1 |
Numerical study on fine-particle charging and transport behaviour in electrostatic precipitators Dong M, Zhou F, Zhang YX, Shang Y, Li SF Powder Technology, 330, 210, 2018 |
2 |
Study on the clustering of dispersed particles in an oscillating flow field Li Q, Lei G, Yang WJ Powder Technology, 311, 167, 2017 |
3 |
Visualization of the trapping of inertial particles in a laminar mixing tank Wang S, Stewart RL, Metcalfe G Chemical Engineering Science, 143, 99, 2016 |
4 |
Electrodeless dielectrophoresis: Impact of geometry and material on obstacle polarization Pesch GR, Kiewidt L, Du F, Baune M, Thoming J Electrophoresis, 37(2), 291, 2016 |
5 |
Enhanced particle trapping performance of induced charge electroosmosis Tao Y, Ren YK, Liu WY, Wu YP, Jia YK, Lang Q, Jiang HY Electrophoresis, 37(10), 1326, 2016 |
6 |
Numerical study of electrostatic precipitators with novel particle-trapping mechanism Wen TY, Krichtafovitch I, Mamishev AV Journal of Aerosol Science, 95, 95, 2016 |
7 |
A particle trapping chip using the wide and uniform slit formed by a deformable membrane with air bubble plugs Doh I, Kim Y, Cho YH Current Applied Physics, 13(5), 902, 2013 |
8 |
Microscopic numerical simulations of suspension with particle accumulation in porous media Hirabayashi S, Sato T, Mitsuhori K, Yamamoto Y Powder Technology, 225, 143, 2012 |
9 |
Characterization of particle capture in a sawtooth patterned insulating electrokinetic microfluidic device Staton SJR, Chen KP, Taylor TJ, Pacheco JR, Hayes MA Electrophoresis, 31(22), 3634, 2010 |
10 |
Insulator-based dielectrophoretic separation of small particles in a sawtooth channel Chen KP, Pacheco JR, Hayes MA, Staton SJR Electrophoresis, 30(9), 1441, 2009 |