Dr. Soheil  Soleimanikutanaei
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Dr. Soheil Soleimanikutanaei

Research Scientist
Babol Noshirvani University of Technology, Iran


Highest Degree
Ph.D. in Mechanical Engineering from Florida State University, USA

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Area of Interest:

Engineering
100%
Heat Transfer
62%
Renewable Energy
90%
Multiphase Flow
75%
Material Synthesis
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Popoola, O., S. Soleimanikutanaei and Y. Cao, 2017. Numerical simulation of a reciprocating-mechanism driven heat loop (RMDHL). Heat Transfer Res., 48: 727-748.
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  2. Sheikholeslami, M., S. Soleimani and D.D. Ganji, 2016. Effect of electric field on hydrothermal behavior of nanofluid in a complex geometry. J. Mol. Liquids, 213: 153-161.
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  3. Seyyedi, S.M., M. Dayyan, S. Soleimani and E. Ghasemi, 2015. Natural convection heat transfer under constant heat flux wall in a nanofluid filled annulus enclosure. Ain Shams Eng. J., 6: 267-280.
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  4. Soleimani, S., E. Ghasemi and M.A. Almas, 2014. Effects of pressure gradients on energy dissipation coefficient. J. Adv. Thermal Sci. Res., 1: 71-77.
  5. Sheikholeslami, M., R. Ellahi, M. Hassan and S. Soleimani, 2014. A study of natural convection heat transfer in a nanofluid filled enclosure with elliptic inner cylinder. Int. J. Numer. Methods Heat Fluid Flow, 24: 1906-1927.
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  6. Sheikholeslami, M., M. Gorji-Bandpy, R. Ellahi, M Hassan and S. Soleimani, 2014. CVFEM for MHD effect on Cu-water nanofluid flow and heat transfer. J. Magnet. Magn. Mater., 349: 188-200.
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  7. Sheikholeslami, M., M. Gorji-Bandpy, D.D. Ganji, P. Rana and S. Soleimani, 2014. Magnetohydrodynamic free convection of Al2O3-water nanofluid considering thermophoresis and brownian motion effects. Comput. Fluids, 94: 147-160.
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  8. Sheikholeslami, M., M. Gorji-Bandpy, D.D. Ganji and S. Soleimani, 2014. Thermal management for free convection of nanofluid using two phase model. J. Mol. Liquids, 194: 179-187.
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  9. Sheikholeslami, M., M. Gorji-Bandpy, D.D. Ganji and S. Soleimani, 2014. Natural convection heat transfer in a cavity with sinusoidal wall filled with CuO-water nanofluid in presence of magnetic field. J. Taiwan Inst. Chem. Eng., 45: 40-49.
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  10. Sheikholeslami, M., M. Gorji-Bandpy, D.D. Ganji and S. Soleimani, 2014. Heat flux boundary condition for nanofluid filled enclosure in presence of magnetic field. J. Mol. Liquids, 193: 174-184.
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  11. Sheikholeslami, M., M. Gorji Bandpy, R. Ellahi, M. Hassan and S. Soleimani, 2014. Effects of MHD on Cu-water nanofluid flow and heat transfer by means of CVFEM. J. Magnet. Magn. Mater., 349: 188-200.
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  12. Ghasemi, E., S. Soleimani and M.A. Almas, 2014. Finite element simulation of jet combustor using local extinction approach with eddy dissipation concept. J. Adv. Thermal Sci. Res., 1: 57-65.
  13. Ghasemi, E., S. Soleimani and C.X. Lin, 2014. Secondary reactions of turbulent reacting flows over a film-cooled surface. Int. Commun. Heat Mass Transfer, 55: 93-101.
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  14. Ghasemi, E., S. Soleimani and C.X. Lin, 2014. RANS simulation of methane-air burner using local extinction approach within eddy dissipation concept by OpenFOAM. Int. Commun. Heat Mass Transfer, 54: 96-102.
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  15. Alinia, M., M. Gorji-Bandpy, D.D. Ganji, S. Soleimani, E. Ghasemi and A. Darvand, 2014. Two-phase natural convection of SiO2-water nano fluid in an inclined square enclosure. Scientia Iranica B, 21: 1643-1654.
  16. Sheikholeslami, M., M. Gorji-Bandpy, S.M. Seyyedi, D.D. Ganji, H.B. Rokni and S. Soleimani, 2013. Application of LBM in simulation of natural convection in a nanofluid filled square cavity with curve boundaries. Powder Technol., 247: 87-94.
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  17. Sheikholeslami, M., M. Gorji-Bandpy, I. Pop and S. Soleimani, 2013. Numerical study of natural convection between a circular enclosure and a sinusoidal cylinder using control volume based finite element method. Int. J. Thermal Sci., 72: 147-158.
