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首页> 外文期刊>Journal of Fluid Science and Technology >Laminarization of inhomogeneous turbulent channel flow under stable density stratification
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Laminarization of inhomogeneous turbulent channel flow under stable density stratification

机译:稳定密度分层下非均匀湍流通道流动的层析

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Effects of buoyancy force stabilizing the disturbances are investigated on a turbulent channel flow bounded by two walls of different temperatures. With a constant mean pressure gradient imposed, the buoyancy force related to the Grashof number (Gr) is systematically increased by increasing the temperature difference between upper and lower walls, which are perpendicular to the gravitational direction. As a result, the mean flow rate increases with an increase in the Gr, and turbulent structures become intermittent and inhomogeneous; turbulent and quasilaminar regions simultaneously appear in the same computational region. Detailed visualization for instantaneous turbulent structure shows that in the upper and lower sides of a channel, the turbulent regions appear alternatively, and local one-sided turbulence is observed. Finally, with a further increase in the Gr, the stratified channel flow becomes complete one-sided turbulence where a flow becomes turbulent on one side of a channel, while it becomes laminarized on the other side.
机译:研究了稳定力稳定干扰的影响,对由不同温度的两个壁有两个壁的湍流通道流。通过施加恒定的平均压力梯度,通过增加垂直于重力方向的上壁和下壁之间的温差来系统地增加与格雷什数量(GR)相关的浮力力。结果,平均流量随着GR的增加而增加,湍流结构变得间歇性和不均匀的;湍流和QuasiLaminar区域同时出现在相同的计算区域中。瞬时湍流结构的详细可视化表明,在通道的上侧和下侧,湍流区域替代地出现,并且观察到局部单边湍流。最后,随着GR的进一步增加,分层通道流变为完整的单侧湍流,其中流动在通道的一侧变动,而在另一侧变为层状。

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