首页> 外文期刊>IEEE Transactions on Power Delivery >Mechanical vibration of HV conductors induced by corona: roles of the space charge and ionic wind
【24h】

Mechanical vibration of HV conductors induced by corona: roles of the space charge and ionic wind

机译:电晕引起的高压导体的机械振动:空间电荷和离子风的作用

获取原文
获取原文并翻译 | 示例
           

摘要

The corona-induced force per hanging water drop from a HV conductor and the roles of the corona-induced vibration were investigated. To determine the amplitude of the corona-induced force F/sub t/, a water drop was simulated by a conical metal point. F/sub t/ was determined using two experimental setups: in the first, conical points were fixed along the underside of a smooth conductor, subjected to a DC high voltage; the corona induced force was then determined from the vertical displacement of the conductor. The second setup is a pinwheel consisting of a rotating arm at the ends of which two conical points were fixed on opposing sides. The forces exerted on the conical points were determined from the acceleration of the arm when subjected to a HV. The velocity of the ionic wind in the vicinity of a HV water drop was measured by a laser anemometer system and the order of the amplitude of the reactive force due to the ionic wind was estimated. It was observed that even in the absence of the ionic wind, a HV sphere suspended above a grounded plane vibrates when an intermittent space charge was injected in the intervening space. It was concluded that the reactive force due to the ionic wind was small compared to the electrostatic force between the corona space charge and the water drop. Thus, the intermittent presence of the corona space charge, produced by the drops hanging from the HV conductor, would appear to be the main cause of the vibration.
机译:研究了高压导体每悬挂一滴水所产生的电晕感应力以及电晕感应振动的作用。为了确定电晕感应力F / sub t /的幅度,通过锥形金属点模拟了水滴。 F / sub t /是通过两个实验装置确定的:首先,将锥形点沿光滑导体的下侧固定,使其承受直流高压;然后根据导体的垂直位移确定电晕感应力。第二种设置是由旋转臂组成的风车,旋转臂的两端分别在相对的两侧固定了两个圆锥形点。施加在圆锥点上的力由承受HV时的手臂加速度确定。通过激光风速计系统测量在HV水滴附近的离子风的速度,并估算由于离子风引起的反作用力幅度的顺序。可以观察到,即使在没有离子风的情况下,当在中间空间中注入间歇性空间电荷时,悬浮在接地平面上方的HV球也会振动。结论是,与电晕空间电荷和水滴之间的静电力相比,离子风引起的反作用力小。因此,由悬挂在HV导体上的液滴产生的电晕空间电荷的间歇性存在似乎是振动的主要原因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号