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SCEJ 49th Autumn Meeting (Nagoya, 2017)

List of received applications (By topics code)


SY) SCEJ Division Symposium

SY-52. [Symposium of Division of Fluid & Particle Processing] Bubbles, Drops, and Particles Dispersion Engineering 2017

Organizer(s): Iwata Shuichi (Nagoya Inst. Tech.), Sakai Mikio (Univ. of Tokyo), Yamada Masumi (Chiba Univ.), Ando Keita (Keio Univ.)

Most recent update: 2018-02-12 17:39:01

The keywords that frequently used
in this topics code.
KeywordsNumber
Volume of Fluid2
bubble-induced oscillation1

ACKN
No.
Title/Author(s)KeywordsStyle
16[Outstanding Paper Award] Shear-Induced Microbubble Generation at High Pressures
(KOBELCO) *(Ful)Shimizu Tsutomu, (AIST) (Ful)Yamamoto Yoshitaka, Tenma Norio
Bubble Size Distribution
Shear Coalescence
Turbulent Shear Rate
O
39Strategies on the application of CFD in Chemical Engineering(part3:validation and discussion on liquid-liquid mixing in a vessel)
(Mitsui Chemicals) *(Ful)Kawada Atsushi, (Ube Industries) (Ful)Suemasu Takeshi, (Sumitomo Chemical) (Ful)Shimada Naoki, (Tosoh) (Ful)Taki Kazutaka, (Idemitsu Kosan) (Ful)Sakakura Kei, (Mitsubishi Chemical) (Ful)Ishiba Yasushi
CFD(ComputationalFluidDynamics)
PBM(populationBalanceModel)
Multi-phase Mixing
O
41Neutralization of alkali waste water by using carbon dioxide fine bubble
(IHI) (Cor)Yoshida Yuka
Fine bubble
Neutralization
Waste water treatment
O
72Quantitative estimation of non-equilibrium local heating by microwave irradiation
(U. Hyogo) Nishijima Shunsuke, Kan Haruka, *(Ful)Asakuma Yusuke
Microwave
non-equilibrium condition
DLS
O
80Numerical simulation of a liquid ligament in cross-flowing gas
(Tohoku U.) *(Ful)Saito Yasuhiro, Soma Tatsuya, (Stu)Mayusumi Hidenori, (Ful)Matsushita Yohsuke, (Ful)Aoki Hideyuki, (Hachinohe Inst. Tech.) (Ful)Daikoku Masatoshi, (Hirosaki U.) Okabe Takahiro, Inamura Takao, (Honda Motor) Fukuno Junichi
Volume of Fluid
ligament
breakup
O
108Development of a rolling friction model for the DEM coarse grain model
(U. Tokyo) *(Stu)Takabatake Kazuya, (Ful)Sakai Mikio
DEM
Coarse grain model
Rolling friction model
O
113Numerical Simulation for Predicting Morphology of A Thin Solid Layer Forming from An Inkjet Solution Droplet
(Kyushu U.) *(Stu)Harada Takuya, (Stu)Ishizuka Hirotaka, (Ful)Fukai Jun
drying
solid thin film
inkjet
O
136Effect of diameter of the vessel on bubble-induced oscillation
(Fukuoka U.) *(Ful)Kanai Y., (NIT Oshima) (Ful)Kobayashi K., (Fukuoka U.) (Ful)Suzukawa K.
bubble-induced oscillation
horizontal cylindrical vessel
oscillation frequency
O
158Prediction of terminal rise velocity of single bubble influenced by an external force
(Yamaguchi U.) *(Ful)Nakao K., (NIT Oshima) (Ful)Furumoto K.
Single bubble velocity
Bubble surface fluctuation
External force
O
160[Keynote lecture] Scale up of Heat Transfer in Granular Flows
(Rutgers U.) *Glasser B. J., Yohannes Bereket, Borghard W. G., Muzzio F. J., Cuitino A. M.
Granular flow
Heat transfer
DEM Simulations
O
180[Invited lecture] Innovative Design of Chemical System for Sustainable Society
(U. Tokyo) (Ful)Tsutsumi Atsushi
exergy
self-heat recuperation
