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Electrohydrodynamic atomisation of water stabilised by glow discharge-operating range and droplet properties

机译:通过辉光放电工作范围和液滴特性稳定化的水的电流体动力学雾化

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This paper deals with the production of charged water droplets by electrohydrodynamic atomisation (EHDA) of water,in air at atmospheric pressure,in a mode stabilised by a particular corona discharge regime.Indeed,impulse filamentary discharges developing in the gas around the liquid cone temporarily disrupt the EHD equilibrium leading to an unstable mode of EHDA with varying droplet properties (size and charge).The purpose of this paper is to show that a stable mode can be obtained by the control of the field divergence around the liquid,i.e.the electric field profile in the gas,leading to a continuous glow discharge without impulse filamentary discharge.Using observations,electrical measurements and droplets size characterisation,several spraying modes are depicted.We have demonstrated that the electrical discharge regime (continuous/impulse) induces the mode of EHDA (stable/unstable).The stability domains are defined versus liquid flow rate,conductivity,voltage for different nozzle diameters.Then,the properties of droplets (droplets diameter,spray current) produced within these modes are established as a function of the liquid flow rate,of the conductivity and of the glow current.
机译:本文涉及通过在大气压下的空气中以特定电晕放电方式稳定的模式通过水的水电流体雾化(EHDA)来产生带电水滴。实际上,在液体锥周围的气体中会逐渐产生脉冲丝状放电。破坏EHD平衡导致EHDA的不稳定模式具有不同的液滴特性(大小和电荷)。本文的目的是证明可以通过控制液体周围的电场发散来获得稳定模式,即电气体中的电场分布,导致连续的辉光放电而没有脉冲丝状放电。使用观察,电学测量和液滴尺寸表征,描绘了几种喷涂模式。我们已经证明了放电状态(连续/脉冲)会诱发EHDA(稳定/不稳定)。针对不同的喷嘴d定义了相对于液体流速,电导率,电压的稳定性域然后,根据液体流速,电导率和辉光电流确定在这些模式下产生的液滴的性质(液滴直径,喷雾电流)。

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