【2h】

Whipping of electrified liquid jets

机译:搅动带电液体喷射器

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摘要

We apply an electric field to a moderately conducting liquid surrounded by another coflowing liquid, all inside a glass-based microfluidic device, to study nonaxisymmetric instabilities. We find that the bending of the electrified jet results in a steady-state, helicoidal structure with a constant opening angle. Remarkably, the characteristic phase speed of the helicoidal wave only depends on the charge carried by the jet in the helicoidal region and its stability critically depends on the properties of the coflowing liquid. In fact, the steady-state helical structure becomes chaotic when the longest characteristic time is that of the inner liquid rather than that of the outer coflowing liquid. We also perform a numerical analysis to show that the natural preference of the jet is to adopt the conical helix structure observed experimentally.
机译:我们将电场施加到一个中等传导性的液体中,该液体被另一种并流液体包围,这些液体都在基于玻璃的微流体设备内部,以研究非轴对称不稳定性。我们发现,带电射流的弯曲会导致具有恒定张角的稳态螺旋结构。值得注意的是,螺旋波的特征相速度仅取决于喷射流在螺旋区域中所携带的电荷,而其稳定性则严重取决于同流液体的特性。实际上,当最长的特征时间是内部液体的特征时间而不是外部同流液体的特征时间最长时,稳态螺旋结构变得混乱。我们还进行了数值分析,以显示射流的自然偏好是采用实验观察到的锥形螺旋结构。

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