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Stability and Transient Dynamics of Thin Liquid Films Flowing over Locally Heated Surfaces

机译:局部加热表面流动的薄液膜的稳定性和瞬态动力学

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摘要

The dynamics and linear stability of a liquid film flowing over a locally heated surface are studied using a long-wave lubrication analysis. The temperature gradient at the leading edge of the heater induces a gradient in surface tension that opposes the gravitationally driven flow and leads to the formation of a pronounced capillary ridge. The resulting free-surface shapes are computed, and their stability to spanwise perturbations is analyzed for a range of Marangoni numbers, substrate inclination angles, and temperature profiles. Instability is predicted above a critical Marangoni number for a finite band of wave numbers separated from zero, which is consistent with published results from experiment and direct numerical simulation. An energy analysis is used to gain insight into the effect of inclination angle on the instability. Because the spatial nonuniformity of the base state gives rise to nonnormal linearized operators that govern the evolution of perturbations, a nonmodal, transient analysis is used to determine the maximum amplification of small perturbations to the film. The structure of optimal perturbations of different wave numbers is computed to elucidate the regions of the film that are most sensitive to perturbations, which provides insight into ways to stabilize the flow. The results of this analysis are contrasted to those for noninertial coating flows over substrates with topographical features, which exhibit similar capillary ridges but are strongly stable to perturbations.
机译:使用长波润滑分析研究了在局部加热的表面上流动的液膜的动力学和线性稳定性。加热器前缘的温度梯度引起表面张力梯度,该梯度与重力驱动的流动相反,并导致形成明显的毛细脊。计算得到的自由表面形状,并分析其在一系列马朗哥尼数,衬底倾斜角和温度曲线下对翼展方向摄动的稳定性。对于从零开始的有限波数带,在临界Marangoni数之上预测了不稳定性,这与从实验和直接数值模拟得出的结果一致。能量分析用于深入了解倾斜角对不稳定性的影响。由于基本态的空间不均匀性会引起控制扰动演化的非正态线性化算子,因此采用非模态瞬态分析来确定对薄膜的小扰动的最大放大率。计算了不同波数的最佳摄动结构,以阐明薄膜对摄动最敏感的区域,从而为稳定流量提供了见识。该分析的结果与具有地形特征的非惯性涂层流过的结果形成了鲜明的对比,这些地形特征显示出相似的毛细管脊,但对扰动具有很强的稳定性。

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