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SCEJ 82nd Annual Meeting (Tokyo, 2017)

List of received applications (By topics code)


2) Fluid & particle processing

2-e. Multiphase flow

Most recent update: 2017-05-20 20:59:01

The keywords that frequently used
in this topics code.
KeywordsNumber
Gas-liquid mixing tank2
CFD simulation2
Froth Flotation2
integral constant1

ACKN
No.
Title/Author(s)KeywordsStyle
34Analysis of the forces acting on a particle held in a sound pressure field
(Shizuoka U.) *(Stu)Muramatsu Hiroya(Ful)Saito Takayuki
Acoustic Cavitation-Oriented Bubble
Visualization
Particle Image Velocimetry
P
107Refinement of aeration method in gas-liquid mixing tank aided by CFD simulation
(Sumitomo Metal Mining) *(Cor)Homma Takehide(Cor)Naito Motoyuki
multiphase flow
gas-liquid mixing tank
CFD simulation
O
159Improvement in Froth Flotation: Simulation Model Building
(Sumitomo Metal Mining) *(Cor)Nakao Y.(Cor)Sugimoto M.(Cor)Seto Y.(Cor)Sakamoto K.
CFD simulation
Gas-liquid mixing tank
Froth Flotation
O
160Improvement in Froth Flotation: Estimation of Scale-up Factor
(Sumitomo Metal Mining) *(Cor)Sugimoto M.(Cor)Nakao Y.(Cor)Seto Y.(Cor)Sakamoto K.
Scale-up
Gas-liquid mixing tank
Froth Flotation
O
193Analytical approach on the force acting on a spherical solid, liquid or gas particle in a simple shear flow 1. General solution of the vorticity transport eq.
(Osaka U.) (Ful)Ueyama Korekazu
vorticity transport equation
general solution
integral constant
O
194Analytical approach on the force acting on a spherical solid, liquid or gas particle in a simple shear flow 2.Boundary conditions on a particle surface(introduction of vorticity flux condition)
(Osaka U.) (Ful)Ueyama Korekazu
boundary condition
vorticity flux
shear force
O
195Analytical approach on the force acting on a spherical solid, liquid or gas particle in a simple shear flow 3. Lift force and lift coefficient
(Osaka U.) (Ful)Ueyama Korekazu
lift force
lift coefficient
vorticity flux condition
O
213Numerical Analysis of Shear-induced Deformation and Breakup of a Bubble in Shear-thinning Liquids
(Tokushima U.) *(Ful)Ohta MitsuhiroSuetsugu Yuki
Bubble deformation
Shear flow
Shear-thinning fluid
O
331Numerical analysis of the motion of a single droplet in liquid-liquid systems
(Saitama U.) *(Stu)Yoshikawa Tamaki(Ful)Homma Shunji
droplet
Front-Tracking
drag coefficient
P
340Motion of plumes in Rayleigh-Taylor instabilities for highly viscous fluids
(Saitama U.) *(Stu)Nakajima Ryota(Ful)Homma Shunji
Rayleigh-Taylor instability
Front-tracking method
plumes
P
568Lagrangian near-field modeling of deepwater oil blowout plume treated by chemical dispersants
(Osaka U.) *(Stu)Cordeiro Daniel Cardoso(Ful)Takagi Youhei(Ful)Okano Yasunori(Ful)Kato Naomi
Deepwater oil spill
Lagrangian modeling
TAMOC
P
591Promoting effect of flow by an obstacle in front of a pore on solid-liquid two phase flow
(Nihon U.) *(Stu)Honma Y.Neyama Y.(Ful)Ando T.(PIA) (Ful)Koike O.(U. Tokyo) (Ful)Tatsumi R.
obstacle
solid-liquid two phase flow
effect of streamline curvature
P
660Direct numerical simulation of particulate flow through micropore
(Kobe U./MaF Tech C.) *(Stu)Sakai Shohei(Okayama U.) (Ful)Mino Yasushi(Kobe U./MaF Tech C.) (Ful)Yoshioka Tomohisa(Ful)Matsuyama Hideto
Lattice Boltzmann Method
Discrete Element Method
Fouling
P
817Effect of the addition of nanoparticle on the flow characteristics of concentrated micro particle suspension
(Kobe U.) *(Ful)Komoda YoshiyukiMatsubara Masaki(Ful)Suzuki Kosuke(Ful)Suzuki Hiroshi(Ful)Hidema Ruri
Rheology
Gelation
Shear-thickening
O
839Comparison of Algorithm of Body-Force-Type Immersed Boundary Method for Calculation of Flow around a Particle
(Okayama U. Sci.) *(Stu)Yamashita Takuya(Ful)Kuwagi Kenya(Ful)Hirano Hiroyuki
Algorithm
P

List of received applications (By topics code)

List of received applications
SCEJ 82nd Annual Meeting (Tokyo, 2017)

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Most recent update: 2017-05-20 20:59:01
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