首页> 外文会议>IEEE International Conference on High Voltage Engineering and Application >Simulation and Analysis of Corona Discharge in Insulating Oil from Power Frequency to Very Low Frequency
【24h】

Simulation and Analysis of Corona Discharge in Insulating Oil from Power Frequency to Very Low Frequency

机译:电源频率与极低频率绝缘油电晕放电的仿真分析

获取原文

摘要

Partial discharge (PD) diagnostic tests plays an important role on condition monitoring and fault diagnosis of power equipment insulation. With the very low frequency (VLF) diagnostic test widely used in the power system, the power capacity can be remarkably reduced by lowering the applied frequency. However, simulating the corona discharge process in insulating oil from power frequency to very low frequency is difficult because the corona discharge process in insulating oil at different frequencies takes much longer than a single corona discharge in insulating oil. Therefore, it is necessary to establish the simulation and experiment of corona discharge in insulating oil from power frequency to very low frequency for this problem. A simulation model of corona discharge in insulating oil from power frequency to very low frequency based on the finite element method is proposed in this paper, in which needle-plate electrode model based on CIGRE Method II was selected. Then making the dielectric constant of materials at frequencies from 50 Hz to 0.1 Hz was measured from experiments as parameter variable. Finally, with simulation model based on the Poisson equation and hydrodynamic continuity equations performed in COMSOL Multiphysics, the current intensity, the distribution of electric field intensity, and the development of streamer in corona discharge in insulating oil were analyzed. According to the simulation results, with the decrease of frequency, the electric field in insulating oil increased slightly at first and then decreased sharply. Simulation results were in good agreement with experiments, in which the maximum discharge, average discharge, and pulse repetition rate decreased significantly at low frequencies. This paper shows the characteristics of corona discharge in insulating oil from power frequency to very low frequency by simulation and experiment, providing the reference for insulation diagnosis of power equipment with PD test at very low frequency and studying the mechanism of frequency effect on corona discharge.
机译:局部放电(PD)诊断测试在电力设备绝缘的状态监测和故障诊断中起着重要作用。利用非常低的频率(VLF)诊断测试广泛用于电力系统,通过降低施加的频率可以显着降低功率容量。然而,模拟从功率频率到极低频率的绝缘油中的电晕放电过程很难,因为不同频率下绝缘油中的电晕放电过程比绝缘油中的单个电晕放电比单个电晕放电更长。因此,有必要建立在从功率频率到极低频率的绝缘油中的电晕放电的模拟和实验。本文提出了一种基于有限元法的功率频率对极低频率的电晕放电的模拟模型,选择了基于CIGRE方法II的针板电极模型。然后通过作为参数变量的实验测量从50Hz至0.1Hz的频率下的材料的介电常数。最后,利用基于泊松方程的仿真模型和COMSOL多体学中的流体动力连续性方程,分析了电流强度,电场强度的分布,以及绝缘油中的电晕放电中的拖缆的发展。根据仿真结果,随着频率的降低,绝缘油中的电场首先略微增加,然后急剧下降。仿真结果与实验吻合良好,其中最大放电,平均放电和脉冲重复率在低频下显着降低。本文展示了通过仿真和实验从功率频率到极低频率的绝缘油电晕放电的特性,为电力设备的绝缘诊断提供了非常低的频率,研究了电晕放电频率效应机制的参考。

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