Day 1 | |||||
---|---|---|---|---|---|
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Fluid & particle processing | |||||
(13:00–13:20) (Chair: Kajiwara Toshihisa) | |||||
K113 | [The SCEJ Award for Outstanding Research Achievement] Detailed elucidation of flow characteristics and mechanism of single bubbles and drops rising through viscous fluids | Bubble rise motion Drop rise motion CFD | 2-e | 565 | |
(13:20–15:20) (Chair: Ishihara Shingo) | |||||
K114 | Direct numerical simulation of the pressure spray | Volume of Fluid Pressure spray Atomization | 2-e | 307 | |
K115 | Visualization of the fragmented bubble flow supplied from a nozzle with the guide plate | bubble flow gas nozzle Gas-liquid stirring | 2-b | 433 | |
K116 | Numerical modeling of multiphase flow in oil spill | Oil Spill Multi Phase Flow Numerical Simulation | 2-e | 723 | |
K117 | Effect of wettability of solid surface on particle-particle adhesion | wet granulation dynamic liquid bridge numerical simulation | 2-e | 444 | |
K118 | Understanding of the origin of collective motion in self-propelled particles systems | Squirmer Model Collective Motion Hydrodynamics | 2-a | 244 | |
K119 | Effect of time scale of the particles added to turbulent flow in a vertical channel | Gas-particle flow Turbulence modulation Time-scale effect | 2-e | 592 | |
(15:20–17:20) (Chair: Takagi Youhei, Shimada Naoki) | |||||
K120 | Lift force acting on a spherical liquid particle moving in a simple shear flow at low Re number I. Derivation of governing equations | lift force convection term governing equation | 2-e | 29 | |
K121 | Lift force acting on a spherical liquid particle moving in a simple shear flow at low Re number II. General solutions | lift force convection term general solution | 2-e | 30 | |
K122 | Lift force acting on a spherical liquid particle moving in a simple shear flow at low Re number III. Boundary conditions | lift force convection term boundary condition | 2-e | 31 | |
K123 | Lift force acting on a spherical liquid particle moving in a simple shear flow at low Re number IV. Distributions of additional velocity and static pressure | lift force convection term additional velocity and pressure | 2-e | 32 | |
K124 | Lift force acting on a spherical liquid particle moving in a simple shear flow at low Re number V. Lift force | lift force convection term virtual force term | 2-e | 33 | |
K125 | Lift force acting on a spherical liquid particle moving in a simple shear flow at low Re number VI. Virtual force term | 2-fluid model equation interaction term virtual force term | 2-e | 341 | |
Day 2 | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Chemical Industry Technology Forum -Industrial Technology Forum for Energy- | |||||
(11:00–12:00) (Chair: Otomo Junichiro) | |||||
K207 | Recent Progress and Future Prospects on SOFC Combined Cycle System in MHPS for the realization of hydrogen society | Solid Oxide Fuel Cell Hybrid System Micro Gas Turbine | F-2 | 836 | |
K209 | Development of residential SOFC CHP systems | solid oxide fuel cell SOFC residential cogenaration system | F-2 | 832 | |
(13:20–15:20) (Chair: Matsukata Masahiko) | |||||
K214 | Development of energy storage and transportation technology for hydrogen society | Organic chemical hydride Hydrogen energy storage and transportation | F-2 | 841 | |
K215 | Development of a newly Light Cycle Oil upgrading process | petroleum hydrogenation catalyst | F-2 | 835 | |
K216 | Idemitsu's challenge in global energy market | energy industry | F-2 | 833 | |
K218 | Consideration regarding Energy Trends in 2030 and thereafter in Japan | Trends oil Supply | F-2 | 839 | |
Business card exchange | |||||
Day 3 | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Headquarters -Nanofluid: Science and Application- | |||||
(9:00–10:20) (Chair: Kanie Kiyoshi) | |||||
K301 | Phase transition to ε-Fe2O3 from size-controlled FeO nanoparticles | Ferromagnetic nanoparticles Size control Phase transformation | HQ-1 | 774 | |
K302 | Selective synthesis of silver nanowire by single-mode microwave assisted polyol process | silver nanowire selective synthesis microwave-polyol process | HQ-1 | 974 | |
K303 | Dispersion behavior control of nanoparticles in liquid by surface molecular structure design | Nanoparticles Dispersion Interface structure design | HQ-1 | 629 | |
K304 | Effect of side chain of polyethyleneimine/fatty acid complex on the dispersion stability of non-aqueous TiO2 nanoparticle slurry | Dispersion stability Polyethyleneimine Fatty acid | HQ-1 | 598 | |
(10:20–11:20) (Chair: Iijima Motoyuki) | |||||
K305 | Attachment of hydrophobic particles to the surface of an immersed gas bubble (Kyoto U./Helmholtz-Zentrum Dresden-Rossendorf) *Lecrivain Gregory, | Froth flotation Three-phase system Particle attachment | HQ-1 | 627 | |
K306 | Solute adsorption effects on structure formation of colloidal particles during drying | direct numerical simulation drying colloidal films solute adsorption | HQ-1 | 921 | |
K307 | Critical cracking thickness of alcohol-based nanofuilds | suspension cosolvent cracking | HQ-1 | 600 | |
(11:20–12:00) (Chair: Muramatsu Atsushi) | |||||
K308 | [Invited lecture] Nanofluid : Formation and Application of Structures Comprising Nanoparticles | nanofluid optical property assembly | HQ-1 | 924 | |
(13:00–13:40) (Chair: Adschiri Tadafumi) | |||||
K313 | [Invited lecture] Numerical simulation of dispersion and aggregation behaviors of surface modified nanoparticles in organic solvent | surface modified nanoparticles dispersion numerical simulation | HQ-1 | 823 | |
(13:40–15:20) (Chair: Takami Seiichi) | |||||
K315 | Direct numerical simulation of pressure driven flow of rod-like fine particle dispersions | rheology rod-like fine particle dispersion direct numerical simulation | HQ-1 | 920 | |
K316 | Rheology of Colloidal Dispersions: A Direct Numerical Simulation Approach | Rheology Direct Numerical Simulation | HQ-1 | 669 | |
K317 | Fundamental Technologies of Numerical Analysis in Computational Fluid Dynamics | computational fluid dynamics numerical analysis | HQ-1 | 927 | |
K318 | Application of control theory to nano-systems | Control theory Nano-systems Dynamical systems | HQ-1 | 446 | |
K319 | Surface forces and resonance shear measurement for characterizing particle dispersion | surface forces measurement resonance shear measurement interaction | HQ-1 | 387 | |
(15:20–16:40) (Chair: Kubo Masaki) | |||||
K320 | An application of an equation of state for phase equilibria of hybrid nano particles solution | decanoic acid modified hybrid CeO2 equation of state solubility | HQ-1 | 169 | |
K321 | Rheological Behavior of Liquid-Crystalline Organic-Inorganic Hybrid Dendrimer | Rheological Measurement Liquid Crystal Nanofluid | HQ-1 | 737 | |
K322 | Viscosity of nanofluid comprising surface-modified CeO2 nanoparticles synthesized in supercritical water | Nanofluid Vicosity Newtonian | HQ-1 | 161 | |
K323 | Highly concentrated and dispersed Nanofluid toward application of Nanotechnology | Nanofluid nanocrystals self-assembly | HQ-1 | 756 |