Rchr
J-GLOBAL ID:200901086468295474   Update date: Jan. 15, 2020

IIDA Oaki

イイダ オアキ | IIDA Oaki
Affiliation and department:
Job title: Associate Professor
Homepage URL  (1): http://carnot.web.nitech.ac.jp
Research field  (2): Fluid engineering ,  Thermal engineering
Research theme for competitive and other funds  (3):
  • 1995 - Rotating and/or stratified turbulence
  • 1995 - Vortical structure in near-wall turbulence
  • 1995 - Turbulent vortical structure in homogeneous shear flow
Papers (44):
  • Oaki IIDA, Nobuhide KASAGI. Redistribution of Reynolds stresses and destruction of theturbulent heat flux in homogeneous decaying turbulence. Proceedings of 9th Symposium on Turbulent Shear Flows,Vol. 3, August, 1993, Kyoto, JAPAN. 1993. 24.4.1-24.4.6
  • Oaki IIDA, Nobuhide Kasagi. Direct numerical simulation of homogeneous isotropic turbulnece with heat transfer. JSME Journal (B) (in Japanease). 1993. 59. 567. 3359-3364
  • Oaki IIDA, Nobuhide Kasagi. Direct numerical simulation of decaying homogeneous anisotropic turbulence with heat transfer. JSME Journal (B) (in Japanease). 1994. 60. 576. 2708-2715
  • Nobuhide KASAGI, Yuji SUMITANI, Yuji SUZUKI, Oaki IIDA. Kinematics of the quasi-coherent vortical structure in near-wall turbulence. International Journal of Heat and Fluid Flow. 1995. 16. 2-10
  • Oaki IIDA, Nobuhide KASAGI. Turbulent structures in the horizontal channel flow under unstable density stratification. Proceedings of the IUTAM Symposium on Variable Density Low Speed Turbulent Flows, July 1996, Marseille, France. 1996. 189-196
more...
Lectures and oral presentations  (20):
  • 再層流化過程にあるポアズイユ乱流の非対称性とエネルギー輸送
    (第46回日本伝熱シンポジウム 2009)
  • 回転ポアズイユ乱流における低レイノルズ数効果
    (日本流体力学会年会2009 2009)
  • 壁面温度変化を伴う安定成層ポアズイユ流の乱流構造
    (日本流体力学会年会2009 2009)
  • The mechanism of energy transfer in turbulent poiseuille flow at very low-Reynolds number
    (Proceedings of 6th Turbulent Shear Flow Phenomena 2009)
  • Laminarization mechanisms of rotating Poiseuille flow
    (Proceedings of the 6th Second Symposium of Turbulence, Heat and Mass Transfer 2009)
more...
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