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J-GLOBAL ID:200901006109468874   Update date: Jan. 31, 2024

Watanabe Takashi

ワタナベ タカシ | Watanabe Takashi
Affiliation and department:
Job title: Professor
Homepage URL  (2): http://www.is.nagoya-u.ac.jp/dep-cs/vi/private_page/watanabe/index.htmlhttp://www.is.nagoya-u.ac.jp/dep-cs/vi/private_page/watanabe/index-e.html
Research field  (3): Computational science ,  Intelligent informatics ,  Fluid engineering
Research keywords  (7): Statistics ,  Probability Theory ,  Fluid Informatics ,  Fluid Engineering ,  Knowledge Informatics ,  Computer Science ,  Computational Fluid Dynamics
Research theme for competitive and other funds  (14):
  • 2017 - 2020 Elucidation of lubrication phenomena involving additives by multiscale simulations and QCM measurements
  • 2015 - 2018 Investigation of mode conpetition phenomena in rotating flows
  • 2011 - 2013 Investigation and control of the flow status in the rotating flow field with rigid and free surfaces
  • 2008 - 2010 Control and extraction of flow development scenario in the rotating flow field
  • 2008 - 2010 Development of active control system for self-sustained oscillating flows over cavity by direct numerical simulation.
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Papers (151):
  • T. Watanabe. mode and torque of flows around a rotating disk in a cylindrical casing. Materials Science and Engineering. 2019. 501. 012058: 1-11
  • T. Watanabe. verification of solutions of equations voverning fluid flows. Materials Science and Engineering. 2019. 501. 012039: 1-6
  • Takashi Watanabe, Soma Endo. Flows developing around a finite rotating disk enclosed by a cylindrical casing. IOP Conference Series: Materials Science and Engineering. 2018. 297. 1. 012066: 1-10
  • PIV measurement and numerical analysis of diverse flows between co-rotating disks in casing. 2017. 45. 2. 91-99-99
  • T. Yoshida, T. Watanabe. Numerical simulation of flow over an open cavity with self-sustained-oscillation mode switching. Open Journal of Fluid Dynamics. 2016. 6. 361-370
more...
MISC (161):
  • Takashi Watanabe, Soma Endo. Flows developing around a finite rotating disk enclosed by a cylindrical casing. IOP Conference Series: Materials Science and Engineering. 2018. 297. 1. 012066: 1-10
  • PIV measurement and numerical analysis of diverse flows between co-rotating disks in casing. 2017. 45. 2. 91-99-99
  • T. Yoshida, T. Watanabe. Numerical simulation of flow over an open cavity with self-sustained-oscillation mode switching. Open Journal of Fluid Dynamics. 2016. 6. 361-370
  • TOYA Yorinobu, OOI Nobutaka, WATANABE Takashi. Wave phenomena of an immiscible liquid-liquid interface circulating between rotating cylinders. Transactions of the JSME (in Japanese). 2016. 82. 835. 1-13-00621-15-00621
  • T. Watanabe, H. Furukawa, S. Fujisawa, S. Endo. Effect of Axial Clearance on the Flow Structure around a Rotating Disk Enclosed in a Cylindrical Casing. Journal of Flow Control, Measurement & Visualization. 2016. 4. 1-12
more...
Lectures and oral presentations  (46):
  • development and decay of flows between vertical rotating two cylinders with free surface
    (The 30th International Symposium on Transport Phenomena 2019)
  • numerical analysis of critical Reynolds number of wavy Taylor vortex flow with chaning aspect ratio
    (The 30th International Symposium on Transport Phenomena 2019)
  • on diverse flows in narrow spacing between co-rotating disks in casing
    (The 7th Asian Symposium on Computational Heat Transfer and Fluid Flow 2019)
  • 時系列深層学習と一般物体認識ネットワークを用いた物体追跡
    (第18回情報科学技術フォーラム 2019)
  • stability of vortices appearing and developing on a rotating body
    (8-th International Symposium on Bifurcations and INstabilities in Fluid Dynamics 2019)
more...
Professional career (1):
  • 工学博士 (名古屋大学)
Work history (3):
  • 2017/04/01 - 現在 Nagoya University Graduate School of Informatics Department of Complex Systems Science 5 Professor
  • 2009/04/01 - 2017/03/31 Nagoya University Graduate School of Information Science Department of Complex Systems Science Professor
  • 2004/04/01 - 2009/03/31 Nagoya University EcoTopia Science Institute Information and Communications Science Research Division Professor
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