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Oscillatory thermocapillary instability in liquid layer with insoluble surfactant

机译:不溶性表面活性剂液体层中的振动热缺失性

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Oscillatory convective flow is undesirable because it can produce bubbles, striation and dendrites in the manufactured products. The ability to control the complex convective flow patterns is important in technological processes and fundamental science. One of the factors that can alter the dynamics of the surface tension of thin fluid film is the surface-active agents. In this work, the influence of the insoluble surface-active agents on thermocapillary convective instability in a liquid layer for non-deformable free surface is examined. Uniform temperature and uniform heat flux for the temperature condition at the bottom surface are considered. The linear stability analysis is used to assess the effects of elasticity number, Lewis number, Prandtl number and Biot number on the onset of oscillatory convection. The existence of insoluble surfactant stabilizes the fluid layer system. The system is more stable in the case of uniform temperature. The presence of surfactant and temperature setting at the bottom boundary can suppress the onset of oscillatory instability.
机译:振荡对流流动是不希望的,因为它可以在制造产品中产生气泡,突变和树突。控制复杂的对流流动模式的能力在技术过程和基础科学中是重要的。可以改变薄流体膜的表面张力动态的因素之一是表面活性剂。在这项工作中,检查了不溶性表面活性剂对不可变形自由表面的液体层中热量的对流不稳定性的影响。考虑均匀的温度和均匀的热通量用于底表面的温度条件。线性稳定性分析用于评估弹性数,刘易斯号码,普朗特数和BIOT号对振荡对流开始的影响。不溶性表面活性剂的存在稳定流体层系统。在均匀温度的情况下,该系统更稳定。底部边界处的表面活性剂和温度设定的存在可以抑制振荡不稳定性的开始。

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