• A
  • A
  • A
日本語 Help
Science and technology information site for articles, patents, researchers information, etc.

Co-authoring Researcher

Co-inventing Researcher

Researcher similar to the Researcher

Article similar to the Researcher

Patent similar to the Researcher

Research Project similar to the Researcher

Article(J-GLOBAL estimation)

Patent(J-GLOBAL estimation)

Rchr
J-GLOBAL ID:201701008245060353   Update date: Apr. 18, 2025

Inokuma Kento

Inokuma Kento
Clips
Affiliation and department:
Job title: Specially Appointed Assistant Professor
Research field  (3): Fluid engineering ,  Thermal engineering ,  Aerospace engineering
Research keywords  (7): Fluid dynamics ,  Shock wave ,  Turbulence ,  Heat transfer ,  Sonic boom ,  Gas turbine ,  Reentry Capsule
Research theme for competitive and other funds  (3):
  • 2022 - 2025 弱い衝撃波による乱流促進を利用したガスタービン翼後縁部フィルム冷却総合性能の向上
  • 2018 - 2021 ソニックブーム波形予測に向けた乱流と衝撃波の干渉に関する風洞実験
  • 2017 - 国際会議(Turbulent Mixing and Beyond)にて研究発表および情報収集
Papers (21):
  • T. Yamamoto, A. Murata, K. Inokuma, K. Iwamoto. POD analysis of turbulent convective heat transfer of pulsating flow in a channel with teardrop-shaped dimples using LES. Applied Thermal Engineering. 2025. 124875
  • T. Yamamoto, A. Murata, K. Inokuma, K. Iwamoto. Heat transfer augmentation due to flow pulsation in a channel with teardrop-shaped dimples investigated by large eddy simulation. International Journal of Heat and Fluid Flow. 2024. 110. 109579
  • S. Kobayashi, K. Inokuma, A. Murata, K. Iwamoto. Effects of flow pulsation and surface geometry on heat transfer performance in a channel with teardrop-shaped dimples measured by transient technique. ASME Journal of Heat and Mass Transfer. 2024. 146. 7. 072001
  • K. Inokuma, Y. Yawata, A. Murata, K. Iwamoto. Effects of flow pulsation and surface geometry on heat transfer performance in a channel with teardrop-shaped dimples investigated by large eddy simulation. ASME Journal of Heat and Mass Transfer. 2024. 146. 6. 061801
  • K. Inokuma, A. Murata, S. Nakamura, K. Iwamoto. Experimental study of pulsating film cooling flow over cutback surface with teardrop-shaped dimples at trailing edge of gas-turbine airfoil. Proc. of International Gas Turbine Congress 2023. 2023. IGTC-2023-028
more...
Lectures and oral presentations  (39):
  • Numerical simulations on aerodynamic heating and flow characteristics of hypersonic Apollo-shaped capsule induced by boundary-layer trip
    (11th International Symposium on Turbulence, Heat and Mass Transfer 2025)
  • Integration of TI-BOS method and PIV for simultaneous measurement of low-speed flow dynamics
    (16th International Symposium on Particle Image Velocimetry 2025)
  • 極超音速Apollo型カプセル周りの流れ場における表面trip敷設の影響に関するRANS解析
    (2024年度衝撃波シンポジウム 2025)
  • ティアドロップディンプル面形状多目的最適化結果の過渡応答法伝熱計測による検証
    (日本機械学会 関東支部 第31期総会・講演会 2025)
  • 流体・固体熱連成解析によるLatticework 冷却流路形状の多目的最適化
    (日本機械学会 関東支部 第31期総会・講演会 2025)
more...
Education (3):
  • 2018 - 2020 Nagoya University Graduate School of Engineering Aerospace Engineering (Doctoral Course)
  • 2016 - 2018 Nagoya University Graduate School of Engineering Aerospace Engineering (Master's Course)
  • 2012 - 2016 Nagoya University School of Engineering Mechanical and Aerospace Engineering
Professional career (1):
  • D. Eng. (Nagoya University)
Work history (5):
  • 2025/04 - 現在 Tohoku University Institute of Fluid Science Specially Appinted Assistant Professor
  • 2024/11 - 2025/03 Tohoku University Institute of Fluid Science Specially Appointed Research Fellow
  • 2020/11 - 2024/10 Tokyo University of Agriculture and Technology Graduate School of Engineering Assistant Professor
  • 2020/04 - 2020/10 Nagoya University Graduate School of Engineering Research Fellow of the Japan Society for the Promotion of Science PD
  • 2018/04 - 2020/03 Nagoya University Graduate School of Engineering Research Fellow of the Japan Society for the Promotion of Science DC1
Committee career (1):
  • 2023 - Annual Meeting of the Japan Society of Fluid Dynamics, 2023 Executive Committee
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page