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Flow instability of glycerol/water/triton-X-100 thin liquid film system

机译:甘油/水/ Triton-X-100薄液膜系统的流量不稳定性

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The flow stability of Glycerol/water/Triton-X-100 nonionic surfactant of single layer liquid film flowing down an in-clined plane was systematically studied in this work. Capillary wave at the liquid surface was measured by capillary wave/laser detection methd. Specifically, we examined the effect of Triton-X-100 surfactant on the damping of capillary waves on the free surface of glycerol/water liquid film. The stability of apillary wave disturbances on the liqiuid surface was characterized by measuring the wave damping coefficient #beta# . The stability and instability boundary is identified by the condition #beta# chemical bounds 0. The corresponding value of the wave number at the #beta# chemical bounds 0 condition is referred to as the critical wave number, a #alpha# _c chemical bounds 2 #pi# h/ #lambda# , where h is the film thickness. This critical parameter, #alpha# _c, is used to characterize the flow's stability, and determined as a function of Reynolds Number, Elasticity Number and Weber Number. We found that the flow stability increase with the surfactant concentration. At high concentrated solutions (above the CMC), it was found that, for a fixed Reynolds Number, #alpha# _c is independent of surfactant concentration and the Weber Number. A comparison of the effects of surfactant elasticity and sruface tension to flow stability is discussed.
机译:在该工作中,系统地研究了流下克隆平面的单层液体膜的甘油/水/ Triton-X-100非离子表面活性剂的流动稳定性。通过毛细管波/激光检测甲基测量液体表面的毛细管。具体地,我们检查了Triton-X-100表面活性剂对甘油/水液膜自由表面上的毛细波湿湿的影响。通过测量波浪阻尼系数#Beta#,表征了Liqiuid表面上充当波干扰动的稳定性。稳定性和不稳定性边界由条件#β#化学界限0识别。#β#化学界限0条件下的波数的相应值被称为临界波数,#alpha#_c化学界限2 #pi#h /#lambda#,其中h是胶片厚度。此关键参数#alpha#_c用于表征流量的稳定性,并确定为reynolds号,弹性编号和韦伯号的函数。我们发现流动稳定性随着表面活性剂浓度而增加。在高浓缩溶液(在CMC上方),发现,对于固定的雷诺数,#α#_c与表面活性剂浓度和韦伯数无关。讨论了表面活性剂弹性和Srface张力对流动稳定性的影响的比较。

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