Seyed F. Chini, Ph.D.
Affiliations: | 2013 | Mechanical Engineering | University of Alberta, Edmonton, Alberta, Canada |
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Mechanical EngineeringGoogle:
"Seyed Chini"Parents
Sign in to add mentorAlidad Amirfazli | grad student | 2013 | University of Alberta | |
(Drop Removal from Solid Surfaces: Shedding and Evaporation.) |
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Publications
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Moradi M, Chini SF, Rahimian MH. (2020) Vibration-enhanced condensation heat transfer on superhydrophobic surfaces: An experimental study Aip Advances. 10: 95123 |
Moradi M, Rahimian MH, Chini SF. (2020) Numerical simulation of droplet impact on vibrating low-adhesion surfaces Physics of Fluids. 32: 62110 |
Sotoude Haghighi MH, Mirghavami SM, Ghorani MM, et al. (2020) A numerical study on the performance of a superhydrophobic coated very low head (VLH) axial hydraulic turbine using entropy generation method Renewable Energy. 147: 409-422 |
Barghi F, Entezari M, Chini S, et al. (2020) Effect of initial wetting state on plastron recovery through heating International Journal of Heat and Mass Transfer. 156: 119705 |
Moradi M, Rahimian MH, Chini SF. (2019) Numerical investigation of vibration-induced droplet shedding on smooth surfaces with large contact angles. Physical Review. E. 100: 023105 |
Moradi M, Rahimian MH, Chini SF. (2019) Numerical investigation of vibration-induced droplet shedding on microstructured superhydrophobic surfaces. Physical Review. E. 99: 063111 |
Moradi M, Rahimian MH, Chini SF. (2019) Coalescence-induced droplet detachment on low-adhesion surfaces: A three-phase system study. Physical Review. E. 99: 063102 |
Sotoude Haghighi M, Mirghavami S, Chini S, et al. (2019) Developing a method to design and simulation of a very low head axial turbine with adjustable rotor blades Renewable Energy. 135: 266-276 |
Soltani Ayan M, Entezari M, Chini S. (2019) Experiments on skin friction reduction induced by superhydrophobicity and Leidenfrost phenomena in a Taylor-Couette cell International Journal of Heat and Mass Transfer. 132: 271-279 |
Bonab MS, Khosroshahi AA, Ashjaee M, et al. (2018) Improving the natural convective heat transfer of a rectangular heatsink using superhydrophobic walls: A numerical approach Environmental Engineering Science. 6: 293-303 |