東京大学生産技術研究所 長谷川研究室

Weitong LIU

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Weitong LIU(ウェイトン リュー)

東京大学生産技術研究所
日本学術振興会 特別研究員

居室: 駒場キャンパス 生産技術研究所 De棟201号室
E-mail:  weitong [at] iis.u-tokyo.ac.jp

趣味: ハイキング、卓球

English page is here.

ResearchMap: https://researchmap.jp/weitong.liu?lang=jp

経歴

2026年9月-現在
東京大学大学院 界面輸送工学研究室 日本学術振興会 特別研究員
2021年9月-2026年6月
Beihang University
2017年9月-2021年6月
Beihang University

研究テーマ

論文

  • [1] Liu, W., Xu, G., Gu, X., Yao, J., Li, M., Lei, M., Chen, Q.*, Fu, Y.*,
    “Experimental Analysis and Thermodynamic Modeling for Multilevel Heat Exchange System with Multifluid in Aero Engines”, Energy, 315, 134373, 2025. (ESI Highly Cited Paper)
  • [2] Liu, W., Xu, G., Gu, X., Liu, Y., Wang, J., Zhang, J., Fu, Y.*,
    “Synergistic Heat Recovery–Dissipation Architecture for Hydrogen Turbofans: Integrated Heat Current Modeling with Multi-Parameter Thermodynamic Analysis”, Energy, 338, 138735, 2025.
  • [3] Liu, W., Xu, G., Liu, Y., Gu, X., Wang, J., Zhang, J., Fu, Y.*,
    “From Design to Operation: Integrated Optimization of Intermediate Cycle Heat Exchange Systems for Aero Engines”, International Journal of Heat and Mass Transfer, 256, 127904, 2026.
  • [4] Liu, W., Xu, G., Fu, Y.*, Wen, J., Zhang, N.,
    “Numerical Investigation on Forced, Natural, and Mixed Convective Heat Transfer of N-Decane in Laminar Flow at Supercritical Pressures”, International Journal of Heat and Mass Transfer, 209, 124129, 2023.
  • [5] Fu, Y., Liu, W., Qi, H., Chen, Q., Wen, J., Xu, G.*,
    “Heat Transfer Area Optimization of Intermediate Heat-Exchange Cycle System for Aero Engines”, International Journal of Heat and Mass Transfer, 220, 124995, 2024. (Second author; primary contributing student author)
  • [6] Liu, W., Xu, G., Gang, X., Qi, H., Li, M., Wen, J., Fu, Y.*,
    “Theoretical Modeling, Experimental Validation, and Thermodynamic Analysis on Intermediate Heat-Exchange Cycle System”, International Communications in Heat and Mass Transfer, 156, 107635, 2024.
  • [7] Liu, W., Xu, G., Zhi, H., Wang, R., Li, M., Fu, Y.*,
    “Experimental Evaluation of Hydrothermal Performance in Airfoil-Fin PCHE with Supercritical Pressure Hydrocarbon Fuel”, International Communications in Heat and Mass Transfer, 159, 108279, 2024.
  • [8] Fu, Y., Liu, W., Wang, J., Zhang, L., Wen, J., Wu, H., Xu, G.*,
    “Experimental Investigation on Heat Transfer Enhancement of Supercritical Pressure Aviation Kerosene in Tubular Laminar Flow by Vibration”, Applied Thermal Engineering, 257, 124206, 2024.
  • [9] Fu, Y., Liu, W., Shi, S., Wang, R., Liu, Y., Xu, G.*,
    “Density Measurements of Aviation Kerosene RP-3 Over the Temperature Range From (323 to 783 K) Under Supercritical Pressures (6 to 8 MPa)”, Chinese Journal of Aeronautics, 38(7), 103474, 2025.
  • [10] Qi, H., Xu, G., Liu, W., Zhang, L., Fu, Y.*,
    “Flow and Heat Transfer Characteristics in Small Diameter Tube Bundles with A Staggered Layout: An Experimental Study”, Journal of Enhanced Heat Transfer, 31(5), pp. 33–52, 2024.
  • [11] Zhang, Z., Wu, Z.*, Luo, X., Liu, W.,
    “Numerical Study on Convective Heat Transfer of Liquid Metal Gallium in Turbine Guide Vane”, Aerospace, 10(6), 548, 2023.

国際学会発表

  • [1]Liu W., Zhi H., Qi H., Fu Y.*,
    “Experimental Insights into Thermal-Hydraulic Performance of A Compact Printed Circuit Heat Exchanger with Airfoil Fins Using High-Pressure Water”, International Conference on Micro/Nanoscale Heat Transfer (ASME MNHMT), 88155: V001T09A001, 2024.
  • [2]Liu W., Gu X., Liu Y., Wang J., Wang R., Fu Y.*,
    “Innovative Thermal Management for Liquid Hydrogen Aero Engines: A Comparison with Kerosene Systems”, 11th European Conference for Aerospace Sciences (EUCASS), 2025.
  • [3]Qi H., Liu W., Shi S., Gang X., Fu Y.*,
    “Analysis of A Compact Printed Circuit Heat Exchanger with Airfoil Fins in Aero Engine Cooling Systems: An Experimental Study”, International Gas Turbine Congress (IGTC), 2023.
  • [4]Wang R., Liu Y., Liu W., Fu Y.*,
    “Flow Method Measurement of Fluid Thermal Conductivity Based on Hot Wire”, 3rd Asian Conference on Thermal Sciences (ACTS), 2024.