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Instability of an oscillatory fluid layer with insoluble surfactants

机译:具有不溶性表面活性剂的振荡液层的不稳定性

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摘要

The linear stability of an infinite fluid layer with a deformable free surface covered by an insoluble surfactant and bounded below by a horizontal rigid plate oscillating in its own plane is studied based on the Floquet theory. The differential system governing the stability problem for perturbations of arbitrary wavenumbers is solved numerically by a Chebyshev collocation method. Stability boundaries are obtained in a wide range of amplitude and frequency of the modulation as well as surfactant elasticity. Results show that the presence of the surfactant may significantly stabilize (destabilize) the flow by raising (lowering) the critical Reynolds number associated with the onset of instability. The effect of the surfactant plays a stabilizing role for small surfactant elasticity and a destabilizing one for relatively large surfactant elasticity. The destabilizing effect of the surfactant on the stability of flows with a zero-shear surface is found for the first time. The disturbance modes in the form of travelling waves may be induced by the surfactant and dominate the instability of the flow.
机译:基于浮球理论,研究了具有可变形自由表面的无限流体层的线性稳定性,该自由表面被不溶性表面活性剂覆盖,并在其下方以水平的刚性板在其自身平面内振荡为边界。用切比雪夫(Chebyshev)搭配方法用数值方法解决了控制任意波数扰动的稳定性问题的微分系统。在很宽的调制幅度和频率范围以及表面活性剂的弹性范围内都可以获得稳定性边界。结果表明,表面活性剂的存在可通过升高(降低)与不稳定现象相关的临界雷诺数来显着稳定(不稳定)流动。表面活性剂的作用对于较小的表面活性剂弹性起稳定作用,而对于较大的表面活性剂弹性起不稳定作用。首次发现表面活性剂对具有零剪切表面的流动稳定性的去稳定作用。表面活性剂可能引起行波形式的扰动模式,并主导了流动的不稳定性。

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