SCEJ

22nd SCEJ Students Meeting in Okayama (2020)

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Hall I

Most recent update: 2020-02-21 10:43:50

TimePaper
ID
Title / AuthorsKeywordsTopic codeAck.
number
Fluid & particle processing
(9:30–10:30) (Chair: Tomonori Fukasawa, Shuji Ohsaki)
9:309:42I01Effect of particle properties on the local gravitational packing characteristics of powder
(Okayama U.) *Ayana S., Mino Y., Nakaso K., Gotoh K.
powder
gravitational packing
die filling, clogging
2-f58
9:429:54I02evaluation of flowability by shear test and vibration shear tube method
(U.Kyoto) *Nishikawa R., Matsusaka S.
vibration shear tube metod
shear test
friction
2-f25
9:5410:06I03Development of component separation method for mixed powders in vibrating fluidized bed based on differences in agglomeration behavior of individual powders
(Hiroshima U.) *Izumi J., Fukasawa T., Ishigami T., Fukui K.
Component separation
Vibrating fluidized bed
Mixed powders
2-f77
10:0610:18I04Compression simulation of powder compacts using discrete element method
(Okayama U.) *Inohara Y., Mino Y., Nakaso K., Gotoh K.
DEM
powder compacts
compression
2-f103
10:1810:30I05Influence of operating conditions on the structure of powder layer deposited on the bag filter
(Hiroshima U.) *Matsunaga K, Narita T, Fukasawa T, Ishigami T, Fukui K
bag filter
powder layer structure
filtration
2-f81
Fluid & particle processing
(10:40–11:52) (Chair: Yasushi Mino, Toru Ishigami)
10:4010:52I06Influence of pulse-jet cleaning interval of effective filtration area of pleated filter
(Hiroshima U.) *Furumoto K., Narita T., Fukasawa T., Ishigami T., Fukui K.
Effective filtration area
Pleated filter
Pulse-jet cleanig
2-f83
10:5211:04I07Electrification of Nano Particles in Gas-Solid Pipe Flow
(U.Kyoto) *Kai S., Matsusaka S.
Electrification
Nano Particle
Gas-Solid Flow
2-f38
11:0411:16I08Downsizing of Solid-Electrolytes for All-Solid-State Lithium Batteries by Liquid Shaking Method
(Osaka Pref. U.) *Hatada Akihiro, Yano Takeru, Ohsaki Shuji, Nakamura Hideya, Watano Satoru
All-solid-state lithium battery
Liquid Shaking method
Li3PS4
2-f75
11:1611:28I09Simulation of drying process of fine particle dispersed droplet by DEM-DNS method
(Hiroshima U.) *Karasudani T., Maemoto Y., Fukasawa T., Ishigami T., Fukui K.
DEM-DNS method
spray drying
structure formation
2-e59
11:2811:40I10Development of a novel atomizing device for miniaturizing the size of the spray dryer using the rotating disk atomizer
(Okayama U.) *Takami N., Shimizu A., Nakaso K., Mino Y., Gotoh K.
Spray dry
Rotating disk atomizer
Droplet
2-f84
11:4011:52I11Comparison of techniques to evaluate contact angle
(Okayama U.) *Takahashi Y., Mino Y., Nakaso K. ., Gotoh K.
powder
wettabillity
liquid penetrarion
2-f104
Fluid & particle processing
(13:00–14:24) (Chair: Yasuya Nakayama, Kosuke Suzuki)
13:0013:12I12Development of numerical simulation model of solid-gas-liquid-liquid four-phase flows based on phase-field model
(Hiroshima U.) *Hagiwara R., Ueda M., Fukasawa T., Ishigami T., Fukui K.
four-phase flow
phase-field model
immersed boundary method
2-e60
13:1213:24I13Oscillatory shear rheology of a suspension in a viscoelastic medium
(Kyushu U.) *Uemura Takami, (U. Kyushu/Sumitomo Bakelite) Matsuoka Yuki, (U. Kyushu) Nakayama Yasuya, Kajiwara Toshihisa
suspension
SAOS
rheology
2-a28
13:2413:36I14Effect of the size of dispersed particles on the motion of a single particle
(Kobe U.) *Goto Sayu, Komoda Yoshiyuki, Suzuki Kosuke, Horie Takahumi, Ohmura Naoto
Micro-scale flow
Magnetic particles
Stokes flow
2-a39
13:3613:48I15Effect of heating method and pH on the synthesis of complex oxide particles by precipitation method
(Hiroshima U.) *Irusyado P., Ichiba G., Fukasawa T., Ishigami T., Fukui K.
Microwave heating
Coprecipitation
CFMO
2-f82
13:4814:00I16Study on the dispersion stability of emulsion using ultrafine bubbles
(NIT Kochi) *Amagu Kaiki, Yamawaki Naoya, Nishiuchi Yusuke, Hata Takashi, Tada Kaori
emulsion
dispersion stability
ultrafine bubble
2-e150
14:0014:12I17Effects of ion types, particle surface properties, and applied electric fields on zeta potential measurements
(Hiroshima U.) *Maruyama N., Ono K., Fukasawa T., Ishigami T., (HiroshimaU.) Fukui K.
Electricphoresis
Zeta Potential
Particle surface properties
2-f76
14:1214:24I18Control of microbial adhesion to stainless steel surface using titania nanoparticles
(Osaka Pref. U.) *Tanaka Tomohiko, Konishi Yasuhiro, Nomura Toshiyuki, (Osaka U.) Kondo Hikaru, Naito Makio
AFM
Adhesion force
Bacterial cells
2-g101
Fluid & particle processing
(14:35–15:47) (Chair: Takafumi Horie, Kazutaka Takata)
14:3514:47I19Analysis of mixing and flowing state in an oscillatory baffled reactor
(Kobe U.) *Murotani Ryosuke, Horie Takafumi, (Sekisui Chemical) Yakushiji Hikaru, (Kobe U.) Komoda Yoshiyuki, Ohmura Naoto
oscillatory baffled reactor
vortex motion
decolorization
2-b36
14:4714:59I20Numerical analysis of water-benzene mixture flow around obstacles in a circular pipe
(Osaka U.) *Kitano Yuki, (Graduate school of Eng. Sci., Osaka U.) Okano Yasunori, Sekimoto Atushi
OpenFOAM
liquid-liquid dispersion
static mixer
2-b98
14:5915:11I21Influence of Various Impeller Shape on Discharge Performance in Turbulent Mixing
(Kure Kosen) *Kobayashi Masaki, Serene Ong Hui Sze, Sawai Gentarou, Takata Kazutaka
Mixing
CFD
Flow pattern
2-b73
15:1115:23I22Effect of rheological properties on the mixing pattern induced by a rotationally reciprocating anchor impeller
(Kobe U.) *Hirose Haruna, Komoda Yoshiyuki, Suzuki Kosuke, Horie Takafumi, Ohmura Naoto
non-Newtonian fluids
laminar chaotic mixing
streakline
2-b24
15:2315:35I23Influence of Various Projected Area on Power Consumption and Mixing Time of Paddle Impeller
(Kure Kosen) *Serene Ong Hui Sze, Kobayashi Masaki, Sawai Gentarou, Takata Kazutaka
Mixing
CFD
Power consumption
2-b74
15:3515:47I24Effect of mixing patten on liquid/liquid mass transfer of low density liquid with larger volume
(Okayama U.) *Sunami Kodai, Uddin Md Azhar, Kato Yoshiie
mass transfer
low density liquid
larger volume
2-b131

Technical program
22nd SCEJ Students Meeting in Okayama (2020)

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Most recent update: 2020-02-21 10:43:50
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