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SCEJ 81st Annual Meeting (2016)

Session programs

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Fluid & particle processing

B201-B209, B301-B309, B321-B324, D201-D209, K113-K125

Most recent update: 2016-02-26 18:17:04
Abstract is now open! Click Paper ID.
TimePaper
ID
Title / AuthorsKeywordsTopic codeAck.
number
Hall B, Day 2
(9:00–10:20) (Chair: Ishii Jun, Fukui Kunihiro)
9:009:20B201Development of Waste Plastics Gasification Technology On the effect of decomposition gas and catalyst to gasification
(JFESteel) *Momono Koichi, Ishii Jun, Murai Ryota, Sumi Ikuhiro
waste plastic
gasification
fluidized-bed gasifier
2-c619
9:209:40B202Development of the waste plastics gasification process using a fluidized bed
(JFE Steel) *Ishii Jun, Momono Koichi, Murai Ryota, Sumi Ikuhiro
Waste Plastics
Fluidized Bed
Gasification
2-c861
9:4010:00B203Limits of particle properties related to the defluidization casuded by gas switching in a fluidized catalyst bed
(Kagoshima U.) *Kai T., Wada S., Nakazato T.
fluidized bed
defluidization
gas switching
2-c618
10:0010:20B204Wet classification of submicron particles using electrophoresis
(Hiroshima U.) *Fukasawa T., Nomura K., Kawahaba K., Fukui K., Yoshida H.
electrophoresis
classification
particle
2-f951
(10:20–12:00) (Chair: Akashi Masatoshi, Ishihara Shingo)
10:2010:40B205Control of Electrostatic Charge on Particles by Atmospheric Pressure Low Temperature Plasma Jet
(Kyoto U.) *Matsusaka Shuji, Kitajima Shiro, Yasuda Masatoshi
Atmospheric pressure plasma jet
Electrostatic charge control
Particle
2-f308
10:4011:00B206Application of microwave heating to the denitration reactions of the metal nitrate mixed solution.
(Hiroshima U.) *Fukui K., Nakamura R., Huang A., Fukasawa T., Yoshida H.
Microwave
Denitration
Metal nitrate
2-f542
11:0011:20B207Infrastructure Development of Hydrogen Treatment System in Severe Accident -Study of Chemical Reaction in Hydrogen Treatment with Metal Oxides-
(Toshiba) *Yagyu Motoshige, Kittaka Daigo, Yoshii Toshihiro, Okamura Masato, Iwaki Chikako, Tanabe Masashi
hydrogen treatment
metal oxides
severe accident
2-f6
11:2011:40B208Unconfined compression strength of tamlbing granular by DEM simulation
(JAEA) *Akashi Masatoshi, Kato Masato, (Inspection Development Company) Tamura Tetsuya
DEM
tumbling granular
unconfined compression strength
2-f547
11:4012:00B209ADEM simulation of particle behavior in powder compacting process
(Tohoku U.) *Ishihara S., Kano J.
DEM
particle
compacting
2-f557
Hall B, Day 3
(9:00–10:40) (Chair: Nakayama Yasuya, Furukawa Haruki)
9:009:20B301Study on Temperature-Pressure Dependence of Shear Viscosity of Polymer Melts
(Hiroshima U.) *Kihara Shin-ichi, Tawasa Kuniaki, Haruki Masashi, Takishima Shigeki
Shear viscosity
Polymer melts
Adam-Gibbs theory
2-a685
9:209:40B302Rheological property of organogelator:cyclohexane carboxamido (HPMDA-R)
(Yamaguchi U.) *Kaide Aya, Oda Hiroko, Saeki Takashi, (Daicel) Sakanishi Yuichi
organogelator
rheology
oil
2-a529
9:4010:00B303Visualization of Aspirated food bolus using 3D swallowing simulator "Swallow Vision"
(Meiji) *Hanyu K., Kamiya T.
Moving Particle Simulation
swallowing
particle tracking
2-g549
10:0010:20B304Mixer-geometry induced flow pattern and distribution of the volumetric elongational flows
(Kyushu U.) *Nakayama Yasuya, (Unitika) Masaki Tatsunori, (Kyushu U.) Kajiwara Toshihisa
elongational flows
fluidics
2-a285
10:2010:40B305Continuous Mixing Technique for The Composite Solid Rocket Propellants
(SOKENDAI) *Iwasaki Akihiro, (Chuo U.) Yoshihama Shun, (JAXA) Matsumoto Kotaro, (Chuo U.) Yamada Yasuyuki, Nakamura Taro, (JAXA) Habu Hiroto
