带电检修时导电服装的屏蔽效率

G. Gõcsei, B. Németh, Z. A. Tamus, I. Kiss, József Meixner
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引用次数: 18

摘要

目前,在线维护(LLM)是修复和维护电网带电元件的最常用方法之一。该技术的主要优点是它代表了技术和经济因素之间的平衡:不需要用户干扰,不造成任何服务中断,损失可以保持在尽可能低的水平。由于这些原因,不同的带电方法在各种电压水平上越来越受欢迎。特殊技术可用于低、中、高压电网。在高电压等级上,“徒手法”在世界范围内得到广泛应用。这种方法的主要原理是在工人周围有一个封闭的金属表面,作为法拉第笼。在理想的法拉第笼内,外部电场为零。一件衣服的效率主要取决于其表面的孔洞(即所谓的“法拉第孔洞”)的大小。合适的面网可以保证现场作业人员的安全。布达佩斯科技与经济大学高压实验室的计算、模拟和测量证明,不良、粗糙或缺少屏蔽面会通过增加体电流来降低效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shielding efficiency of conductive clothing during live-line maintenance
Nowadays live-line maintenance (LLM) is one of the most common methods to repair and maintain energized elements of the power grid. The main advantage of this technique that it represents a balance between technical and economic factors: no consumer disturbance is needed, there is not any service outage caused and losses can be kept as low as possible. Because of these reasons different live-line methods are becoming more and more popular on all voltage levels. Special techniques are available for low, middle and high voltage grids. On high voltage levels “barehand method” is widely applied worldwide. The main principle of this method is an enclosed metal surface around the worker acting as a Faraday cage. Inside an ideal Faraday-cage electric field is zero from outer source. The efficiency of a clothing mainly depends on the size of holes (so called “Faraday-holes”) on the surface. A proper face mesh can guarantee the safety of the live-line worker. Calculations, simulations and measurements in the High Voltage Laboratory of Budapest University of Technology and Economics have proved that poor, coarse or missing face shield decreases the efficiency by the increase of body current.
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