首页> 外文会议>IEEE International Conference on High Voltage Engineering and Application >Design of Termination for an AC Disruptive Voltage Test on a 35 kV Cable
【24h】

Design of Termination for an AC Disruptive Voltage Test on a 35 kV Cable

机译:35 kV电缆交流破坏电压测试的端接设计

获取原文

摘要

High voltage cables have been employed in industry for underground and underwater power transmission. The reliable operation of a high voltage cable directly depends on the performance of its insulating material. Thus, acceptable dielectric performance must be assured for cables subjected to both alternate current or impulsive overvoltage. In Brazil, one of the standards that aims to evaluate the internal insulating material of high-voltage cables is the standard NBR 10299. This standard provides overvoltage measurements and statistical techniques for evaluating the cable performance. However, there is a difficulty to manage the electric fields at the cable ends when laboratory measurements are made. The problem is intensified in the case of overvoltage tests which can submit the cable to overvoltages of the order of 5 to 10 times greater than the normal operation voltage. During an overvoltage test which aims to evaluate the internal insulating material, surface and external discharges in the air must be avoided. This paper presents simulated results of a termination cable model developed for such overvoltage tests. In order to reduce electric field at the cable termination components and air surrounding the test sample, computer simulations of electric field distribution employing the finite element method were realized for a 35-kV cable. The applied rms voltage used as an overestimate of breakdown voltage was 300 kV. The proposed termination consists in a toroid electrode to conform electric field and a rubber made stress relief cone. The model allows to reduce electric field in air and, thereby, it avoids external discharges and allows evaluate the disruptive voltage of the internal insulation of the cable.
机译:高压电缆已经在工业中用于地下和水下电力传输。高压电缆的可靠运行直接取决于其绝缘材料的性能。因此,对于交流电或脉冲过电压都必须确保可接受的介电性能。在巴西,旨在评估高压电缆内部绝缘材料的标准之一是标准NBR10299。该标准提供了用于评估电缆性能的过电压测量和统计技术。但是,在进行实验室测量时,很难管理电缆末端的电场。在过电压测试的情况下,该问题加剧了,该测试可使电缆承受比正常工作电压大5到10倍的过电压。在旨在评估内部绝缘材料的过电压测试中,必须避免空气中的表面和外部放电。本文介绍了针对此类过压测试而开发的端接电缆模型的仿真结果。为了减少电缆终端组件处的电场和测试样品周围的空气,对35 kV电缆采用了有限元方法进行了电场分布的计算机模拟。高估了击穿电压的均方根电压为300 kV。拟议的终端包括一个环形电极以适应电场和一个橡胶制成的应力消除锥。该模型可以减少空气中的电场,从而避免外部放电,并可以评估电缆内部绝缘的破坏电压。

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