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  18. Sheikholeslami, M., M. Gorji-Bandpy, D.D. Ganji and S. Soleimani, 2013. Effect of a magnetic field on natural convection in an inclined half-annulus enclosure filled with Cu-water nanofluid using CVFEM. Adv. Powder Technol., 24: 980-991.
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  19. Sheikholeslami, M., M. Gorji-Bandpy and S. Soleimani, 2013. Two phase simulation of nanofluid flow and heat transfer using heatline analysis. Int. Commun. Heat Mass Transfer, 47: 73-81.
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  20. Sheikholeslami, M., H.R. Ashorynejad, A. Barari and S. Soleimani, 2013. Investigation of heat and mass transfer of rotating MHD viscous flow between a stretching sheet and a porous surface. Eng. Comput., 30: 357-378.
  21. Seyyedi, S.M., S. Soleimani, E. Ghasemi, D.D. Ganji, M. Gorji-Bandpy and H. Bararnia, 2013. Numerical investigation of laminar mixed convection in a cubic cavity by MRT-LBM: Effects of the sliding direction. Numer. Heat Transfer Part A: Applic., 6: 285-304.
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  22. Seyyedi, S.M., D.D. Ganji, M. Gorji, H. Bararnia and S. Soleimani, 2013. Forced convection heat transfer due to different inclination angles of splitter behind square cylinder. Applied Math. Mech., 34: 541-558.
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  23. Sedaghatizadeh, N., A. Barari, S. Soleimani and M. Mofidi, 2013. Analytical and numerical evaluation of steady flow of blood through an artery. Biomed. Res., 24: 88-98.
  24. Soleimani, S., M. Sheikholeslami, D.D. Ganji and M. Gorji-Bandpay, 2012. Natural convection heat transfer in a nanofluid filled semi-annulus enclosure. Int. Commun. Heat Mass Transfer, 39: 565-574.
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  25. Sheikholeslami, M., S. Soleimani, M. Gorji-Bandpy, D.D. Ganji and S.M. Seyyedi, 2012. Natural convection of nanofluids in an enclosure between a circular and a sinusoidal cylinder in the presence of magnetic field. Int. Commun. Heat Mass Transfer, 39: 1435-1444.
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  26. Seyyedi, S.M., H. Bararnia, D.D. Ganji, M. Gorji-Bandpy and S. Soleimani, 2012. Numerical investigation of the effect of a splitter plate on forced convection in a two dimensional channel with an inclined square cylinder. Int. J. Thermal Sci., 61: 1-14.
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  27. Moghimi, S.M., G. Domairry, H. Bararnia, S. Soleimani and E. Ghasemi, 2012. Numerical study of natural convection in, an inclined l-shaped porous enclosure. Adv. Theor. Applic. Mech., 5: 237-245.
  28. Kutanaei, S.S., N. Roshan, A. Vosoughi, S. Saghafi, A. Barari and S. Soleimani, 2012. Numerical solution of stokes flow in a circular cavity using mesh-free local RBF-DQ. Eng. Anal. Boundary Elem., 36: 633-638.
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  29. Ghasemi, E., S. Soleimani, A. Barari, H. Bararnia and G. Domairry, 2012. Influence of uniform suction/injection on heat transfer of MHD Hiemenz flow in porous media. J. Eng. Mech., 138: 82-89.
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  30. Ghasemi, E., S. Soleimani and H. Bararnia, 2012. Natural convection between a circular enclosure and an elliptic cylinder using control volume based finite element method. Int. Commun. Heat Mass Transfer, 39: 1035-1044.
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  31. Bararnia, H., E. Ghasemi, S. Soleimani, A.R. Ghotbi and D. D. Ganji, 2012. Solution of the Falkner-Skan wedge flow by HPM-Pade' method. Adv. Eng. Software, 43: 44-52.
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  32. Taeibi-Rahni, M., M. Ramezanizadeh, D.D. Ganji, A. Darvan, E. Ghasemi, S. Soleimani and H. Bararnia, 2011. Comparative study of large eddy simulation of film cooling using a dynamic global-coefficient subgrid scale eddy-viscosity model with RANS and Smagorinsky modeling. Int. Commun. Heat Mass Transfer, 38: 659-667.
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  33. Soleimani, S., N. Sedaghatizadeh, D.D. Ganji, A. Asgharian and I.M. Shirkharkolay, 2011. Numerical simulation of two dimensional stokes flow between eccentric rotating circular cylinders. AIP Conf. Proc., Vol. 1400. 10.1063/1.3663184.
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  34. Soleimani, S., M. Gorji, D.D. Ganji, H. Bararnia and E. Ghasemi, 2011. Optimal location of a pair heat source-sink in an enclosed square cavity with natural convection through PSO algorithm. Int. Commun. Heat Mass Transfer, 38: 652-658.
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  35. Soleimani, S., E. Ghasemi, D.D. Ganji, M. Jalaal and H. Bararnia, 2011. Meshless LRBF-DQ for 2D heat conduction: A comparative study. J. Thermal Sci., 15: 117-121.
