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Surface Discharge Propagation: The Influence Of Surface Charge

机译:表面放电传播:表面电荷的影响

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Surface discharges are of considerable importance, because of their influence on the reliability of high voltage pulsed power systems. It is possible to achieve long discharges with relatively low voltages particularly in the presence of surface charge. The theory of streamer development in gases has been the subject of major experimental studies into the precise mechanisms of their initiation and development. However, surface discharge development is complicated by the proximity of the underlying insulating surface and the coupling of the discharge to that surface. This leads to modifications of the electric field surrounding the streamer, particularly at the head of the discharge. Photons generated at the discharge head can interact with the surface, producing photo-emission thus changing the surface charge distribution. Ablation of the surface results in local modifications of the gas atmosphere. The present experimental study has investigated the influence of surface charging on guided streamers propagating over insulating surfaces. The streamers were initiated from a surface mounted electrode excited by a high voltage pulse, the duration of which was much shorter than the time taken for the streamer to propagate across the surface. It was found that the velocity and distance of propagation is strongly influenced by the presence and magnitude of the surface charge and that discharge propagation can occur in the absence of the HV pulse. Measurements have shown that the deposited surface charge decays with time and that there are two distinct decay rates. These changes in the surface charge distribution could have a bearing on the period of time that should elapse before the subsequent reapplication of HV pulses to produce consistent discharge behaviour or to avoid surface flashover
机译:表面放电非常重要,因为它们会影响高压脉冲电源系统的可靠性。特别是在存在表面电荷的情况下,可以用较低的电压实现长时间的放电。气体中流光发展理论一直是引发和发展精确机制的主要实验研究的主题。然而,由于下面的绝缘表面的接近以及放电与该表面的耦合,使得表面放电的发展变得复杂。这导致围绕拖缆的电场的改变,特别是在放电的顶部。在放电头产生的光子可以与表面相互作用,产生光发射,从而改变表面电荷分布。表面的烧蚀导致气体气氛的局部改变。目前的实验研究已经研究了表面电荷对在绝缘表面上传播的引导拖缆的影响。拖缆是从被高压脉冲激发的表面安装电极开始的,其持续时间比拖缆在整个表面上传播所花费的时间短得多。已经发现,传播的速度和距离受到表面电荷的存在和大小的强烈影响,并且在没有HV脉冲的情况下可能发生放电传播。测量表明,沉积的表面电荷随时间衰减,并且有两个不同的衰减率。表面电荷分布的这些变化可能会影响到在随后重新施加HV脉冲以产生一致的放电行为或避免表面闪络之前应该经过的时间段

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