Mixing
Composite Solid Rocket Propellant
Peristaltic Pump
2-b663
(10:40–12:00) (Chair: Iwata Shuichi)
10:4011:00B306Elucidation of Thermodynamic Phases in a Thermal Convection by Entropy Production
(Osaka U.) *Ban Takahiko, Shigeta Keigo
Thermal Marangoni Effect
Entropy Production
Hydrothermal Waves
2-a503
11:0011:20B307Stability limit of thermocapullary flow in annular pools and flow patterns
(Kyushu U.) *Imaishi N., (RAS) Ermakov M., (Chongqing U.) Shi W. Y.
Thermocapillary flow
Flow instability
Hydrothermal waves
2-a582
11:2011:40B308Prediction of terminal rise velocity of single bubble based on energy balance between gas and liquid phases
(Yamaguchi U.) *Nakao K., (NIT Oshima) Furumoto K., (Yamaguchi U.) Yoshimoto M.
Single bubble
Terminal rise velocity
Energy balance
2-d139
11:4012:00B309Development of fine-bubble generator by positive control of pressure fluctuation in gas chamber
(Kagoshima U.) *Goshima Takashi, Fukudome Kenta, Mizuta Kei, Nii Susumu
fine-bubble generator
gas chamber
positive control of pressure fluctuation
2-d34
(15:40–17:00) (Chair: Ban Takahiko, Kanda Akihisa)
15:4016:00B321Visualization of Gas Flow in Low Vacuum Condition
(KANEKA) Shimizu Kazuhiro
Visualization
Gas Flow
Vacuum
2-g630
16:0016:20B322Evaporation of multiply charged nanodroplets generated by electrospray
(Kanazawa U.) *Higashi H., Nakamura N., Tamadate T., Mukai Y., Kumita M., Seto T., Otani Y., (RIKEN) Orii T.
evaporation
nanodroplet
oil
2-g664
16:2016:40B323Sensitivity analysis of diffusion coefficient used in turbulent flow simulation
(Sumitomo Chemical) *Tanaka S., Shimada N., Matoba Y., (Kobe U.) Tomiyama A.
concentration prediction
turbulent flow
diffusion coefficient
2-a52
16:4017:00B324Flow characteristics of Taylor-Couette flow with a thermal instability
(Kobe U.) *Masuda Hayato, Yoshida Saho, Horie Takafumi, Ohmura Naoto
Taylor-Couette flow
thermal instability
heat transfer
2-a710
Hall D, Day 2
(9:00–10:20) (Chair: Kamiya Tetsu, Kaide Aya)
9:009:20D201Torque variation analysis of rotationally reciprocating impeller using viscoelastic fluids
(Kobe U.) *Komoda Yoshiyuki, Tomimasu Fumito, Suzuki Hiroshi, Hidema Ruri
FFT
harmonic wave
relaxation time
2-b897
9:209:40D202Development of a quantitative evaluation method of mixing performance of static mixers
(Yamaguchi U.) *Saeki Takashi, Kurusu Takaaki, Kaide Aya, (Isel) Mochizuki Noboru
Static mixer
Flow visualization
Mixing evaluation
2-b400
9:4010:00D203Design for Multiphase Mixing Tank with Draft Tube Using Numerical Simulation
(SUMITOMO METAL MINING) *Nakakura S., Sasaki Y., Suganuma S.
Mixing
CFD
Simulation
2-b555
10:0010:20D204Computer Experiment of a Mixing Vessel by the Renormalization Molecular Dynamics Method
(SHI-PE) *Yajima T., (SHI) Hirose R., (SHI-PE) Horiguchi H., Esaki K., (SHI) Ichisima D.
Mixing
MAXBLEND Impeller
Molecular Dynamics
2-b67
(10:20–12:00) (Chair: Komoda Yoshiyuki, Yajima Takaaki)
10:2010:40D205Velocity vector field on mixing pattern change and its characteristics
(formerly Osaka U.) Inoue Yoshiro
mixing pattern
pattern velocity
streakline
2-b366
10:4011:00D206Dynamic formalization of mixing pattern diagram and golden ratio condition
(formerly Osaka U.) Inoue Yoshiro
mixing pattern
golden ratio
pattern dynamics
2-b368
11:0011:20D207Optimization with configuration of high shear rotor-stator mixer using CFD analysis
(Meiji) *Kamiya Tetsu, Hanyuu Keigo, Yoshida Tomofumi
Rotor stator mixer
CFD
Energy dissipation rate
2-b589
11:2011:40D208Preliminary evaluation of mixing devices using CFD analysis Part.1 Case study of mesh method(Finite volume method)
