Department of Chemical Engineering, Imperial College of Science, Technology and Medicine, London, United Kingdom.
J Colloid Interface Sci. 2012 Apr 1;371(1):121-35. doi: 10.1016/j.jcis.2011.11.033. Epub 2011 Nov 25.
The linear and nonlinear stability of a spreading film of constant flux and a drop of constant volume, discussed in [1], are examined here. A linear stability analysis (LSA) is carried out to investigate the stability to spanwise perturbations, by linearisation of the two-dimensional (2-D) evolution equations derived in [1] for the film thickness and surfactant concentration fields. The latter correspond to convective-diffusion equations for the surfactant, existing in the form of monomers (present at the free surface and in the bulk) and micelles (present in the bulk). The results of the LSA indicate that the thinning region, present upstream of the leading front in the constant flux case, and the leading ridge in the constant volume case, are unstable to spanwise perturbations. Numerical simulations of the 2-D system of equations demonstrate that the above-mentioned regions exhibit finger formation; the effect of selected system parameters on the fingering patterns is discussed.
这里研究了 [1] 中讨论的恒定通量扩展膜和恒定体积液滴的线性和非线性稳定性。通过对 [1] 中推导的二维(2-D)演化方程进行线性化,进行线性稳定性分析(LSA),以研究对横向扰动的稳定性。这些方程对应于表面活性剂的对流扩散方程,存在于单体(存在于自由表面和本体中)和胶束(存在于本体中)的形式中。LSA 的结果表明,在恒定通量情况下的前缘上游存在的变薄区域和恒定体积情况下的前缘脊是不稳定的,易于受到横向扰动的影响。对二维方程组的数值模拟表明,上述区域表现出指状形成;讨论了选定系统参数对指状图案的影响。