Dr. Hossain Nemati
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Dr. Hossain Nemati

Associate Professor
Islamic Azad University, Iran


Highest Degree
Ph.D. in Mechanics Engineering from Shiraz University, Iran

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Area of Interest:

Engineering
100%
Energy Analysis
62%
Turbomachinery
90%
Exergy
75%
Solar Energy
55%

Research Publications in Numbers

Books
1
Chapters
0
Articles
53
Abstracts
1

Selected Publications

  1. Saeidi, M., E. Selahi and H. Nemati, 2023. Performance simulations of human trachea during respiratory reflexes after stent implantation. J. Braz. Soc. Mech. Sci. Eng., Vol. 45. 10.1007/s40430-023-04206-w.
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  2. Nemati, H., V. Souriaee, M. Habibi and K. Vafai, 2023. Pore-scale and volume-averaged simulations of phase change material melting: A comparison between local and nonlocal thermal equilibrium. Numer. Heat Transfer, Part A: Appl., 84: 1323-1337.
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  3. Nemati, H., M.A. Moghimi and C.N. Markides, 2023. Heat transfer characteristics of thermally and hydrodynamically developing flows in multi-layer mini-channel heat sinks. Int. J. Heat Mass Transfer, Vol. 208. 10.1016/j.ijheatmasstransfer.2023.124052.
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  4. Nemati, H. and R. Naemi, 2023. Phase change material-enhanced shoe sole for foot thermal regulation to prevent hyperthermia. Therm. Sci. Eng. Prog., Vol. 45. 10.1016/j.tsep.2023.102151.
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  5. Nemati, H., V. Souriaee, M. Habibi and K. Vafai, 2022. Design and Taguchi-based optimization of the latent heat thermal storage in the form of structured porous-coated pipe. Energy, Vol. 263 (Part D). 10.1016/j.energy.2022.125947.
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  6. Nemati, H., M.M. Ardekani, A.C. Benim and J. Meyer, 2022. Optimization of horizontal annular finned tube under natural convection heat transfer. Heat Transfer Eng., 43: 1451-1463.
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  7. Nemati, H. and S.A. Shekoohi, 2022. Particle sized distribution simulation for an industrial fluidised bed urea granulator by PNB method considering non-uniform growth rate. Indian Chem. Eng., 10.1080/00194506.2022.2110525.
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  8. Nemati, H. and R. Naemi, 2022. An analytical model to predict foot sole temperature: Implications to insole design for physical activity in sport and exercise. Appl. Sci., Vol. 12. 10.3390/app12136806.
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  9. Soleimanpour, R., H. Nemati and A. Zare, 2021. Comprehensive studies on suitable reaction mechanisms to predict the behavior of high speed reacting flows. Chem. Eng. Commun., 10.1080/00986445.2021.1969923.
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  10. Nemati, H., M.A. Moghimi and R. Naemi, 2021. A mathematical model to investigate heat transfer in footwear during walking and jogging. J. Therm. Biol., 10.1016/j.jtherbio.2020.102778.
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  11. Nemati, H., M.A. Moghimi and J.P. Meyer, 2021. Shape optimisation of wavy mini-channel heat sink. Int. Commun. Heat Mass Transfer, Vol. 122. 10.1016/j.icheatmasstransfer.2021.105172.
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  12. Nemati, H. and M.M. Ardekani, 2021. Heat sink evolutionary optimization by natural construction method. Numer. Heat Transfer, Part A: Appl., 80: 168-183.
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  13. Nemati, H. and M. Habibi, 2021. Analytical and numerical analysis of phase change material solidification in partially filled capsules considering breathing vent. J. Energy Storage, Vol. 40. 10.1016/j.est.2021.102725.
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  14. Golneshan, A.A. and H. Nemati, 2021. Comparison of six gas turbine power cycle, a key to improve power plants. Mech. Ind., Vol. 22. 10.1051/meca/2021005.
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  15. Falsafi, I., H. Nemati and A. Zare, 2021. Mathematical modeling of porous combustion under various working conditions. Chem. Eng. Commun., 10.1080/00986445.2021.1986702.
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  16. Nemati, H., M. Moradaghay, M.A. Moghimi and J.P. Meyer, 2020. Natural convection heat transfer over horizontal annular elliptical finned tubes. Int. Commun. Heat Mass Transfer, 10.1016/j.icheatmasstransfer.2020.104823.
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  17. Sadeghianjahromi, A., S. Kheradmand, H. Nemati, J.S. Liaw and C.C. Wang, 2018. Compound heat transfer enhancement of wavy fin-and-tube heat exchangers through boundary layer restarting and swirled flow. Energies, Vol. 11. 10.3390/en11081959.
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  18. Sadeghianjahromi, A., S. Kheradmand and H. Nemati, 2018. Developed correlations for heat transfer and flow friction characteristics of louvered finned tube heat exchangers. Int. J. Thermal Sci., 129: 135-144.
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  19. Nemati, H., 2018. A general equation based on entropy generation minimization to optimize plate fin heat sink. Eng. J., 22: 159-174.
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  20. Nemati, H. and S.M. Beheshti, 2017. Old satellite dish as a solar cooker in Iran. Model. Meas. Control: Ser. B, 86: 357-366.
  21. Nemati, H. and S. Samivand, 2016. Numerical study of flow over annular elliptical finned tube heat exchangers. Arabian J. Sci. Eng., 41: 4625-4634.
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  22. Nemati, H. and S. Samivand, 2015. Performance optimization of annular elliptical fin based on thermo-geometric parameters. Alexandria Eng. J., 54: 1037-1042.
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  23. Mahboodi, Z. and H. Nemati, 2015. Experimental analysis of inclined heat pipe thermal resistance. Int. J. Heat Technol., 33: 155-160.
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  24. Nemati, H. and S. Samivand, 2014. Simple correlation to evaluate efficiency of annular elliptical fin circumscribing circular tube. Arabian J. Sci. Eng., 39: 9181-9186.
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  25. Nemati, H. and M. Moghimi, 2014. Numerical study of flow over annular-finned tube heat exchangers by different turbulent models. CFD Lett., 6: 101-112.
  26. Nemati, H. and G. Ghanbari, 2014. Buckling pressure in double wall cryogenic storage tank by FEM. Emirates J. Eng. Res., 19: 43-48.
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  27. Golneshan, A.A. and H. Nemati, 2014. Exergy analysis of unglazed transpired solar collectors (UTCs). Solar Energy, 107: 272-277.
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  28. Golneshan, A.A. and H. Nemati, 2013. In silico modeling of tumor growth. J. Mech. Med. Biol., Vol. 13. 10.1142/S0219519413500693.
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  29. Nemati, H. and R. Heidary, 2012. Risk analysis of cryogenic ammonia storage tank in Iran by fault tree method. Emirates J. Eng. Res., 17: 43-52.
  30. Nemati, H. and M.J. Javanmardi, 2012. Exergy optimization of domestic solar cylindrical-parabolic cooker. J. Renew. Sustain. Energy, Vol. 4. 10.1063/1.4769076.
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  31. Golneshan, A.A. and H. Nemati, 2012. Is there any similarity between tumour growth and thermal expansion? Proc. Inst. Mech. Eng. Part C: J. Mech. Eng. Sci., 226: 192-201.
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  32. Golneshan, A.A. and H. Nemati, 2011. Continuum based tumor growth modeling. J. Emerg. Trends Eng. Applied Sci., 2: 546-550.
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