
SCEJ 89th Annual Meeting
March 18 (Mon) - 20 (Wed), 2024
Nakamozu Campus, Osaka Metropolitan University
Japanese page
Most recent update: 2024-08-12 19:59:01
The keywords that frequently used in this topics code. | Keywords | Number | |
|---|---|---|---|
| microbubble | 2 | ||
| viscosity | 1 | ||
| ACKN No. | Title/Author(s) | Keywords | Style |
|---|---|---|---|
| 33 | Application of consistent mass-momentum scheme for two-phase flow to dam break problem | consistent scheme two-phase flow VOF | O |
| 49 | Numerical analysis of conditions for detachment of oil droplet from wall surface by microbubble | Microbubble Degreasing Numerical simulation | O |
| 56 | Relationship between thermodynamic entropy and permutation entropy characterizing pseudo-two-dimensional turbulence | permutation entropy entropy production Viscous Fingering | O |
| 193 | The effect of flow constriction on jets discharged from an elliptical nozzle. | uroflowmetry constriction OpenFOAM | P |
| 202 | Immunoaffinity-based separation of cells using the flow formed on the microgap | microcone array cell separation high speed imaging | P |
| 305 | Verification Study of CFD Prediction Accuracy of Two-phase Flow Induced Fluid Force Fluctuations for Evaluating Flow Induced Vibration | Flow Induced Vibration Two Phase Flow Piping Bend | O |
| 342 | Numerical Analysis on Motion of Charged Particle in Human Lung | CFD DEM Aerosol | O |
| 352 | Analysis of mass transfer enhancement in Taylor flow within a helical channel | Taylor flow mass transfer enhancement helical channnel | P |
| 460 | Numerical simulations of drop breakup in strong linear shear flow with a moving top wall and a stationary bottom wall | Drop breakup Shear flow Numerical analysis | O |
| 468 | Generation of microbubbles and control of bubble diameter by circular motion of a microporous nozzle | microbubble bubble diameter nozzle | P |
| 500 | Rheology-based inline method for estimating volume fraction of water-in-oil emulsion | emulsion volume fraction viscosity | P |
| 540 | Collision and mixing phenomena of two Leidenfrost droplets | Leidenfrost droplet Mixing Droplet reactor | O |
| 556 | Production of Gelatin Beads Using Liquid-Liquid Slug Flow | liquid-liquid slug flow gel Gelatin | P |
| 708 | Surface modification of fine bubbles using molecular film coating | fine bubble micro bubble surface modification | O |
Organizing Committee of SCEJ 89th Annual Meeting (2024)
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