1 |
Translational velocity of a charged oil droplet close to a horizontal solid surface under an applied electric field Wang CF, Song YX, Pan XX, Li DQ International Journal of Heat and Mass Transfer, 132, 322, 2019 |
2 |
Agglomeration of fine particles in water upon application of DC electric field Mori T, Nagashima H, Ito Y, Era Y, Tsubaki J Minerals Engineering, 133, 119, 2019 |
3 |
Breakup modes and criterion of droplet with surfactant under direct current electric field Luo XM, Huang X, Yan HP, Yang DH, Wang J, He LM Chemical Engineering Research & Design, 132, 822, 2018 |
4 |
A 1D ionic transport model for nonlinear response analysis of a counterflow laminar diffusion flame in DC electric fields Choi BC, Park PJ Fuel, 233, 610, 2018 |
5 |
Probing the corrosion mechanism of zinc under direct current electric field Zhang X, Zhang JX, Dai NW, Yang Y, Yuan XJ, Cao FH, Zhang JQ Materials Chemistry and Physics, 206, 232, 2018 |
6 |
Investigation of the effect of DC electric field on a small ethanol diffusion flame Luo YL, Gan YH, Jiang X Fuel, 188, 621, 2017 |
7 |
Breakup characteristics of aqueous droplet with surfactant in oil under direct current electric field Luo XM, Yan HP, Huang X, Yang DH, Wang J, He LM Journal of Colloid and Interface Science, 505, 460, 2017 |
8 |
Electro-coalescence of two charged droplets under constant and pulsed DC electric fields Wang BB, Wang XD, Wang TH, Lu G, Yan WM International Journal of Heat and Mass Transfer, 98, 10, 2016 |
9 |
The power of power: Electrokinetic control of PAH interactions with exfoliated graphite Qin JY, Moustafa A, Harms H, El-Din MG, Wick LY Journal of Hazardous Materials, 288, 25, 2015 |
10 |
SOOT REDUCTION UNDER DC ELECTRIC FIELDS IN COUNTERFLOW NON-PREMIXED LAMINAR ETHYLENE FLAMES Park DG, Choi BC, Cha MS, Chung SH Combustion Science and Technology, 186(4-5), 644, 2014 |