1 |
Scale process effect on the power consumption characteristics of a novel curved Rushton turbine within a reactor vessel Qiu N, Wang P, Si QR, Pettang WEK, Yuan SQ Chemical Engineering Research & Design, 166, 109, 2021 |
2 |
Gas-Liquid Mixing in a Grid-Disc Impeller Stirred Tank Yang FL, Sun HY, Zhang CX Chemical Engineering & Technology, 43(7), 1297, 2020 |
3 |
Bubble size distribution in aerated stirred tanks: Quantifying the effect of impeller-stator design Mesa D, Brito-Parada PR Chemical Engineering Research & Design, 160, 356, 2020 |
4 |
Effect of Particle Image Velocimetry Setting Parameters on Local Velocity Measurements in an Agitated Vessel Sulc R, Ditl P, Jasikova D, Kotek M, Kopecky V, Kysela B Chemical Engineering & Technology, 42(4), 827, 2019 |
5 |
Quantitative Measurements of the Critical Impeller Speed for Solid-Liquid Suspensions Ye GC, Nienow AW, Alberini F Chemical Engineering & Technology, 42(8), 1643, 2019 |
6 |
CFD study on double- to single-loop flow pattern transition and its influence on macro mixing efficiency in fully baffled tank stirred by a Rushton turbine Zhu QH, Xiao H, Chen AQ, Geng SJ, Huang QS Chinese Journal of Chemical Engineering, 27(5), 993, 2019 |
7 |
Appropriate mixing speeds of Rushton turbine for biohydrogen production from palm oil mill effluent in a continuous stirred tank reactor Srirugsa T, Prasertsan S, Theppaya T, Leevijit T, Prasertsan P Energy, 179, 823, 2019 |
8 |
Inter-compartment interaction in multi-impeller mixing. Part II. Experiments, sliding mesh and large Eddy simulations Haringa C, Vandewijer R, Mudde RF Chemical Engineering Research & Design, 136, 886, 2018 |
9 |
Direct numerical simulations of creeping to early turbulent flow in unbaffled and baffled stirred tanks Tamburini A, Gagliano G, Micale G, Brucato A, Scargiali F, Ciofalo M Chemical Engineering Science, 192, 161, 2018 |
10 |
Characterization on the hydrodynamics of a covering-plate Rushton impeller Su TL, Yang FL, Li MT, Wu KH Chinese Journal of Chemical Engineering, 26(6), 1392, 2018 |