sustainable chemical engineering
O
188Investigation of calculation method of viscosity for volume of fluid method
(Tohoku U.) *(Stu)Mayusumi Hidenori, Soma Tatsuya, (Ful)Saito Yasuhiro, (Ful)Matsushita Yohsuke, (Ful)Aoki Hideyuki
Volume of Fluid
droplet
viscosity
O
191Zero vorticity flux condition at an interface between two phases
(Osaka U.) (Ful)Ueyama Korekazu
vorticity
rotation of velocity vector
rotation of momentum vector
O
192Computation method of lift and drag forces using the zero vorticity flux condition
(Osaka U.) (Ful)Ueyama Korekazu
simple shear flow
drag force
lift force
O
202Computational modeling for industrial die filling processes
(U. Tokyo) *(Stu)Yao Huaqin, (Ful)Sakai Mikio
DEM-CFD
Particulate flow
Die filling
O
206Comparison of dispersion behaviors of aggregates by ultrasonic irradiation and mechanical stirring
(Okayama U.) *(Stu)Sumitomo S., (Ful)Uddin M. A., (Ful)Kato Y.
Mixing
Dispersion
Particle
O
517Modeling Droplet Size Distribution Using Adaptive Multi-Size Group Method
(CD-adapco) (Ful)Matsuda T.
CFD
Multiphase
Size Distribution
O
746Study of droplet size prediction model in membrane emulsification considering droplet formation shape
(Tohoku U.) *(Ful)Ono Takumi, Sato Yui, (Ful)Ota Masaki, (Ful)Sato Yoshiyuki, (Ful)Inomata Hiroshi
membrane emulsification
size prediction model
O/W emulsion
O
774Effect of vessel shape on the nano-dispersion rate of zirconium phosphate by ultrasonic irradiation
(Kobe U.) *(Stu)Fukunaga Saki, (Ful)Horie Takafumi, (Kaneka) (Ful)Sugiyama Hiroaki, (Ful)Kanda Akihisa, (Kobe U.) Higashi Sayaka, (Ful)Taniya Keita, (Ful)Nishiyama Satoru, (Ful)Ohmura Naoto
ultrasonic irradiation
pressure distribution
nano-dispersion
O
892Study by numerical simulation of solid-liquid two phase flow through an abrupt contraction.
(Nihon U.) *(Stu)Honma Y., (Ful)Ando T., (PIA) (Ful)Koike O., (U. Tokyo) (Ful)Tatsumi R.
Bottleneck
Obstacle
Solid-liquid two phase fluid
O
900Numerical analysis of shear-induced deformation and break-up of a drop at the vicinity of a solid wall
(Tokushima U.) *(Ful)Ohta Mitsuhiro, (Mitsubishi Electric Eng.) Oku Shosei
Shear flow
Drop deformation
Drop break-up
O
907Interfacial hydrodynamics in a partially miscible system
(TUAT) *(Stu·PCEF)Suzuki Ryuta, (Ful)Nagatsu Yuichiro, (IIT) Mishra Manoranjan, (Osaka U.) (Ful)Ban Takahiko
Viscous fingering
partially miscible
instability
O
971Quantification of a reduction in dissolved nitrogen concentration by aerating water with oxygen microbubbles
(Keio U.) *(Ful)Ando Keita, Yamashita Tatsuya
Microbubble aeration
Gas dissolution
Purging effect
O
975Local flow structure around a bubble behavior near a wall under pressure-oscillating field
(NITech) *(Stu)Ohtani Toshiki, (Ful)Iwata Shuichi, (Ful)Mori Hideki, (Ful)Nagumo Ryo, (Nagaoka U. Tech.) (Ful)Takahashi Tsutomu, (Photron) Ohnuma Takashi
viscoelastic fluid
polarization imaging
bubble
O

List of received applications (By topics code)

List of received applications
SCEJ 49th Autumn Meeting (Nagoya, 2017)

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Most recent update: 2018-02-12 17:39:01
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