Updated on 2026/07/25

写真a

 
Takuya Hongo
 

Degree

  • Doctor of Engineering   Coursework ( 2001.4   Tokyo Institute of Technology )

Research Interests

  • Thermal management

  • Phase change

  • Multiphase / multicomponent flows

  • Heat transport

  • Refrigeration cycle

Research Areas

  • Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Thermal engineering

  • Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Fluid engineering

Education

  • Tokyo University of Science   Graduated

    1992.4 - 1996.3

  • Tokyo Institute of Technology   Master's Course   Graduated

    1996.4 - 1998.3

  • Tokyo Institute of Technology   Doctor's Course   Graduated

    1998.4 - 2001.3

Research History

  • Fukui University of Technology   Faculty of Engineering Department of Mechanical Engineering   Professor

    2026.4

Qualification acquired

  • Organic Solvent Work Chief Person

  • Specified Chemical Substances Work Chief

  • Health Supervisor (first kind)

 

Papers

  • Study on the flow and heat transport characteristics of concentric-tube two-phase thermosyphon Invited Reviewed

    Takuya HONGO, Yuki MIYACHI, Rei KIMURA, Hideki HORIE, Tomonao TAKAMATSU, Chikako IWAKI

    Mechanical Engineering Journal,   7 ( 3 )   19-00578   2020.2

  • A novel CT-FFR method for the coronary artery based on 4D-CT image analysis and structural and fluid analysis Reviewed

    K. Hirohata, A. Kano, A. Goryu, J. Ooga, T. Hongo, S. Higashi, Y. Fujisawa, S. Wakai, K. Arakita, Y. Ikeda, S. Kaminaga, B. S. Ko, S. K. Seneviratne

    Proc. SPIE 9412, Medical Imaging 2015: Physics of Medical Imaging, 94122O   1 - 15   2015.3

  • Feasibility and Performance of Magnetic Thermosyphon with Magnetic Fluid in Non-Gravity Field Reviewed

    Takuya Hongo, Minoru Takahashi

    43 ( 4 )   686 - 693   2000.11

Presentations

  • STUDY ON THE FLOW AND HEAT TRANSPORT CHARACTERISTICS OF CONCENTRIC TUBE TWO-PHASE THERMOSYPHON

    Proc. Int. Conf. Nuclear Engineering (ICONE)  2019.5