Meshless local Petrov–Galerkin analysis of free convection of nanofluid in a cavity with wavy side walls M Nikfar, M Mahmoodi Engineering Analysis with Boundary Elements 36 (3), 433-445, 2012 | 70 | 2012 |
Prediction of Mechanical Hemolysis in Medical Devices via a Lagrangian Strain‐Based Multiscale Model M Nikfar, M Razizadeh, J Zhang, R Paul, ZJ Wu, Y Liu Artificial Organ, 2020 | 38 | 2020 |
Multiscale modeling of hemolysis during microfiltration M Nikfar, M Razizadeh, R Paul, Y Liu Microfluidics and Nanofluidics, 2020 | 32 | 2020 |
Coarse-grained modeling of pore dynamics on the red blood cell membrane under large deformations M Razizadeh, M Nikfar, R Paul, Y Liu Biophysical Journal 119 (3), 471-482, 2020 | 29 | 2020 |
MLPG application of nanofluid flow mixed convection heat transfer in a wavy wall cavity A Arefmanesh, M Najafi, M Nikfar Computer Modeling in Engineering and Sciences 69 (2), 91, 2010 | 26 | 2010 |
Numerical analysis of unsteady natural convection from two heated cylinders inside a rhombus enclosure filled with Cu-water nanofluid AA Hossienjani, M Nikfar International Communications in Heat and Mass Transfer 113, 2020 | 20 | 2020 |
Inverse shape design via a new physical-based iterative solution strategy M Nikfar, A Ashrafizadeh, P Mayeli Inverse Problems in Science and Engineering 23 (7), 1138-1162, 2015 | 20 | 2015 |
Small molecule therapeutics to destabilize the ACE2-RBD complex: A molecular dynamics study M Razizadeh, M Nikfar, Y Liu Biophysical Journal 120 (14), 2793-2804, 2021 | 18 | 2021 |
On the numerical solution of generalized convection heat transfer problems via the method of proper closure equations–part II: Application to test problems A Ashrafizadeh, M Nikfar Numerical Heat Transfer, Part A: Applications 70 (2), 204-222, 2016 | 18 | 2016 |
A coupled element-based finite-volume method for the solution of incompressible Navier-Stokes equations M Nikfar, A Ashrafizadeh Numerical Heat Transfer, Part B: Fundamentals 69 (5), 447-472, 2016 | 18 | 2016 |
Meshless local Petrov-Galerkin simulation of buoyancy-driven fluid flow and heat transfer in a cavity with wavy side walls A Arefmanesh, M Najafi, M Nikfar Computer Modeling in Engineering & Sciences(CMES) 62 (2), 113-149, 2010 | 17 | 2010 |
Quantitative absorption imaging of red blood cells to determine physical and mechanical properties R Paul, Y Zhou, M Nikfar, M Razizadeh, Y Liu RSC advances 10 (64), 38923-38936, 2020 | 15 | 2020 |
Analysis of natural convection in a nanofluid‐filled triangular enclosure induced by cold and hot sources on the walls using stabilised MLPG method A Arefmanesh, M Nikfar The Canadian journal of chemical engineering 91 (10), 1711-1728, 2013 | 14 | 2013 |
A Numerical Study on Drug Delivery via Multiscale Synergy of Cellular Hitchhiking onto Red Blood Cells M Nikfar, M Razizadeh, R Paul, VN Muzykantov, Y Liu Nanoscale, 2021 | 11 | 2021 |
Numerical simulation of intracellular drug delivery via rapid squeezing M Nikfar, M Razizadeh, R Paul, Y Zhou, Y Liu Biomicrofluidics 15 (4), 044102, 2021 | 9 | 2021 |
Respiratory droplet resuspension near surfaces: Modeling and analysis M Nikfar, R Paul, K Islam, M Razizadeh, A Jagota, Y Liu Journal of Applied Physics 130 (2), 024702, 2021 | 8 | 2021 |
Surface shape design in different convection heat transfer problems via a novel coupled algorithm M Nikfar, P Mayeli Journal of Heat Transfer 140 (2), 021702, 2018 | 8 | 2018 |
Quantifying Intratumoral heterogeneity and Immunoarchitecture generated in-silico by a spatial quantitative systems pharmacology model M Nikfar, H Mi, C Gong, H Kimko, AS Popel Cancers 15 (10), 2750, 2023 | 6 | 2023 |
Temperature identification of a heat source in conjugate heat transfer problems via an inverse analysis P Mayeli, M Nikfar International Journal of Numerical Methods for Heat & Fluid Flow, 2019 | 5 | 2019 |
Effect of position of a square-shaped heat source on buoyancy-driven heat transfer in a square cavity filled with nanofluid A Arefmanesh, M Mahmoodi, M Nikfar Scientia Iranica. Transaction F, Nanotechnology 21 (3), 1129, 2014 | 5 | 2014 |