Researchers
- GOIT Jay Prakash
- Lecturer
Faculty | Department of Mechanical Engineering / Fundamental Technology for Next Generation Research Institute |
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Researchmap | https://researchmap.jp/jaygoit |
Education and Career
Education
- 2005/04 - 2009/03 , Tohoku University, School of Engineering,
- 2009/04 - 2010/09 , Tohoku University, Graduate School of Engineering,
- 2010/10 - 2015/03 , KU Leuven, Faculty of Engineering Science,
Academic & Professional Experience
- Apr. 2021 - Today , Kindai University Faculty of Engineering Department of Mechanical Engineering Lecturer
- Apr. 2019 - Mar. 2021 , Kindai University School of Engineering, Department of Mechanical Engineering Assistant Professor
- Nov. 2018 - Mar. 2019 , National Institute of Advanced Industrial Science and Technology (AIST) Fukushima Renewable Energy Institute (FREA) Researcher
- Apr. 2017 - Oct. 2018 , The University of Tokyo Civil Engineering Project Assistant Professor
- May. 2016 - Mar. 2017 , The University of Tokyo Civil Engineering Project Researcher
- Apr. 2015 - Mar. 2016 , Hitachi, Ltd Research & Development Research Engineer
Research Activities
Research Areas
- Manufacturing technology (mechanical, electrical/electronic, chemical engineering), Fluid engineering
Research Interests
Wind Energy, Computational Fluid Dynamics, Turbulence, Fluid Mechanics
Published Papers
-
The Effect of Wind Turbine Sitting on the Power Output and Flow Fields of Offshore Wind Farms
Jay Prakash Goi; Asim Önder
Journal of Japan Wind Energy Association 47 (2) , 29-35, Aug. 2023 , Refereed -
The effect of coastal terrain on nearshore offshore wind farms: A large-eddy simulation study
Jay Prakash Goit; Asim Önder
Journal of Renewable and Sustainable Energy 14 (4) , 043304-043304, Aug. 2022 , Refereed -
Effect of averaging time windows on wind resource assessment of small wind turbines
Jay Prakash Goit; Masakage Taguchi; Junya Tatsuno; Takatsugu Kameda
Wind Energy 25 (7) , 1-16, Mar. 2022 , Refereed
Conference Activities & Talks
- Reproducibility of the internal boundary layer over nearshore waters using LES , Taiga Manabe; Teruo Ohsawa; Jay Prakash Goi; Mizuki Konagaya; Kohei Hamada; Ryuzo Araki , 45th Wind Energy Symposium of Japan Wind Energy Association , 1, Dec. 2023
- Effect of Nacelle Shape on the Flow Fields of Upwind and Downwind Wind Turbines , Jay Prakash Goi; Takatsugu Kameda , International Conference on Green Energy Computing and Intelligent Technology , 11, Jul. 2023
- Effect of three-dimensional roughness to mean velocity profile for a two-dimensional turbulent channel flow , Hiroki Sunakawa; Takatsugu Kameda; Jay Prakash Goi , 61st JSME Chugoku Shikoku Meeting , 3, Mar. 2023
MISC
- 小型風力発電システムを対象とした風況解析手法 , Jay Prakash Goit; 田口 誠景; 樹野 淳也 , 日本風力エネルギー学会 特集:風力エネルギーの基礎―小型風車開発 , 45 , 137 , 52 , 55 , Jun. 2021
- A method for the design of a scaled wind turbine for wind tunnel experiments , Jay Prakash Goit , Kindai University Fundamental Technology for Next Generation Research Institute Annual Report , 11 , 75 , 79 , 1, Jul. 2020
- A method of estimating averaging time wind resource assessment for small wind turbines , 田口誠景; GOIT Jay Prakash; 樹野淳也 , 風力エネルギー利用シンポジウム , 42nd (CD-ROM) , 2020
Patents
- ウィンドファームおよびウィンドファームの制御方法 , ジェイ プラカシュ ゴイト, 楠野順弘
Awards & Honors
- Nov. 2023, Japan Wind Energy Association, 2023 Japan Wind Energy Association Research Award
- Jul. 2023, International Conference of Green Energy Computing and Intelligent Technology (GEN-CITY), Malaysia, Best Paper Award
Research Grants & Projects
- Japan Society for the Promotion of Science Grants-in-Aid for Scientific Research, Grant-in-Aid for Scientific Research (C), Development of a wind turbine layout optimization framework based on the interaction between offshore wind farm and atmospheric boundary layer , Kindai Univesity
- Takahashi Industrial and Economic Research Foundation, Research Fund, Aerodynamic optimization of extremely large downwind turbine for offshore application , Kindai Univesity
- Amano Institute of Technology, Research Grant, Improvement of scanning Doppler LiDAR-based wind field measurement technology using large-eddy simulation , Kindai Univesity