日本機械学会論文集 B編
Online ISSN : 1884-8346
Print ISSN : 0387-5016
粘弾性流体の抵抗低減乱流境界層の直接数値シミュレーション
第1報, 平均速度分布および乱れ統計量
玉野 真司伊藤 基之星崎 健一横田 和彦
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2007 年 73 巻 726 号 p. 490-497

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Direct numerical simulation of a zero-pressure gradient drag-reducing turbulent boundary layer of viscoelastic solutions was performed using constitutive equation models such as the Oldroyd-B and Giesekus models. First, the streamwise variations in boundary layer parameters such as the shape factor and friction coefficient were clarified. Next, mean velocity profiles and turbulence statistics at the different streamwise locations were discussed using both inner and outer scaling. The maximum drag reduction ratio for the Oldroyd-B model, which has the higher elongational viscosity, is larger than that for the Giesekus model. The distinct difference in turbulence statistics near the wall between the Oldroyd-B model and Newtonian fluid is observed, as reported in the drag-reducing turbulent channel flow, while the difference between the Giesekus model and Newtonian fluid is slight in this study. On the other hand, in the outer region, distributions of mean velocity and turbulence statistics for both the Oldroyd-B and Giesekus models are similar to those for Newtonian fluid.

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