Rchr
J-GLOBAL ID:200901000653517619   Update date: Jun. 20, 2024

Ogura Hironao

オグラ ヒロナオ | Ogura Hironao
Affiliation and department:
Job title: Professor
Homepage URL  (1): https://oguralab2.wixsite.com/website
Research field  (1): Earth resource engineering, energy science
Research keywords  (1): Thermal Energy, Energy Savings, Sustainability, Environmental Engineering, Chemical Engineering, Chemical Heat Pump, Heat Storage, Drying, City Engineering, Indoor Environment
Research theme for competitive and other funds  (10):
  • 2020 - 2023 未利用熱駆動ケミカルヒートポンプ実用化のための溶液開発に着目した高効率化の検討
  • 2017 - 2020 System Construction of Refrigeration, Air-conditioning, Hot-water-supply by Stand-alone Solar Chemical Heat Pump
  • 2013 - 2016 Air-Conditioning System by Chemical Heat Pump Driven only by Solar Energy
  • 2009 - 2011 Planning Tool and Systems for Low Carbon Development
  • 2005 - 2007 Development of Fluid Devices for Soft Machine by the Use of Electro-sensitive Fluids
Show all
Papers (59):
  • Yawen Ren, Hironao Ogura. Feasibility study with EnergyPlus simulation for solar chemical heat pump unit introduced into building as next-generation energy supply system. Energy and Buildings. 2024. 313. 114256
  • Yuji Hirose, Kurumi Watanabe, Yuka Hirano, Hironao Ogura. Studies on Flow of Latent/Sensible Heat Exchange Medium Composed of Erythritol and Silicone Oil for Improvement of Heat Transportation Efficiency. KAGAKU KOGAKU RONBUNSHU. 2024. 50. 3. 65-70
  • Yawen Ren, Hironao Ogura. Dynamic Simulations on Enhanced Heat Recovery Using Heat Exchange PCM Fluid for Solar Collector. Energies. 2023. 16. 7. 3075-3075
  • Hironari Sakamoto, Shigehisa Uchiyama, Ayana Sato, Tomohiko Isobe, Naoki Kunugita, Hironao Ogura, Shoji F. Nakayama. Health Risk Assessment Based on Exposure to Chemicals in Air. International Journal of Environmental Research and Public Health. 2022. 19. 23. 15813-15813
  • Yawen REN, Hironao OGURA. Numerical investigation on performance improvement of CaSO4 solar chemical heat pump. Journal of Thermal Science and Technology. 2022. 17. 2
more...
MISC (4):
  • 小倉裕直. エネルギー再生利用のための化学蓄熱/ケミカルヒートポンプ反応材としての無機マテリアルの可能性. 無機マテリアル学会誌. 2019. 26. 398. 24-37
  • Heating/Cooling/Dehumidifying Chemical Heat Pump System Driven by Waste Heat. 2015. 79. 9. 679-681
  • OGURA Hironao. Chemical Heat Storage Materials and Chemical Heat Pumps. 2010. 85. 994. 635-639
  • OGURA Hironao. Effective Thermal Energy Utilization by Chemical Heat Pump. Journal of the Heat Transfar Society of Japan. 2000. 39. 156. 15-17
Patents (41):
Books (2):
  • 熱駆動サイクル技術の基礎と応用
    日本工業出版・日本冷凍空調学会 2023 ISBN:9784819035057
  • 次世代自動車の熱マネジメント
    技術情報協会 2020 ISBN:9784861048197
Lectures and oral presentations  (36):
  • Formation mechanism of carbonyl compounds generated from E-cigarettes
    (2023 Meeting of the Society of Indoor Environment, Japan 2023)
  • Long-term monitoring of gaseous chemical compounds in indoor air by diffusive samplers
    (2023 Meeting of the Society of Indoor Environment, Japan 2023)
  • Viscosity and Thermal Insulating Characteristics of Shaking Gels with 18nm Nanosilica
    (71st meeting of The Society of Rheology, Japan 2023)
  • trans-1,2-ビス(2-ピリジル)エチレンと2,4-ジニトロフェニルヒドラジンを用いた拡散サンプラーによる空気中オゾン,カルボニル化合物の長期間同時分析
    (日本分析化学会第72年会 2023)
  • Determination of Carbonyl compounds Generated from E-cigarettes
    (72nd Annual Meeting of the Japan Society for Analytical Chemistry 2023)
more...
Education (2):
  • - 1993 Nagoya University Ph.D. in Chemical Engineering, Graduate School of Engineering
  • - 1988 Nagoya University BS in Chemical Engineering
Professional career (1):
  • Ph.D. (Nagoya University)
Work history (4):
  • 2009/04 - 現在 Chiba University Graduate School of Engineering Professor
  • 2002/04 - Chiba University Faculty of Engineering Associate Professor
  • 1998/04 - McGill University (Canada) Department of Chemical Engineering Visiting Professor
  • 1993/04 - Kyushu Institute of Technology Faculty of Engineering Assistant Professor
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page