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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Instability of a thin film flowing on a rotating horizontal or inclined plane - art. no. 026312
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Instability of a thin film flowing on a rotating horizontal or inclined plane - art. no. 026312

机译:在旋转的水平或倾斜平面上流动的薄膜的不稳定性-技术没有。 026312

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In this paper the instability of a thin fluid film flowing under the effects of gravity, Coriolis, and centrifugal forces is investigated. It is supposed that the film flows far from the axis of rotation on a plane which may be horizontal or inclined with respect to the horizontal. In the former case, the flow is only driven by the centrifugal force while in the latter case, the flow is driven by the components of centrifugal force and gravity along the plane. This case may also be considered as the flow down a rotating cone but far from the apex. The stabilizing influence of rotation on the film flow increases with the rotation rate. Up to a certain critical rate of rotation, the film flowing down the rotating inclined plane (or cone) is more stable than the flow on the horizontal rotating plane while above this rate of rotation the situation is reversed. The instability above the critical rate is associated with a finite wave number in contrast to the vanishing wave number of the instability below the critical rate. The possibility of Ekman layer instabilities is also investigated. An equation describing the nonlinear evolution of surface waves is also obtained. Moreover, this equation is simplified for the case in which the amplitudes are very small. An equation including dissipation as well as dispersion is derived whose solutions may possess solitary waves, as in the case of similar equations considered in the literature. These solutions are likely to correspond to the solitary spiral waves observed in experiments. [References: 29]
机译:在本文中,研究了在重力,科里奥利和离心力的作用下流动的流体薄膜的不稳定性。可以认为,薄膜在水平或相对于水平倾斜的平面上远离旋转轴流动。在前一种情况下,流动仅由离心力驱动,而在后一种情况下,流动由沿平面的离心力和重力分量驱动。这种情况也可以看作是沿着旋转圆锥体向下流动但远离顶点的流动。旋转对薄膜流动的稳定影响随旋转速度而增加。在达到特定的临界旋转速率时,向下旋转的倾斜平面(或圆锥体)向下流动的薄膜比水平旋转平面上的流动更稳定,而高于该旋转速率时,情况则相反。高于临界速率的不稳定性与有限波数相关联,与低于临界速率的不稳定性的消失波数相反。还研究了埃克曼层不稳定性的可能性。还获得了描述表面波非线性演化的方程。此外,对于振幅非常小的情况,简化了该方程式。与文献中考虑的类似方程式一样,推导了一个包括耗散和扩散的方程,其解可能具有孤立波。这些解决方案可能对应于实验中观察到的孤立螺旋波。 [参考:29]

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