  36. Soleimani, S., A. Qajarjazi, H. Bararnia, A. Barari and G. Domairry, 2011. Entropy generation due to natural convection in a partially heated cavity by local RBF-DQ method. Meccanica, 46: 1023-1033.
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  37. Sedaghatizadeh, N., G. Atefi, A.A. Fardad, A. Barari, S. Soleimani and S. Khani, 2011. Analysis of blood flow through a viscoelastic artery using the Cosserat continuum with the large-amplitude oscillatory shear deformation model. J. Mech. Behav. Biomed. Mater., 4: 1123-1131.
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  38. Moghimi, S.M., G. Domairry, E. Ghasemi, S. Soleimani and H. Bararnia, 2011. Application of homotopy analysis method to solve MHD Jeffery-Hamel flows in non-parallel walls. Adv. Eng. Software, 42: 108-113.
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  39. Jalaal, M., S. Soleimani, G. Domairry, E. Ghasemi, H. Bararnia, F. Mohammadi and A. Barari, 2011. Numerical simulation of electric field in complex geometries for different electrode arrangements using meshless local MQ-DQ method. J. Electrostatics, 69: 168-175.
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  40. Jalaal, M., M.G. Nejad, P. Jalili, M. Esmaeilpour and H. Bararnia et al., 2011. Homotopy perturbation method for motion of a spherical solid particle in plane couette fluid flow. Comput. Math. Applic., 61: 2267-2270.
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  41. Jalaal, M., E. Ghasemi, D.D. Ganji, H. Bararnia, S. Soleimani, M.G. Nejad and M. Esmaeilpour, 2011. Effect of temperature-dependency of surface emissivity on heat transfer using the parameterized perturbation method. J. Thermal Sci., 15: 123-125.
  42. Bararnia, H., S. Soleimani and D.D. Ganji, 2011. Lattice boltzmann simulation of natural convection around a horizontal elliptic cylinder inside a square enclosure. Int. Commun. Heat Mass Transfer, 38: 1436-1442.
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  43. Bararnia, H., E. Ghasemi, S. Soleimani, A. Baraei and D.D. Ganji, 2011. HPM-Pade method on natural convection of Darcian fluid about a vertical full cone embedded in porous media prescribed wall temperature. J. Porous Media, 14: 545-553.
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  44. Asgharian, A., D.D. Ganji, S. Soleimani, S. Asgharian, N.S. Zade and B. Mohammadi, 2011. Analytical approach to heat and mass transfer in MHD free convection from a moving permeable vertical surface. Math. Methods Applied Sci., 34: 2209-2217.
  45. Alinia, M., G. Domairry, M. Gorji, A. Zahedi and S. Soleimani, 2011. Analysis on viscoelastic fluid flow and heat transfer over a stretching sheet. Int. J. Comput. Methods Eng. Sci. Mech., 12: 278-289.
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  46. Taeibi-Rahni, M., M. Ramezanizadeh, A. Darvan, D.D. Ganji, S. Soleimani, E. Ghasemi and H. Bararnia, 2010. Large -Eddy simulations of three dimensional turbulent jet in cross flow using a dynamic subgrid-scale eddy viscosity model with a global model coefficient. World Applied Sci. J., 9: 1191-1200.
  47. Soleimani, S., N.S. Zadeh, A. Asgharian and D.D. Ganji, 2010. Analysis of flow and heat transfer in a parallelogram non-uniformly heated enclosure filled with porous medium. J. Heat Transfer-Asian Res., 39: 497-506.
  48. Soleimani, S., M. Jalaal, H. Bararnia, E. Ghasemi, D.D. Ganji and F. Mohammadi, 2010. Local RBF-DQ method for two-dimensional transient heat conduction problems. Int. Commun. Heat Mass Transfer, 37: 1411-1418.
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  49. Bararnia, H., M. Jalaal, E. Ghasemi, S. Soleimani, D.D. Ganji and F. Mohammadi, 2010. Numerical simulation of joule heating phenomenon using meshless RBF-DQ method. Int. J. Thermal Sci., 49: 2117-2127.
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  50. Bararnia, H., E. Ghasemi, G. Domairry and S. Soleimani, 2010. Behavior of micropolar flow due to linear stretching of porous sheet with injection and suction. Adv. Eng. Software, 41: 893-897.
  51. Asgharian, A., D.D. Ganji, S. Soleimani and S. Asgharian, 2010. Analytical solution of stagnation flow of a micropolar fluid towards a vertical permeable surface. J. Thermal Sci., 14: 383-392.
  52. Ganji, D.D., H. Bararnia, S. Soleimani and E. Ghasemi, 2009. Analytical solution of magneto-hydrodinamic flow over a nonlinear stretching sheet. Modern Phys. Lett. B, 23: 2541-2556.