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:: رزومه علمی ::

  مرتبه علمی: استادیار

  رشته و گرایش : مهندسی مکانیک- تبدیل انرژی

  آدرس پستی: استان آذربایجان غربی، ارومیه، کیلومتر 2 جاده بند،

  دانشگاه صنعتی ارومیه

  تلفن تماس : 04433728180

پست الکترونیک :h.soltanipourmee.uut.ac.ir- h.soltanipourgmail.com

Educational background

  • Ph.D  Mechanical Engineering (Energy Conversion), Urmia University  (2016)

  • M.Sc. Mechanical Engineering (Energy Conversion), Urmia University (2007)

  • B.Sc. Mechanical Engineering (Solid Mechanics), Khajeh Nasir Toosi University of Technology  (2004)

Research interests

  • Convective Heat Transfer

  • FHD/MHD flows

  • Two-phase Modelling

  • Nanofluids

  • Porous Media

  • Heat Transfer Enhancement

  • Second law analysis of thermal systems

Teaching experience

  • Heat transfer I

  • Thermodynamics I

  • Thermodynamics & Heat transfer

  • Heat transfer Lab.

  • Dynamics

  • Convective Heat Transfer (MsC &PhD)

  • Technical Writing

  • Fluid Mechanics

  • Numerical Analysis

Publications

Journal papers

  • Razeghi, A., Mirzaee, I., Abbasalizadeh, M. and Soltanipour, H., Al2O3/water nano-fluid forced convective flow in a rectangular curved micro-channel: first and second law analysis, single-phase and multi-phase approach. Journal of the Brazilian Society of Mechanical Sciences and Engineering, pp.1-12.

  • Yekani Motlagh, S., Taghizadeh, S, Soltanipour, H., 2016. Natural convection heat transfer in an inclined square enclosure filled with a porous medium saturated by nanofluid using Buongiorno’s mathematical model. International Journal of Advanced Powder Technology, (accepted for publication)

  • Yekani Motlagh, S., Soltanipour, H., 2016. Natural Convection of Al2O3-Water Nanofluid in an Inclined Cavity Using Buongiorno’s Two-Phase Model. International Journal of Thermal Science, (accepted for publication)

  • Soltanipour, H., Khalilarya, S., Motlagh, S.Y. and Mirzaee, I., 2016. The effect of position-dependent magnetic field on nanofluid forced convective heat transfer and entropy generation in a microchannel. Journal of the Brazilian Society of Mechanical Sciences and Engineering, pp.1-11.

  • Soltanipour, H., Pourmahmoud, N. and Mirzaee, I., 2015. The effects of longitudinal fins on thermal performance of a curved microchannel: A numerical study. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 229(5), pp.906-915.

  • Pourmahmoud, N., Soltanipour, H. and Mirzaee, I., 2014. The effects of longitudinal ribs on entropy generation for laminar forced convection in a microchannel. Thermal Science, pp.110-110.

  • Razavi, S.E., Soltanipour, H. and Choupani, P., 2015. Second law analysis of Laminar forced convection in a rotating curved duct. Thermal Sciences, 19(1), pp.95-107.

  • Soltanipour, H., Choupani, P. and Mirzaee, I., 2012. Numerical Analysis of Heat Transfer Enhancement with the Use of γ-Al2O3/Water Nanofluid and Longitudinal Ribs in a Curved Duct. Thermal science, 16(2).

Conference Papers

  • Numerical study of forced convectin heat transfer in a curved annular duct, N. Haji Ghafouri, M. Mohammadi, H. Soltanipour, ISME2016, Yaz/Iran, (In Persian).

  • Numerical investigation of laminar convective heat transfer in a lid driven cavity with a rib placed on hot wall, S. Yekani Motlagh , S. Taghizadeh , H. Soltanipour, 2nd International Conference and 3nd Conference on New Technologies in Engineering, 2016, Mashhad/Iran.

  • Numerical investigation of second law for forced convective in a curved annular duct, N. Haji Ghafouri, M. Mohammadi, H. Soltanipour, ISME2015, Tehran/Iran, (In Persian).

  • Numerical investigation of forced fluid convection in microchannel, A. Razeghi, M.Abbasalizadeh, H.Soltanipour, I. Mirzaee, The 2nd Iranian Conference on Heat and Mass Transfer-ICHMT2014,  Semnan/Iran.

  • Numerical investigation on fluid flow and heat transfer in a curved micro-channel with longitudinal ribs, H. Soltanipour,A. Razeghi, I. Mirzaei, 14th Conference On Fluid Dynamics, fd2012, Birjand/Iran.

  • Heat Transfer Augmentation with the Use of Γ-AL2O3/Water Nanofluid and Longitudinal Ribs in a Curved Channel, H. Soltanipour, P. Choupani, I. Mirzaee, ISME2012, Shiraz/Iran.

  • Numerical investigation of second law for laminar flow in curved duct, H. Soltanipour, P.Choupani, S. Choupani, The 1st International Conference on Oil, Gas, Petrochemical Industries and Power Plants, 2012, Tehran/Iran, (In Persian).

  • Performance Improvement of Plain-Plate Heat Exchangers Using Winglet Type Vortex, H. Soltanipour, P. Choupani,  I. Mirzaee, The 1st National Conference for Technology Development in Oil, Gas, Petrochemical Industries, 2011, Ahwaz/Iran.

  • The effect of longitudinal ribs on flow and heat transfer in a channel, H. Soltanipour, P.Choupani, The 1st National Conference for Technology Development in Oil, Gas, Petrochemical Industries, 2011, Ahwaz/Iran, (In Persian).

  • Numerical analysis of forced convective heat transfer and entropy production in a curved channel, H. Soltanipour, P.Choupani, 3nd conference on thermal power plants2011, Tehran/Iran, (In Persian).

  • Numerical analysis of ice formation prevention in the inlet of gas turbine, V.heidarpoor, I. Mirzaee, H. Soltanipour, 10th International Conference of Iranian Aerospace Society 2011, Tehran/Iran, (In Persian).

  • Numerical investigation of flow pattern and heat transfer for flow over elliptical cylinder with different diameter ratios, H. Soltanipour, F. Pourfattah, V. Heidarpoor, ISME2011, Birjand/Iran, (In Persian).

  • Heat Transfer and Flow Structure in Turbulent Flows in a Rectangular Channel with Built-in Vortex Generators, H. Soltanipour, P. Choupani, M. Easkandarzadeh, ISME2010, Tehran/Iran.

  • The Effect of Triangular Vortex Generators on Turbulent Flow and Heat Transfer in a Channel, H. Soltanipour, I. Mirzaee, P. Choupani, ASME 2010, Istanbul/Turkey.

  • Performance improvement and surface reduction of plain-plate heat exchangers using vortex generators, H. Soltanipour, S.M. Pesteei, I. Mirzaee, ISME2009, Tehran/Iran, (In Persian).

  • The effects of aspect ratio, attack angle of vortex generator and Reynolds number on heat transfer for turbulent channel flow, H. Soltanipour, S.M. Pesteei, I. Mirzaee, ISME2009, Tehran/Iran, (In Persian).

  • Numerical study of laminar flow and heat transfer in a rectangular channel with vortex generator, S.M. Pesteei, H. Soltanipour, I. Mirzaee, ISME2008, Kerman/Iran, (In Persian).

  • Comparison of turbulence models for prediction of heat transfer and flow structure formed by vortex generator in a channel, H. Soltanipour, S.M. Pesteei, I. Mirzaee, ISME2008, Kerman/Iran, (In Persian).

  
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