Fangjun Hong, Ph.D.
Affiliations: | 2005 | Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong |
Area:
Mechanical EngineeringGoogle:
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Publications
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Chen Y, Hong F, Cheng P. (2020) Transient flow patterns in an evaporating sessile drop: A numerical study on the effect of volatility and contact angle International Communications in Heat and Mass Transfer. 112: 104493 |
Cui F, Hong F, Li C, et al. (2019) Two-phase flow instability in distributed jet array impingement boiling on pin-fin structured surface and its affecting factors International Journal of Heat and Mass Transfer. 143: 118495 |
Yuan L, Hong F, Cheng P. (2019) Pool boiling enhancement through a guidance structure mounted above heating surface International Journal of Heat and Mass Transfer. 139: 751-763 |
Li J, Hong F, Xie R, et al. (2019) Pore scale simulation of evaporation in a porous wick of a loop heat pipe flat evaporator using Lattice Boltzmann method International Communications in Heat and Mass Transfer. 102: 22-33 |
Zhang C, Cheng P, Hong F. (2016) Mesoscale simulation of heater size and subcooling effects on pool boiling under controlled wall heat flux conditions International Journal of Heat and Mass Transfer. 101: 1331-1342 |
Zhang C, Hong F, Cheng P. (2015) Simulation of liquid thin film evaporation and boiling on a heated hydrophilic microstructured surface by Lattice Boltzmann method International Journal of Heat and Mass Transfer. 86: 629-638 |
Yi N, Huang B, Dong L, et al. (2014) Temperature-induced coalescence of colliding binary droplets on superhydrophobic surface. Scientific Reports. 4: 4303 |
Yang K, Hong F, Cheng P. (2014) A fully coupled numerical simulation of sessile droplet evaporation using Arbitrary Lagrangian–Eulerian formulation International Journal of Heat and Mass Transfer. 70: 409-420 |
Hong F, Bai F, Cheng P. (2014) A parametric study of electrothermal flow inside an AC EWOD droplet International Communications in Heat and Mass Transfer. 55: 63-70 |
Hong F, Cheng P. (2009) Three dimensional numerical analyses and optimization of offset strip-fin microchannel heat sinks International Communications in Heat and Mass Transfer. 36: 651-656 |