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Stability of viscosity stratified flows down an incline: Role of miscibility and wall slip

机译:粘度分层的稳定性向下倾斜:混溶性和壁滑性的作用

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The effects of wall velocity slip on the linear stability of a gravity-driven miscible two-fluid flow down an incline are examined. The fluids have the matched density but different viscosity. A smooth viscosity stratification is achieved due to the presence of a thin mixed layer between the fluids. The results show that the presence of slip exhibits a promise for stabilizing the miscible flow system by raising the critical Reynolds number at the onset and decreasing the bandwidth of unstable wave numbers beyond the threshold of the dominant instability. This is different from its role in the case of a single fluid down a slippery substrate where slip destabilizes the flow system at the onset. Though the stability properties are analogous to the same flow system down a rigid substrate, slip is shown to delay the surface mode instability for any viscosity contrast. It has a damping/promoting effect on the overlap modes (which exist due to the overlap of critical layer of dominant disturbance with the mixed layer) when the mixed layer is away/close from/to the slippery inclined wall. The trend of slip effect is influenced by the location of the mixed layer, the location of more viscous fluid, and the mass diffusivity of the two fluids. The stabilizing characteristics of slip can be favourably used to suppress the non-linear breakdown which may happen due to the coexistence of the unstable modes in a flow over a substrate with no slip. The results of the present study suggest that it is desirable to design a slippery surface with appropriate slip sensitivity in order to meet a particular need for a specific application. Published by AIP Publishing.
机译:考察了壁速度滑移对重力驱动的可混溶的两流体沿斜面向下流动的线性稳定性的影响。流体具有匹配的密度,但粘度不同。由于流体之间存在薄的混合层,因此可以实现平滑的粘度分层。结果表明,滑移的存在展现了通过在开始时提高临界雷诺数并减小不稳定波数的带宽超过显性失稳阈值来稳定混相流动系统的希望。这与它在滑性基材上向下流动的单一流体情况下的作用不同,在滑性衬底上,滑移一开始会破坏流动系统的稳定性。尽管稳定性类似于在刚性基材上的相同流动系统,但对于任何粘度对比,滑移都显示出延迟了表面模式的不稳定性。当混合层离开/靠近/靠近光滑的倾斜壁时,它对重叠模式(由于主要扰动的临界层与混合层的重叠而存在)具有阻尼/促进作用。滑移效应的趋势受混合层的位置,粘性流体的位置以及两种流体的质量扩散率的影响。滑移的稳定特性可以有利地用于抑制由于在没有滑移的基板上的流动中不稳定模式的共存而可能发生的非线性击穿。本研究的结果表明,希望设计一种具有适当滑动灵敏度的光滑表面,以满足特定应用的特定需求。由AIP Publishing发布。

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