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Modulational instability in thin liquid film flowing down an inclined uniformly heated plate

机译:薄液膜中的调节不稳定性流动倾斜均匀加热板

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The modulational instability properties regarding the evolution of interfacial disturbances of the flow of a thin liquid film down an inclined uniformly heated plate subject to thermal Marangoni (thermocapillary) effects are investigated under the framework of linear stability analysis. The investigation has been performed both analytically and numerically using a complex cubic Ginzburg–Landau equation without the driving term to provide comprehensive pictures of the influence of nonlinearity, dissipation, and dispersion on interfacial disturbance generation and evolution. It is shown that when the interplay between linear and nonlinear effects is relatively important, the disturbances evolve as a superposition of groups of traveling periodic waves with different amplitudes, and the interfacial disturbances evolve as smooth modulations. Furthermore, the dynamic modes of these disturbances become aperiodic. Conversely, when the evolution of instabilities is influenced by strong nonlinearity, the flow saturates, and different situations lead to different possible modulated wavy structures, caused by the interplay between nonlinear and linear dispersive and dissipative effects. Moreover, the appearance and the spatial and temporal evolution of the modulated disturbance profiles are influenced by both the amplitude of the disturbances and the linear dissipative term. Here, based on our investigation, two cases are highlighted. In the first case, which corresponds to very small amplitude of the disturbances, the dynamic modes of the disturbances evolve from periodic traveling waves to spatial and temporal modulated periodic solitary wave patterns. In the second case, by increasing the amplitude of the disturbances, the appearance of modulational modes is rapid, and therefore, we can observe the development of modulationally marginal-like stable patterns or spatial and temporal modulated patterns with nonuniform profiles.
机译:在线性稳定性分析框架下研究了关于经受热马龙酮(热毛细管)效应的倾斜均匀加热板的薄液膜流动的界面紊乱的演化的调节不稳定性质。在没有驱动术语的情况下,使用复杂的立方Ginzburg-Landau方程进行分析和数值进行分析和数值来进行,以提供非线性,耗散和分散对界面干扰产生和进化的影响的综合照片。结果表明,当线性和非线性效应之间的相互作用相对重要时,干扰随着具有不同幅度的行进周期波的叠加而发展,并且界面干扰随着光滑的调制而发展。此外,这些干扰的动态模式变成了非周期性。相反,当不稳定性的进化受强度强度的影响时,流量饱和和不同情况导致不同可能的调制波浪结构,由非线性和线性分散性和耗散效应之间的相互作用引起。此外,调制扰动轮廓的外观和空间和时间演化受到干扰幅度和线性耗散项的影响。在这里,根据我们的调查,突出了两种情况。在第一种情况下,这对应于扰动的非常小的幅度,干扰的动态模式从周期性行驶波到空间和时间调制的周期性波形图案。在第二种情况下,通过增加扰动的幅度,调制模式的外观是快速的,因此,我们可以观察到具有非均匀型材的调制边缘状稳定图案或空间和时间调制图案的发展。

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