
Reviews in Chemical Engineering 39 (5), 729-764, 2023
172023
Hydrodynamic Behavior of a 3-D Liquid–Solid Fluidized Bed Operating in the Intermediate Flow Regime—Application of Stability Analysis, Coupled CFD-DEM, and Tomography
H Zbib, M Ebrahimi, F Ein-Mozaffari, A Lohi
Industrial & Engineering Chemistry Research 57 (49), 16944-16957, 2018
152018
CFD-DEM modelling of two-phase pneumatic conveying with experimental validation.
M Ebrahimi
The University of Edinburgh, 2014
132014
Mixing and segregation assessment of bi-disperse solid particles in a double paddle mixer
B Jadidi, M Ebrahimi, F Ein-Mozaffari, A Lohi
Particuology 74, 184-199, 2023
122023
Investigation of impacts of particle shape on mixing in a twin paddle blender using GPU-based DEM and experiments
B Jadidi, M Ebrahimi, F Ein-Mozaffari, A Lohi
Powder Technology 417, 118259, 2023
82023
Analyzing mixing behavior in a double paddle blender containing two types of non-spherical particles through discrete element method (DEM) and response surface method (RSM)
B Jadidi, M Ebrahimi, F Ein-Mozaffari, A Lohi
Powder Technology 427, 118761, 2023
62023
Effect of the Mixer Design Parameters on the Performance of a Twin Paddle Blender: A DEM Study
B Jadidi, M Ebrahimi, F Ein-Mozaffari, A Lohi
Processes 11 (3), 733, 2023
42023
Investigation of mixing non-spherical particles in a double paddle blender via experiments and GPU-based DEM modeling
B Jadidi, M Ebrahimi, F Ein-Mozaffari, A Lohi
Engineering Proceedings 19 (1), 24, 2022
42022
Comparison of coupled DEM-CFD and SPH-DEM methods in single and multiple particle sedimentation test cases
M Ebrahimi, P Gupta, M Robinson, M Crapper, M Ramaioli, JY Ooi
PARTICLES III: proceedings of the III International Conference on Particle …, 2013
42013
Efficient DEM modeling of solid flavor particle mixing in a rotary drum
R van Sleeuwen, S Pantaleev, M Ebrahimi, L Feng
Powder Technology, 119559, 2024
2024
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