Researchers

GOIT Jay Prakash

GOIT Jay Prakash
Lecturer
Faculty Department of Mechanical Engineering / Fundamental Technology for Next Generation Research Institute
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

  1. 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
  2. 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
  3. 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

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Conference Activities & Talks

  1. 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
  2. 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
  3. 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

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MISC

  1. 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
  2. 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
  3. 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

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Patents

  1. 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

  1. Nov. 2023, Japan Wind Energy Association, 2023 Japan Wind Energy Association Research Award
  2. Jul. 2023, International Conference of Green Energy Computing and Intelligent Technology (GEN-CITY), Malaysia, Best Paper Award

Research Grants & Projects

  1. 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
  2. Takahashi Industrial and Economic Research Foundation, Research Fund, Aerodynamic optimization of extremely large downwind turbine for offshore application , Kindai Univesity
  3. Amano Institute of Technology, Research Grant, Improvement of scanning Doppler LiDAR-based wind field measurement technology using large-eddy simulation , Kindai Univesity

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