1 |
Hydrodynamics and Power Consumption of Rotating Baffled Shaking Cylindrical Vessel Kato Y, Tada Y, Inoue M, Nagatsu Y, Lee YS, Koh ST Journal of Chemical Engineering of Japan, 42(11), 857, 2009 |
2 |
Transient hydrodynamics and free surface capture of an under-baffled stirred tank during stopping Torre JP, Fletcher DF, Lasuye T, Xuereb C Chemical Engineering Research & Design, 85(A5), 626, 2007 |
3 |
An experimental and computational study of the vortex shape in a partially baffled agitated vessel Torre JP, Fletcher DF, Lasuye T, Xuereb C Chemical Engineering Science, 62(7), 1915, 2007 |
4 |
Single and multiphase CFD approaches for modelling partially baffled stirred vessels: Comparison of experimental data with numerical predictions Torre JP, Fletcher DF, Lasuye T, Xuereb C Chemical Engineering Science, 62(22), 6246, 2007 |
5 |
Active volume of mean circulation for stirred tanks agitated with axial impellers Bittorf KJ, Kresta SM Chemical Engineering Science, 55(7), 1325, 2000 |
6 |
Hydrodynamics of suspensions agitated by pitched-blade turbine Pettersson M, Rasmuson AC AIChE Journal, 44(3), 513, 1998 |
7 |
Turbulence in stirred tanks : Anisotropic, approximate, and applied Kresta S Canadian Journal of Chemical Engineering, 76(3), 563, 1998 |
8 |
Simulation of flow in stirred vessel with axial flow impeller : Zonal modeling and optimization of parameters Sahu AK, Kumar P, Joshi JB Industrial & Engineering Chemistry Research, 37(6), 2116, 1998 |
9 |
3-D Hydrodynamics Generated in a Stirred Vessel by a Multiple-Propeller System Baudou C, Xuereb C, Bertrand J Canadian Journal of Chemical Engineering, 75(4), 653, 1997 |
10 |
Application of 3-Dimensional Phase-Doppler Anemometry to Mechanically Agitated Crystallizers Pettersson M, Rasmuson AC Chemical Engineering Research & Design, 75(2), 132, 1997 |