Study on the Arc Characteristics of Insulator Creeping Discharge under High Velocity Air

G. Zhang, Xueqin Zhang, Bo Wang, Qing Du, Yujun Guo, Guangning Wu
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Abstract

The roof insulator of high-speed trains is the key equipment for high-voltage isolation and mechanical support of pantographs, and its good insulation service performance is the basic condition to ensure the safe operation of trains. The roof insulation system is the weak link of train insulation performance, therefore, it is necessary to conduct relevant research on the arcing characteristics of roof insulators along the surface discharge under high speed airflow, and to investigate the discharge characteristics of insulators along the surface of high speed trains, which is an important problem that needs to be solved in the process of high speed railroad safety operation. In this paper, surface discharge tests were conducted on insulators using wind tunnel system to obtain the motion characteristics of insulator surface discharge photons at different airflow velocities and the surface discharge arcs of insulators at different airflow velocities. It is found that the surface discharge arc position of the insulator moves significantly to the side and back with the increase of airflow speed; the UV photon and corona discharge area of the insulator move backward with the increase of airflow speed, revealing the surface arc motion characteristics of the insulator under high speed airflow. Therefore, the research of this paper provides important theoretical support for the insulation design and insulation fit of high-speed trains, which ensures the safe and stable operation of high-speed trains.
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高速空气作用下绝缘子蠕变放电电弧特性研究
高速列车车顶绝缘子是受电弓高压隔离和机械支撑的关键设备,其良好的绝缘使用性能是保证列车安全运行的基本条件。车顶绝缘系统是列车绝缘性能的薄弱环节,因此,有必要对高速气流作用下车顶绝缘子沿面放电电弧特性进行相关研究,研究高速列车沿面放电绝缘子特性,这是高速铁路安全运行过程中需要解决的重要问题。本文利用风洞系统对绝缘子进行了表面放电试验,得到了不同气流速度下绝缘子表面放电光子的运动特性和不同气流速度下绝缘子的表面放电弧。研究发现,随着气流速度的增大,绝缘子表面放电电弧位置显著向两侧和后方移动;随着气流速度的增加,绝缘子的紫外光子和电晕放电区域向后移动,揭示了高速气流下绝缘子的表面电弧运动特性。因此,本文的研究为高速列车的绝缘设计和绝缘配合提供了重要的理论支持,保证了高速列车的安全稳定运行。
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