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J-GLOBAL ID:200901095404782613   Update date: Nov. 26, 2023

TARO IMAMURA

イマムラ タロウ | TARO IMAMURA
Affiliation and department:
Job title: Professor
Homepage URL  (1): http://park.itc.u-tokyo.ac.jp/rinoielab/welcome/
Research field  (2): Aerospace engineering ,  Fluid engineering
Research keywords  (4): 航空機設計 ,  数値流体力学 ,  空力騒音 ,  Morphing Airfoil
Research theme for competitive and other funds  (13):
  • 2017 - 2021 機械学習法を活用した自律型翼型失速回避制御システムの構築
  • 2018 - 2020 Research on Novel Morphing Airfoil using Aerodynamics Force Passively and Positively
  • 2018 - 2020 空気力を受動的かつ積極的に利用する新しいモーフィング翼型の研究
  • 2015 - 2019 Development of Compressible Flow Solver using Hierarchical Cartesian Grid Method for Aerodynamic and Aeroacoustic Simulations
  • 2013 - 2018 Development of Advanced Airfoil Stall Suppression System Utilizing Smart Sensor
Show all
Papers (65):
  • Shuji Ochi, Shoko Kai, Kohei Takase, Kensuke Soneda, Taro Imamura, Kenichi Rinoie, Tomohiro Yokozeki. Aeroelastic Simulation and Experimental Validation of the 3D-printed Passive Morphing Airfoil. AIAA SCITECH 2023 Forum. 2023
  • Kensuke Soneda, Tomohiro Yokozeki, Taro Imamura, Natsuki Tsushima. Multifidelity Aeroelastic Model for Corrugated Morphing Structures. JOURNAL OF AIRCRAFT. 2023. 60. 1. 120-129
  • Shoko Kai, Shogo Takazawa, Shuji Ochi, Taro Imamura, Tomohiro Yokozeki, Kenichi Rinoie. Low-Speed Wind Tunnel Testing of a Passive Camber Morphing Airfoil Using a 3D-Printed Compliant Mechanism. Lecture Notes in Electrical Engineering. 2023. 912. 1019-1030
  • Kensuke Soneda, Natsuki Tsushima, Tomohiro Yokozeki, Taro Imamura. Aeroservoelastic Characteristics of a Corrugated Morphing Control Surface. INTERNATIONAL JOURNAL OF AERONAUTICAL AND SPACE SCIENCES. 2022. 23. 4. 723-733
  • Hiroki Ishibashi, Taro Imamura, Kenichi Rinoie. Estimation Method for Pitching Moment Non-linearities of Cranked Arrow Wing at Low Speed. International Journal of Aeronautical and Space Sciences. 2022. 23. 4. 680-691
more...
MISC (127):
  • Soneda Kensuke, Yokozeki Tomohiro, Imamura Taro, Tsushima Natsuki. Multi-fidelity Aeroelastic Simulation of a Morphing Wing Trailing Edge. AIAA Conference Proceedings / Meeting Papers. 2021. 2021. AIAA Scitech 2021 Forum
  • 船田雅也, 今村太郎. Multi-Objective Aerodynamic Optimization and Design Information Extraction for Multi-Slotted Variable-Camber Morphing Wing Using Kriging Method / Aerospace Numerical Simulation Symposium. 流体力学講演会/航空宇宙数値シミュレーション技術シンポジウム講演集(CD-ROM). 2021. 53rd-39th
  • Tsushima Natsuki, Arizono Hitoshi, Soneda Kensuke, Yokozeki Tomohiro, Imamura Taro, Su Weihua. Structural and Aerodynamic Models for Aeroelastic Analysis of Corrugated Morphing Wings. AIAA Conference Proceedings / Meeting Papers. 2020. AIAA 2020-0215
  • 曽根田健輔, 横関智弘, 今村太郎, 津島夏輝. Aeroelastic analysis of corrugated morphing wing for drag reduction. 構造強度に関する講演会講演集. 2020. 62nd
  • 曽根田健輔, 横関智弘, 今村太郎, 津島夏輝. Study of aeroelastic models of trailing edge morphing wings. 飛行機シンポジウム講演集(CD-ROM). 2020. 58th
more...
Books (2):
  • 第46期年会講演会開催報告(トピックス)
    一般社団法人 日本航空宇宙学会 2015
  • NASA Langley研究所(<連載>グローバルAERO 海外空力機関訪問・滞在レポート 第3回)
    一般社団法人日本航空宇宙学会 2013
Lectures and oral presentations  (225):
  • Multi-fidelity Aeroelastic Simulation of a Morphing Wing Trailing Edge
    (AIAA SCITECH 2021 2021)
  • Application of Wall-modeled Large-eddy Simulation based on Lattice Boltzmann Method to External Flow Analyses
    (AIAA SCITECH 2021 2021)
  • Unsteady Flow Simulation using the Immersed Boundary Method on the Cartesian Grid with Moving Grid Technique
    (AIAA SCITECH 2021 2021)
  • Aero-structural analysis of corrugated morphing wing with spanwise camber change
    (AIAA SCITECH 2020 2020)
  • Unsteady turbulent flow simulation using lattice boltzmann method with near-wall modeling
    (AIAA AVIATION 2020 2020)
more...
Professional career (1):
  • 博士(工学) (東京大学)
Committee career (1):
  • 2020/04 - 現在 日本航空宇宙学会 庶務理事(広報担当)
Awards (3):
  • 2011/07 - 航空宇宙数値シミュレーション技術シンポジウム2011最優秀論文賞
  • 2008/07 - 航空宇宙数値シミュレーション技術シンポジウム2008最優秀論文賞
  • 2006/12 - 第20回数値流体力学シンポジウム ベストCFDグラフィックスアワード優秀賞
Association Membership(s) (4):
AIAA ,  THE JAPAN SOCIETY OF MECHANICAL ENGINEERS ,  THE JAPAN SOCIETY AERONAUTICAL AND SPACE SCIENCES ,  The Japan Society of Fluid Mechanics
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