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首页> 外文期刊>Journal of Fluid Mechanics >Shear-driven and channel flow of a liquid film over a corrugated or indented wall
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Shear-driven and channel flow of a liquid film over a corrugated or indented wall

机译:剪切驱动并在波纹壁或凹壁上流动的液膜流

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摘要

The shape of the interface between two superimposed layers in a two-dimensional channel confined between a planar and a corrugated or indented wall is investigated in the limit of Stokes flow. A perturbation analysis for walls with small-amplitude sinusoidal corrugations reveals that an insoluble surfactant amplifies the deformation of the interface and causes a negative drift in the phase shift under most conditions. The effect is most significant at moderate capillary numbers and for corrugations whose wavelength is large compared to the thickness of the adjacent layer lining the wavy wall. The precise effect of the surfactant depends on the ratio of the fluid viscosities, proximity of the interface to the planar wall, capillary number, and wavelength of the corrugations. When the interface is near the plane wall, introducing surfactant reduces the interfacial amplitude and causes a positive phase shift with respect to the wavy wall. As the interface further approaches the plane wall, the interfacial wave tends to become in phase with the wavy wall, reflecting its unshifted topography. In the second part of this study, a boundary integral method is implemented to compute Stokes flow over a wall with an arbitrary periodic profile, and results are presented for sinusoidal walls and planar walls containing a periodic sequence of square and circular depressions or projections. The numerical results reveal that the linear perturbation theory overestimates the deformation of the interface over a wavy wall, and illustrate the nature of shear-driven film flow over a planar wall with indented topography.
机译:在斯托克斯流的极限范围内研究了二维通道中两个叠加层之间的界面形状,该二维通道限制在平面壁与波纹壁或凹入壁之间。对小振幅正弦波状波纹壁的扰动分析表明,在大多数情况下,不溶性表面活性剂会放大界面的变形并在相移中引起负漂移。对于中等数量的毛细管以及与波状壁衬砌的相邻层的厚度相比,其波长大的波纹,效果最为显着。表面活性剂的精确效果取决于流体粘度的比率,界面与平面壁的接近程度,毛细管数和波纹的波长。当界面靠近平面壁时,引入表面活性剂会降低界面振幅,并引起相对于波浪壁的正相移。随着界面进一步接近平面壁,界面波趋于与波浪壁同相,从而反映出其不变的形貌。在本研究的第二部分中,采用边界积分方法来计算具有任意周期性轮廓的壁上的斯托克斯流,并给出了包含正方形和圆形凹陷或投影的周期性序列的正弦壁和平面壁的结果。数值结果表明,线性摄动理论高估了波浪形壁上界面的变形,并说明了具有凹陷形貌的剪切驱动膜流过平面壁的性质。

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