Topics Code field begins with “2-b”; 11 programs are found.
The search results are sorted by the start time.
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
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Day 2 | I220 | Numerical simulation of droplet behavior in a steady flow. | droplet deformation multiphase flow numerical simulation | 2-b | 712 |
Day 2 | I221 | Flow and mixing ability in a rotating cylindrical container with liquid-gas interface | Liquid-gas interface Numerical simulation Mixing | 2-b | 646 |
Day 2 | I222 | Mixing with variable shear rates by using a precessing container | Mixing Shear rates Precession | 2-b | 664 |
Day 2 | I223 | Simulation of Stirring in a Bioreactor using the Lattice Boltzmann Method | Computational Fluid Dynamics Lattice Boltzmann Method Stirring | 2-b | 126 |
Day 2 | I224 | Method for predicting the size of transition metal complex hydroxides precipitated in a stirred-tank semi-batch reaction crystallizer using CFD and particle agglomeration models | turbulent mixing precipitation agglomeration model | 2-b | 666 |
Day 3 | PD305 | Comparison of mixing performance of HB impeller as large paddle impellers | Mixing Large paddle impeller HB impeller | 2-b | 53 |
Day 3 | PD313 | Application and optimum geometry of AM Impeller for non-Newtonian fluid mixing | Mixing Non-Newtonian fluid | 2-b | 34 |
Day 3 | PD315 | Viscosity after mixing as an indicator for evaluating the possibility of different viscosity mixing | Mixing Different viscous fluid Different viscous mixing | 2-b | 40 |
Day 3 | PD318 | Effect of liquid surface baffle conditions on the minimum impeller rotational speed for the complete suspension of floating solid | Solid-Liquid agitation Liquid surface baffle Floating particle | 2-b | 79 |
Day 3 | PD319 | Experimental analysis of power consumption and Metzner-otto constant for highly shear thinning fluids. | Shear thinning fluids Power consumption Metzner-Otto Concept | 2-b | 212 |
Day 3 | PD321 | Numerical Analysis of Power Consumption for Oscillatory Flow Baffled Reactor for Application to Solid-Liquid Dispersion Systems | Oscillatory Baffled Reactor Power consumption CFD | 2-b | 469 |
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SCEJ 89th Annual Meeting (Sakai, 2024)