1 |
Non-spherical particles sedimentation in an incompressible Newtonian medium by Pade approximation Dogonchi AS, Hatami M, Hosseinzadeh K, Domairry G Powder Technology, 278, 248, 2015 |
2 |
Convection-radiation thermal analysis of triangular porous fins with temperature-dependent thermal conductivity by DTM Moradi A, Hayat T, Alsaedi A Energy Conversion and Management, 77, 70, 2014 |
3 |
Motion of a spherical particle on a rotating parabola using Lagrangian and high accuracy Multi-step Differential Transformation Method Hatami M, Ganji DD Powder Technology, 258, 94, 2014 |
4 |
High accuracy analysis for motion of a spherical particle in plane Couette fluid flow by Multi-step Differential Transformation Method Hatami M, Sheikholeslami M, Domairry G Powder Technology, 260, 59, 2014 |
5 |
Computationally efficient modelling of dynamic soil-structure interaction of offshore wind turbines on gravity footings Damgaard M, Andersen LV, Ibsen LB Renewable Energy, 68, 289, 2014 |
6 |
Accurate solution for acceleration motion of a vertically falling spherical particle in incompressible newtonian media Torabi M, Yaghoobi H Canadian Journal of Chemical Engineering, 91(2), 376, 2013 |
7 |
Convective-radiative radial fins with convective base heating and convective-radiative tip cooling: Homogeneous and functionally graded materials Aziz A, Torabi M, Zhang KL Energy Conversion and Management, 74, 366, 2013 |
8 |
Preparation of Ca[B6O9(OH)(2)] center dot 3H(2)O nanomaterials by a phase transformation method and their flame retardant and thermodynamic properties Liu J, Ma XY, Liu ZH Powder Technology, 246, 26, 2013 |
9 |
Analytical solution for settling of non-spherical particles in incompressible Newtonian media Yaghoobi H, Torabi M Powder Technology, 221, 453, 2012 |
10 |
Non-iterative phase behavior model with application to surfactant flooding and limited compositional simulation Roshanfekr M, Li Y, Johns RT Fluid Phase Equilibria, 289(2), 166, 2010 |