Day 1 | |||||
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Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
SCEJ Branch & Headquaters joint program BP-1. <The Frontiers of CFD Focusing on Open Source Software> | |||||
(13:00–14:20) (Chair: Okano Y.) | |||||
R113 | [Invited lecture] OpenFOAM: current features and future perspectives (Open CAE Soc. Japan/OCAEL/U. Tokyo) Imano Masashi | OpenFOAM Open CAE | BP-1 | 1027 | |
R115 | [Invited lecture] OpenFOAM user trend in oversea Chemical/Material industries | OpenFOAM CAE Europa | BP-1 | 1028 | |
Flash presentation | |||||
R1P01 | HELYX system for practiacal use of OpenFOAMR | OpenFOAM Helyx GUI | BP-1 | 1029 | |
R1P02 | CAE university Education Program by the university-industry research collaboration for CFD engineers | Engineer education university-industry CFDengineer | BP-1 | 1030 | |
R1P03 | OpenFOAM founding project and its application for design process | OpenFOAM CAE design process | BP-1 | 1031 | |
R1P04 | New Pre-Post processor ennovaCFD | BP-1 | 1032 | ||
R1P05 | Multiphysics Simulation of Electrochemical Machining | COMSOL | BP-1 | 1033 | |
R1P06 | Pointwise ~The Future of Reliable CFD Meshing~,FieldView ~Comprehensive post-processing for computational fluid dynamics and CAE~ | Pointwise FieldView | BP-1 | 1034 | |
R1P07 | Cantera and CRUNCH CFD | cantera CRUNCH CFD | BP-1 | 1035 | |
R1P08 | An introduction of call for proposals of projects using the HPCI system for the fiscal year 2016 and the 3rd workshop of OpenFOAM on the K computer | BP-1 | 1036 | ||
R1P09 | Introduction of Open CAE system (DEXCS) to support the advancement of manufacturing | CAE DEXCS | BP-1 | 1037 | |
R1P10 | Social community developed by OpenCAE | OpenCAE | BP-1 | 1038 | |
R1P11 | Comparison of particle method with grid method | CFD Particle method (MPS) Grid method | BP-1 | 1039 | |
Poster presentation | |||||
R1P01 | HELYX system for practiacal use of OpenFOAMR | OpenFOAM Helyx GUI | BP-1 | 1029 | |
R1P02 | CAE university Education Program by the university-industry research collaboration for CFD engineers | Engineer education university-industry CFDengineer | BP-1 | 1030 | |
R1P03 | OpenFOAM founding project and its application for design process | OpenFOAM CAE design process | BP-1 | 1031 | |
R1P04 | New Pre-Post processor ennovaCFD | BP-1 | 1032 | ||
R1P05 | Multiphysics Simulation of Electrochemical Machining | COMSOL | BP-1 | 1033 | |
R1P06 | Pointwise ~The Future of Reliable CFD Meshing~,FieldView ~Comprehensive post-processing for computational fluid dynamics and CAE~ | Pointwise FieldView | BP-1 | 1034 | |
R1P07 | Cantera and CRUNCH CFD | cantera CRUNCH CFD | BP-1 | 1035 | |
R1P08 | An introduction of call for proposals of projects using the HPCI system for the fiscal year 2016 and the 3rd workshop of OpenFOAM on the K computer | BP-1 | 1036 | ||
R1P09 | Introduction of Open CAE system (DEXCS) to support the advancement of manufacturing | CAE DEXCS | BP-1 | 1037 | |
R1P10 | Social community developed by OpenCAE | OpenCAE | BP-1 | 1038 | |
R1P11 | Comparison of particle method with grid method | CFD Particle method (MPS) Grid method | BP-1 | 1039 | |
Day 2 | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
SCEJ Division Symposium SY-3. <Development from Phenomenon Analysis to Process Intensification Technique> | |||||
(9:00–9:40) (Chair: Matsumoto H.) | |||||
R201 | [Invited lecture] Efforts for Computer-Aided Process Engineering in the field of fluid dynamics | Computational fluid dynamics Visualization Validation and verification | SY-3 | 213 | |
(9:40–10:40) (Chair: Kawai H.) | |||||
R203 | Study of the operating conditions for periodic temperature cycling reaction | dynamic operation temperature cycling micro reactor | SY-3 | 509 | |
R204 | Process Intensification of Gas-Liquid-Solid Reaction in Slug Flow | slug flow catalyst mass transfer | SY-3 | 703 | |
R205 | Relationship between the performance and flow condition in the membrane module with a helical baffle | CFD Membrane Filtration Process Intensification | SY-3 | 318 | |
(10:40–11:40) (Chair: Yamaki T.) | |||||
R206 | Prediction an Effect of Partial Heating Parts by Using a Human Thermoregulation Model for Low Load Temperature Control in Cabin | Partial Heating Human Thermoregulation Model | SY-3 | 42 | |
R207 | Growth and Destruction of Photosynthetic Microorganism in a Bioreactor of Taylor Vortex Flow | Taylor vortex flow photosynthetic microorganism Spirulina platensis | SY-3 | 329 | |
R208 | Numerical simulation in Taylor-Couette flow at low aspect ratio | Taylor-Couette flow low aspect ratio numerical simulation | SY-3 | 811 | |
(13:00–13:40) (Chair: Horie T.) | |||||
R213 | [Invited lecture] Catalyst Design Based on Chemical Reaction Engineering -Effect of Crystal Size of Zeolite- | Catalyst Zeolite Thiele modulus | SY-3 | 959 | |
(13:40–15:00) (Chair: Sakurai M.) | |||||
R215 | kinetic analysis of the lignin degradation under ultrasonic irradiation | ultrasonic irradiation lignin kinetic analysis | SY-3 | 663 | |
R216 | Preparation of Emulsion by a Two-Step Emulsification Method and Application of Styrene Polymerization | Ultrasound Two-step emulsification method Polystyrene | SY-3 | 552 | |
R217 | Degradation of methylene blue using ultrasonic irradiation | Degradation Methylene blue Ultrasound | SY-3 | 916 | |
R218 | Development of packed bed photocatalytic reactor with miniaturized electrodeless lamp | photocatalytic reactor electrodeless lamp | SY-3 | 867 | |
(15:00–15:40) (Chair: Matsuda K.) | |||||
R219 | [Invited lecture] Developments of porous membranes and applications to process intensification | membrane separation process intensification | SY-3 | 135 | |
(15:40–17:00) (Chair: Kobayashi D.) | |||||
R221 | Consideration of mass transfer model of a packed distillation column based on equilibrium plate model simulation | Packed distillation column ideal plate model mass transfer model | SY-3 | 14 | |
R222 | Energy efficiency of adsorption - batch distillation hybrid system for IPA dehydration process | Hybrid system Energy efficiency Dehydration process | SY-3 | 784 | |
R223 | Preparation of the Porous TiO2 using AKD and their Fractal Properties | porous material fractal structure adsorption performance | SY-3 | 628 | |
R224 | Intensification of process system of sugarcane utilization based on analysis integrating agriculture and engineering | Biomass Modeling Agriculture | SY-3 | 763 |