Linear stability of an interface between a non-ohmic liquid and air subjected to an electric field and charge injection

R. Chicón, A.T. Perez
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Abstract

The electrohydrodynamic (EHD) instability of an insulating liquid subjected to unipolar injection of ions has been the object of many different studies. It is due to the existence of a potentially unstable distribution of charge in the liquid bulk. Besides that classical instability, it has also been found experimentally that insulating liquids exhibit another kind of EHD instability when subjected to corona discharge from air. This instability, referred to as rose-window instability, is characterized by a pattern of large cells. Both instabilities arise above quite different voltage thresholds. In this paper we write down and numerically solve the linearized equations of motion of the liquid when the air above is considered. Our first aim is to discuss the effect of the air layer on the linear stability threshold for the classical EHD volume instability.
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在电场和电荷注入作用下,非欧姆液体和空气之间界面的线性稳定性
受到单极离子注入的绝缘液体的电流体动力学(EHD)不稳定性一直是许多不同研究的对象。这是由于在液体体中存在一种潜在的不稳定电荷分布。除了经典的不稳定性外,实验还发现绝缘液体在受到空气电晕放电时表现出另一种EHD不稳定性。这种不稳定性被称为玫瑰窗不稳定性,其特征是大细胞的模式。这两种不稳定性出现在完全不同的电压阈值之上。本文给出了考虑空气时液体运动的线性化方程,并对其进行了数值求解。我们的第一个目的是讨论空气层对经典EHD体积不稳定性的线性稳定阈值的影响。
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