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首页> 外文期刊>The European physical journal, E. Soft matter >Stability analysis of a gravity-driven thermoviscous liquid film flowing over a heated flat substrate
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Stability analysis of a gravity-driven thermoviscous liquid film flowing over a heated flat substrate

机译:在加热的扁平基板上流动的重力驱动的热膜稳定性分析

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摘要

Two-dimensional steady-state solutions and their stability analysis are presented for a gravity-driven thin film of a thermoviscous liquid. The governing equations and boundary conditions are simplified using the lubrication approximation. The analytically obtained film thickness evolution equation consists of various dimensionless parameters such as the Marangoni number, Biot number and thermoviscosity number. The viscosity of the liquid is assumed as an exponential function of temperature. The viscosity decreases within the liquid film as the temperature increases. Due to localized heating interfacial temperature gradients generate surface tension gradient which results into thermocapillary or Marangoni stress. The Marangoni stress opposes the fluid flow at the leading edge of heater leading to an increase in the film thickness locally. This locally thick structure becomes unstable beyond critical values of the parameters that leads to formation of rivulets in the transverse direction. Using the linear stability analysis it is found that the Marangoni stress and the thermoviscous effect have a destabilizing effect on the thin-film flow. At much higher values of the thermoviscosity number another mode of instability appears which is known as thermocapillary instability which leads to oscillating film profiles. For streamwise perturbations, the destabilizing effect of the thermoviscosity number for localized and uniform heating remains consistent.
机译:提供了二维稳态解决方案及其稳定性分析,用于热宽度的液体的重力驱动的薄膜。使用润滑近似简化了控制方程和边界条件。分析所获得的膜厚度演化等式由各种无量纲参数组成,例如Marangoni号,Biot数和热致残数。液体的粘度被认为是温度的指数函数。随着温度升高,液体膜内的粘度降低。由于局部加热界面温度梯度产生表面张力梯度,导致热毛细血管或Marangoni应力。 Marangoni压力反对加热器前缘处的流体流动,导致局部膜厚度的增加。这种局部厚的结构变得不稳定,超出了在横向方向上形成铆钉的参数的临界值。使用线性稳定性分析,发现Marangoni应力和热敏作用对薄膜流动的稳定性效果不稳定。在热致各种不稳定性的热致件数量上较高的值,称为热储物不稳定性,从而导致振动膜型材。为了流动扰动,用于局部化和均匀加热的热致效应数的稳定效果保持一致。

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