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Temporal instability of a confined nano-liquid film with the Marangoni convection effect: viscous potential theory

机译:狭窄纳米液体膜与Marangoni对流效应的时间不稳定性:粘性潜在理论

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The current paper utilizes the viscous potential theory to analyze the temporal stability of a swirling annulus of two nano gas-liquid layers. The analysis depends mainly on the normal mode technique. The distributions of the heat, volume fraction, and velocity field are achieved. Furthermore, surface tension is considered as a function of the heat and the volume fraction distributions. Therefore, the impact of the Marangoni convection is taken into account. The balance of the normal stress tensor at the interface yields a complicated transcendental dispersion equation. Actually, this equation has no exact solution. Consequently, numerical calculations are established to indicate the relation between the growth rate and the wavenumber of the surface waves. Graphically, the influences of the various physical parameters are depicted. It is found that the Brownian motion accelerates the particles which leads to a destabilization of the interface. Simultaneously, the thermophoresis produces a motion of hot particles from the interface towards the boundaries, which stabilizes the interface. Furthermore, the increase of the surface tension, due to the Marangoni effect, enhances the interface rigidity and stabilizes it.
机译:本文利用粘性潜在理论来分析两个纳米气液层旋流环的时间稳定性。分析主要取决于正常模式技术。实现了热量,体积分数和速度场的分布。此外,表面张力被认为是热量和体积分量分布的函数。因此,考虑了Marangoni对流的影响。界面处的正常应力张量的平衡产生了复杂的超越色散方程。实际上,这个方程没有完全的解决方案。因此,建立数值计算以指示生长速率与表面波的波数之间的关系。图形方式,描绘了各种物理参数的影响。结果发现,布朗运动加速了导致界面不稳定的颗粒。同时,耐热化产生热颗粒从朝向边界的界面产生的运动,这稳定了界面。此外,由于Marangoni效应,表面张力的增加提高了界面刚性并稳定。

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