SCEJ

22nd SCEJ Students Meeting in Tokyo (2020)

Hall program

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Hall D

Most recent update: 2020-02-19 14:23:43
TimePaper
ID
Title / AuthorsKeywordsTopic codeAck.
number
Fluid & particle processing, Electronics
(9:30–10:42) (Chair: No data , No data )
9:30– 9:42D01Intercalated of two kinds of metal complexes in the layered MnO2 and vacuum heat treatment for improved pseudocapacitive properties
(Kanto-GakuinU) *Natsui Kouta, Ou Istuou, Itakura Makoto, Utsumi Runa, Satoh Suzunosuke, (YamaguchiUniv) Sumimoto Michinori, (Kanto-GakuinU) Tomono Kazuaki
pseudocapacitive properties
vacuum heat treatment
metal complex
12-k12
9:42– 9:54D02Numerical analysis of Marangoni convection considering the deformation of Liquid-gas Interface
(TMU) *Maki Seiya, Tagawa Toshio
two phase flow
Marangoni convection
Numerical analysis
2-a61
9:54– 10:06D03Fabrication and electrochemical evaluation of Si anode using bamboo charcoal and CNT mixed thin film
(Kanto-Gakuin U.) *Itakura Makoto, Yoshinaga Yusuke, Okiguti Riku, Hasegawa Kei, Tomono Kazuaki
Si anode
bamboo charcoal
Carbon nanotube
13-e14
10:06– 10:18D04Development of TiO2 nanoparticle mixed plastic decomposed in the environment by light irradiation
(Nat. Inst. Tech. or Nippon Inst. Tech. or NITechTC) *Shinoku Kota, *Kashimura Kazuaki, Shiroishi Hidenobu
TiO2 nanoparticle mixed plastic
polyethylene
UV irradiation
13-f87
10:18– 10:30D05Evaluation of liquid spray characteristics using air assist atomizer
(Tokyo U.Sci) *Sakamoto Ryotaro, Naya Masakazu, Matsukawa Hiroaki, Otake Katsuto, Shono Atsushi
Spray
Air assist atomizer
PIV
2-g112
10:30– 10:42D06Reaction mechanism analysis of polycrystalline SiC-CVD and process design for high-speed uniform growth
(U.Tokyo) *Oku T., Deura M., Momose T., Shimogaki Y.
Reaction model
SiC
CVD
5-h48
10:42– 10:50Break
Fluid & particle processing, Systems, information, and simulation technologies
(10:50–12:02) (Chair: No data , No data )
10:50– 11:02D08Observation of bubble generation and evaluation of bubble growth rate in alkaline water electrolysis
(Yokohama. Nat. U.) *Ikeda H., Kojima Y., Misumi R., Kaminoyama M., Mitsushima S.
Alkaline water Electrolysis
bubble growth rate
hydrogen
2-a74
11:02– 11:14D09Active approach to fault diagnosis of chemical process
(TUAT) *ishihara S., Yamashita Y.
fault diagnosis
active approach
auxiliary signal
6-b79
11:14– 11:26D10Model Study of the influence of phosphorus in the combustion ash on High Temperature Adhesion
(TUAT) *Ito Atsuki, Horiguchi genki, Fujii Ryosuke, (SANKI Eng.) Ito Masahiro, (TUAT) Okada yohei, Kamiya Hidehiro
Ash
Sewage sludge
Adhere
2-f114
11:26– 11:38D11Development of a numerical simulation code for curtain coating
(Saitama U.) *Chiba Kotaro, Chiba Takumi, Nakajima Ryota, Honma Syunji
Coating
Numerical Simulation
12-h110
11:38– 11:50D12Flow analysis of high viscosity fluid in tank and verification by torque and PIV measurement
(Yokohama Nat. U.) *Ogawa N., Misumi R., Kaminoyama M.
mixing
PIV
CFD
2-b11
11:50– 12:02D13Application of machine learning for the control of chemical process with dead time
(U.Noko) *Ohashi Y., Yamashita Y.
dead time
neural network
6-d93
12:02– 13:00Lunch break
Fluid & particle processing, Systems, information, and simulation technologies
(13:00–14:12) (Chair: No data , No data )
13:00– 13:12D19Validations of Revolving Rupture Angle and Repose Angle by DEM
(Yamagata U.) *Aita J., Kimata M.
angle of repose
rupture angle
DEM
2-f102
13:12– 13:24D20Recurrent Neural Networks for fault detection and diagnosis of chemical processes
(U.Noko) *Taosamaru M., Yamashita Y.
Chemical process
Fault detection and diagnosis
Neural Networks
6-d91
13:24– 13:36D21Capacitive deionization using a flow electrode system for lithium recovery
(U. Tokyo) *Nishimura Taku, Akiyama Daiki, Fujiwara Naoya, Tada Shohei, Kikuchi Ryuji
Capacitive deionization
Flow electrode
Lithium
2-e109
13:36– 13:48D22Suppression of re-entrainment of particles from HEPA filter media under a high loading condition
(Kogakuin U.) *Shimizu Yuri, Namiki Norikazu, Nakayama Ryoichi, (Nihon Muki) Bao Ri
HEPA filter
nuclear power plant
Double layer
2-g38
13:48– 14:00D23Time domain synchronization of the monitoring for batch chemical process
(U.Noko) *Matsumura T., Yamashita Y.
batch process monitoring
6-d92
14:00– 14:12D24Influence of the Injection Point on Mixing Performance with FULLZONE using CFD
(Chiba Inst. Tech.) *Oishi Mayuko, Sakata Keisuke, Nishi Kazuhiko
FULLZONE
Mixing Performance
CFD
2-b42
14:12– 14:20Break
Fluid & particle processing, Electronics
(14:20–15:20) (Chair: No data , No data )
14:20– 14:32D26Charge-discharge characterization of organic active species for aqueous redox flow battery
(Seikei U.) *Takahashi Masaru, (Seikie U.) Sugawara Kazuki, (Sekiei U.) Kato Shigeru, (Seikei U.) Suzuki seiichi
Redox flow battery
Organic active species
Coulomb efficiency
11-a104
14:32– 14:44D27Numerical simulations of droplet formation from an inkjet nozzle
(Saitama U.) *Kato Yuka, Yoshinuma Masaki, (Saiama U.) Homma Shunji
inkjet nozzle
droplet formation
VOF
2-a70
14:44– 14:56D28Change in electromotive force due to difference of salt bridge in Daniell cell
(Mito first H.S.) *Takada Y., Tsutsui Y.
Daniell cell
salt bridge
electromotive force
11-a52
14:56– 15:08D29Study on dynamic contact angle model for droplet impact simulations
(Saitama U.) *Murakami Kenta, Chiba Takumi, Homma Shunji
droplet impact
dynamic contact angle model
simulation
2-a65
15:08– 15:20D30Effect of excess lithium on the lithium-ion conductivity of garnet-type LLZ solid electrolytes
(Chuo U.) *Ohera Anna, Sakabe Junichi, Funazukuri Toshitaka, (NIMS) Ohta Narumi, Ohnishi Tsuyoshi
all-solid-state lithium ion batteries
garnet-type electrolytes
lithium-ion conductivity
11-a108
15:20– 15:32Break

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

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Most recent update: 2020-02-19 14:23:43
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