Shinji Hasebe
Kyoto University, Japan
Professor,
PSE Lab., Department of Chemical Engineering
PSE Lab., Department of Chemical Engineering
Message
From Micro-Chemical Plants to Global Environmental ProblemsProcess Systems Engineering (PSE) is a research area where the systematic methodologies for realizing innovative production systems are investigated.
Our group covers all aspects of design, operation, control, planning, and logistics for process industries.
Office
Room 124, A4 building, Katsura CampusTel: +81 75 383 2667
Fax: +81 75 383 2657
e-mail:
Address
Department of Chemical EngineeringKyoto University, Katsura Campus
Nishikyo-ku, Kyoto 615-8510
Japan
1984, Doctor of Engineering, Kyoto University
1978, Master of Engineering, Kyoto University
1976, Bachelor of Engineering, Kyoto University
Academic Employment
2003- Professor
Department of Chemical Engineering, Kyoto University
1993-2003. Associate Professor
Department of Chemical Engineering, Kyoto University
1989-1993. Lecturer
Department of Chemical Engineering, Kyoto University
1981-1989. Instructor
Department of Chemical Engineering, Kyoto University
Professional Membership
Member, The American Institute of Chemical Engineers
Member, The Society of Chemical Engineers, Japan
Board Member (2009.3 - )
Chairman of Division of Systems, Information and Simulation Technologies (2008.4 - 2010.3)
Member, The Institute of Systems, Control and Information Engineers (Japan)
Board Member (2008.5 - )
Member, The Operations Research Society of Japan
Member, The Society of Instrument and Control Engineers
Member, Society for Chemistry and Micro-Nano Systems, Japan
Member of Scheduling Society of Japan
President (2008.9 - )
Research Topics
Scheduling and Supply Chain Management
Synthesis of Ecological Processes
Synthesis of Distillation Systems for Energy Conservation
Optimal Design and Operation of Micro Chemical Plants
Dynamic Optimization of Chemical Processes
Research Topics
Scheduling and Supply Chain Management
- Modeling of global SCM problem
- Production planning under uncertainties
Synthesis of Ecological Processes
- Synthesis of sequential use system of waste materials
- Synthesis of biomass supply chain
Synthesis of Distillation Systems for Energy Conservation
- Design and control of internally heat-integrated distillation column
- Synthesis of heat-integrated distillation system
Optimal Design and Operation of Micro Chemical Plants
- Development of shape optimization method of micro devices
- Fault detection of numbering-up process
Dynamic Optimization of Chemical Processes (inactive)
- Dynamic optimization of SOFC start-up operation
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