(Meiji) *Yoshida T., Kamiya T., Hanyuu K., (KKE) Awasaki T.
CFD analysis
mixing devices
Finite volume method
2-b806
11:4012:00D209Preliminary evaluation of mixing devices using CFD analysis Part.2 Case study of mesh less method(MPS method)
(Meiji) Kamiya Tetsu, *Yoshida Tomofumi
CFD
Moving Particle Simulation
Mixing
2-e588
Hall K, Day 1
(13:00–13:20) (Chair: Kajiwara Toshihisa)
13:0013:20K113[The SCEJ Award for Outstanding Research Achievement] Detailed elucidation of flow characteristics and mechanism of single bubbles and drops rising through viscous fluids
(Tokushima U.) Ohta Mitsuhiro
Bubble rise motion
Drop rise motion
CFD
2-e565
(13:20–15:20) (Chair: Ishihara Shingo)
13:2013:40K114Direct numerical simulation of the pressure spray
(Tohoku U.) *Soma T., Saito Y., Matsushita Y., Aoki H., (Hirosaki U.) Inamura T., (NIT Hachinohe) Daikoku M., (Honda Eng.) Fukuno J.
Volume of Fluid
Pressure spray
Atomization
2-e307
13:4014:00K115Visualization of the fragmented bubble flow supplied from a nozzle with the guide plate
(SUMITOMO METAL MINING) *Tsuchioka K., Maki K., Suganuma S., (Kyushu U.) Aramaki S.
bubble flow
gas nozzle
Gas-liquid stirring
2-b433
14:0014:20K116Numerical modeling of multiphase flow in oil spill
(Osaka U.) *Takagi Y., Ochi T., Sugiyama M., Okano Y., Kyaw W. P., Yamada A., Kato N.
Oil Spill
Multi Phase Flow
Numerical Simulation
2-e723
14:2014:40K117Effect of wettability of solid surface on particle-particle adhesion
(Osaka Pref. U.) *Kan Hiroyuki, Nakamura Hideya, Watano Satoru
wet granulation
dynamic liquid bridge
numerical simulation
2-e444
14:4015:00K118Understanding of the origin of collective motion in self-propelled particles systems
(Kyoto U.) *Oyama Norihiro, Molina John, Yamamoto Ryoichi
Squirmer Model
Collective Motion
Hydrodynamics
2-a244
15:0015:20K119Effect of time scale of the particles added to turbulent flow in a vertical channel
(Kitami Tech) Mito Y.
Gas-particle flow
Turbulence modulation
Time-scale effect
2-e592
(15:20–17:20) (Chair: Takagi Youhei, Shimada Naoki)
15:2015:40K120Lift force acting on a spherical liquid particle moving in a simple shear flow at low Re number I. Derivation of governing equations
(Kogakuin U.) Ueyama Korekazu
lift force
convection term
governing equation
2-e29
15:4016:00K121Lift force acting on a spherical liquid particle moving in a simple shear flow at low Re number II. General solutions
(Kogakuin U.) Ueyama Korekazu
lift force
convection term
general solution
2-e30
16:0016:20K122Lift force acting on a spherical liquid particle moving in a simple shear flow at low Re number III. Boundary conditions
(Kogakuin U.) Ueyama Korekazu
lift force
convection term
boundary condition
2-e31
16:2016:40K123Lift 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
(Kogakuin U.) Ueyama Korekazu
lift force
convection term
additional velocity and pressure
2-e32
16:4017:00K124Lift force acting on a spherical liquid particle moving in a simple shear flow at low Re number V. Lift force
(Kogakuin U.) Ueyama Korekazu
lift force
convection term
virtual force term
2-e33
17:0017:20K125Lift force acting on a spherical liquid particle moving in a simple shear flow at low Re number VI. Virtual force term
(Kogakuin U.) Ueyama K.
2-fluid model equation
interaction term
virtual force term
2-e341

Technical program
SCEJ 81st Annual Meeting (2016)

© 2016 The Society of Chemical Engineers, Japan. All rights reserved.
Most recent update: 2016-02-26 18:17:04
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E-mail: inquiry-81awww3.scej.org
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