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Experimental investigation into three-dimensional wavy liquid films under the influence of electrostatic forces

机译:静电力影响下的三维波浪状液膜的实验研究

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Three-dimensional interfacial waves that develop on the free surface of falling liquid films are known to intensify heat and mass transfer. In this context, the present paper studies the effect of electrostatic forces applied to a falling film of dielectric liquid on its three-dimensional nonlinear wave dynamics. Therefore, measurements of the local film thickness using a confocal chromatic imaging method were taken, and the complex wave topology was characterized through photography. The experiments show a complex interaction between the electric field and the hydrodynamics of the falling film, whereby electrostatic forces were found to both increase and decrease wave peak height in different regions of the wave. Additionally, an electrically induced breakup of the three-dimensional wave fronts, which leads to a locally doubled frequency in streamwise direction, is found. The ability to influence the wave topology demonstrated here opens the possibility to optimize heat transfer processes in falling liquid films.
机译:已知在下落的液膜的自由表面上产生的三维界面波会增强传热和传质。在这种情况下,本论文研究了施加在绝缘液体降膜上的静电力对其三维非线性波动力学的影响。因此,使用共聚焦彩色成像方法测量了局部膜厚,并通过照相来表征复杂的波拓扑。实验表明,电场与降膜的流体动力学之间存在复杂的相互作用,从而发现静电力会增加和减小波的不同区域中的波峰高度。另外,发现了三维波阵面的电感应破裂,这导致了沿流向的局部倍频。此处展示的影响波拓扑的能力为优化下落的液膜中的传热过程提供了可能性。

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