Structure of turbulent channel flow under spanwise system rotation

被引:0
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作者
Miyamoto, Kenji [1 ]
Iida, Oaki [1 ]
Nagano, Yasutaka [1 ]
机构
[1] Department of Mechanical Engineering, Nagoya Institute of Technology, Gokiso cho, Nasoya-shi, Aichi, 466-8555, Japan
关键词
Channel flow - Computer simulation - Fluid dynamics - Reynolds number - Rotational flow - Shear flow;
D O I
10.1299/kikaib.72.2862
中图分类号
学科分类号
摘要
Direct numerical simulations of a turbulent channel flow under spanwise system rotation are performed. When the system rotation is imposed on the turbulent Poiseuille flow, the Reynolds number decreases in one side of a channel, while it increases in the other side. Hence, the effects of the Reynolds number as well as spanwise system rotation cannot be negligible in the turbulent Poiseuille flow. To exclude the Reynolds-number effects, we performed the numerical simulations of the open channel flow where the free-slip-boundary condition is imposed on a wall, and the Reynolds number can be set constant. When the spanwise system rotation is imposed to enhance mean spanwise vorticity associated with the mean shear, turbulence at the large scale is attenuated and the mean velocity gradient increases over the entire channel. In contrast, when the system rotation is imposed in the opposite sense to the mean spanwise vorticity, the mean velocity is leveled and turbulence at the higher wavenumbers is markedly decreased. We also investigate the effects of spanwise system rotation on the longitudinal vortical structure typically observed in the near-wall turbulence.
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页码:2862 / 2869
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