Stability of Marangoni convection in a thin film under the influence of vertical vibrations

I. Volodin, A. Alabuzhev
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Abstract

In this article we consider impact of vertical vibration on longwave Marangoni convection in a thin layer heated from below. The thermal conductivity of the lower solid boundary is assumed high. Vibration period is comparable with the characteristic time of the film evolution, vibration amplitude is of the order of the layer thickness. We have demonstrated that under above conditions the vibration results only in the gravity modulation in the conventional amplitude equation. The stability study showed that in the absence of noise, vibrations do not change the threshold for convection; in the presence of noise, the layer is destabilized. Nonlinear calculations confirmed the last conclusion – subcritical occurrence of convection was detected. An asymptotic analysis, describing the transition with increasing vibration frequency from parametric influence to an averaged description, is also performed.
垂直振动影响下薄膜中马兰戈尼对流的稳定性
本文考虑了垂直振动对从下加热的薄层中长波马兰戈尼对流的影响。假定固体下边界的导热系数高。振动周期与膜层演化的特征时间相当,振动幅值与膜层厚度成数量级。我们已经证明,在上述条件下,振动只导致常规振幅方程中的重力调制。稳定性研究表明,在没有噪声的情况下,振动不会改变对流的阈值;在有噪声的情况下,该层是不稳定的。非线性计算证实了最后的结论——探测到对流的亚临界发生。本文还进行了渐近分析,描述了随振动频率增加从参数影响到平均描述的转变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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