首页> 外文会议>ASME Fluids Engineering Division summer conference;FEDSM2008 >COMPUTATIONAL STUDIES ON THE BEHAVIOR OF AN INTERFACE SEPARATING TWO FLUIDS UNDER UNIFORM ELECTRIC FIELD
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COMPUTATIONAL STUDIES ON THE BEHAVIOR OF AN INTERFACE SEPARATING TWO FLUIDS UNDER UNIFORM ELECTRIC FIELD

机译:均匀电场作用下两种流体界面分离行为的计算研究

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Direct Numerical Simulations (DNS) are carried out to study the dynamics of a horizontal interface separating two fluids, having different electrical properties, under the influence of a uniform electric field. A front tracking/finite difference scheme is used, in conjunction with Taylor's leaky dielectric model, to solve the governing electrohydrodynamics equations in both fluids at finite Reynolds numbers. The methodology and the code is validated by comparing the results with those of the analytical studies developed at the linear stability limit and it is shown that a very good agreement exists between the two.The results of this study show interesting interface behavior depending on the parameters of the problem. In all the cases considered, the interface becomes unstable beyond a critical voltage and starts to oscillate as it moves toward its steady-state shape which is a vertical column pointing from the liquid of higher electric conductivity to the one with a lower conductivity. The shape of the column, however, will vary depending on the individual governing parameters.
机译:进行直接数值模拟(DNS)以研究在均匀电场的影响下分离具有不同电特性的两种流体的水平界面的动力学。使用前跟踪/有限差分方案,结合泰勒的泄漏电介质模型,来解决两种流体在有限雷诺数下的控制电流体动力学方程。通过将结果与在线性稳定性极限条件下进行的分析研究的结果进行比较,对方法论和代码进行了验证,结果表明两者之间存在很好的一致性。 这项研究的结果显示出有趣的界面行为,具体取决于问题的参数。在所有考虑的情况下,界面在超过临界电压时都变得不稳定,并且随着界面向其稳态形状(即从较高电导率的液体指向较低电导率的液体指向的垂直列)移动而开始振荡。但是,色谱柱的形状将根据各个控制参数而有所不同。

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