Demekhin E A, Kalaidin E N, Kalliadasis S, Vlaskin S Yu
Southern Research Center of Russian Academy of Sciences, Kuban State University, Stavropolskaya Street 149, Krasnodar 350040, Russia.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Sep;82(3 Pt 2):036322. doi: 10.1103/PhysRevE.82.036322. Epub 2010 Sep 28.
We validate experimentally the Kapitsa-Shkadov model utilized in the theoretical studies by Demekhin [Phys. Fluids 19, 114103 (2007)10.1063/1.2793148; Phys. Fluids 19, 114104 (2007)]10.1063/1.2793149 of surface turbulence on a thin liquid film flowing down a vertical planar wall. For water at 15° , surface turbulence typically occurs at an inlet Reynolds number of ≃40 . Of particular interest is to assess experimentally the predictions of the model for three-dimensional nonlinear localized coherent structures, which represent elementary processes of surface turbulence. For this purpose we devise simple experiments to investigate the instabilities and transitions leading to such structures. Our experimental results are in good agreement with the theoretical predictions of the model. We also perform time-dependent computations for the formation of coherent structures and their interaction with localized structures of smaller amplitude on the surface of the film.
我们通过实验验证了德梅金在理论研究中使用的卡皮察 - 什卡多夫模型[《物理流体》19, 114103 (2007)10.1063/1.2793148;《物理流体》19, 114104 (2007)]10.1063/1.2793149,该模型用于研究垂直平面壁上向下流动的薄液膜表面湍流。对于15°的水,表面湍流通常在入口雷诺数约为40时出现。特别值得关注的是通过实验评估该模型对三维非线性局部相干结构的预测,这些结构代表了表面湍流的基本过程。为此,我们设计了简单的实验来研究导致此类结构的不稳定性和转变。我们的实验结果与该模型的理论预测高度吻合。我们还对相干结构的形成及其与液膜表面较小振幅局部结构的相互作用进行了时间相关计算。