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Double-diffusive two-fluid flow in a slippery channel: A linear stability analysis

机译:滑通道中的双扩散双流体流动:线性稳定性分析

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摘要

The effect of velocity slip at the walls on the linear stability characteristics of two-fluid three-layer channel flow (the equivalent core-annular configuration in case of pipe) is investigated in the presence of double diffusive (DD) phenomenon. The fluids are miscible and consist of two solute species having different rates of diffusion. The fluids are assumed to be of the same density, but varying viscosity, which depends on the concentration of the solute species. It is found that the flow stabilizes when the less viscous fluid is present in the region adjacent to the slippery channel walls in the single-component (SC) system but becomes unstable at low Reynolds numbers in the presence of DD effect. As the mixed region of the fluids moves towards the channel walls, a new unstable mode (DD mode), distinct from the Tollman Schlichting (TS) mode, arises at Reynolds numbers smaller than the critical Reynolds number for the TS mode. We also found that this mode becomes more prominent when the mixed layer overlaps with the critical layer. It is shown that the slip parameter has nonmonotonic effect on the stability characteristics in this system. Through energy budget analysis, the dual role of slip is explained. The effect of slip is influenced by the location of mixed layer, the log-mobility ratio of the faster diffusing scalar, diffusivity, and the ratio of diffusion coefficients of the two species. Increasing the value of the slip parameter delays the first occurrence of the DD-mode. It is possible to achieve stabilization or destabilization by controlling the various physical parameters in the flow system. In the present study, we suggest an effective and realistic way to control three-layer miscible channel flow with viscosity stratification.
机译:在存在双扩散(DD)现象的情况下,研究了壁面速度滑移对两流体三层通道流动(在管道情况下为等效核心-环形构造)的线性稳定性特征的影响。流体是可混溶的,由两种具有不同扩散速率的溶质组成。假定流体的密度相同,但粘度不同,这取决于溶质种类的浓度。已经发现,当在单组分(SC)系统中,在与光滑通道壁相邻的区域中存在较少粘性的流体时,流量稳定,但是在存在DD效应的情况下,在低雷诺数下变得不稳定。当流体的混合区域向通道壁移动时,与托尔斯曼施利希特(TS)模式不同的新的不稳定模式(DD模式)在小于TS模式的临界雷诺数的情况下出现。我们还发现,当混合层与关键层重叠时,此模式会变得更加突出。结果表明,滑移参数对该系统的稳定特性具有非单调影响。通过能源预算分析,可以解释打滑的双重作用。滑移的影响受混合层的位置,较快扩散标量的对数迁移率,扩散率以及两种物质的扩散系数之比的影响。增加转差参数的值会延迟DD模式的首次出现。通过控制流动系统中的各种物理参数,可以实现稳定或去稳定。在本研究中,我们提出了一种有效且现实的方式来控制粘度分层的三层混溶通道流动。

著录项

  • 作者

    Ghosh S; R Usha; Sahu K C;

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  • 年度 2014
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  • 正文语种 en
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