Study on the Formation of Capacitor Screen Deformation of Dry-type DC Bushing Core and Its Effect on Electric Field Distribution

Ming Chen, Xuandong Liu, Yuhang Shao, Qiaogen Zhang, Z. Cheng, Yi Zhao
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引用次数: 1

Abstract

As one of the bottlenecks of HVDC technology, the high failure rate of dry-type DC bushing seriously restricts the safe and stable operation of HVDC system. During the actual operation, discharges between capacitor screens occur from time to time, in addition to the screen edges, a certain number of breakdown occur in the middle of screens. For this reason, according to the radial section of a real bushing core, the deformation in the middle screens was analyzed, the curing shrinkage deformation model of the dry-type bushing core was established, and the causes were analyzed. Subsequently, to determine the effect of deformation in the middle of the capacitor screen on the distribution of electric field between capacitor screens, a simulation model of electric field with deformation in the middle of screens was established, and the effect of different deformation on the electric field was studied. The results show that the poor local impregnation results in the deformation in the middle of screens toward the center of alumina tube. In addition, the increase of the deformation area's height, and the decrease of thickness of the capacitor screen and the deformation area's width will enhance the electric field distortion.
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干式直流套管芯电容屏变形的形成及其对电场分布的影响研究
干式直流套管故障率高是直流技术发展的瓶颈之一,严重制约了直流系统的安全稳定运行。在实际运行过程中,电容器屏之间不时发生放电,除屏边缘外,屏中间也会发生一定数量的击穿。为此,根据实际衬套芯的径向截面,对中间筛段的变形进行了分析,建立了干式衬套芯的固化收缩变形模型,并对其原因进行了分析。随后,为确定电容屏中间变形对电容屏间电场分布的影响,建立了具有中间变形的电场仿真模型,研究了不同变形对电场的影响。结果表明:由于局部浸渍不良,导致筛网中间向氧化铝管中心方向变形;此外,变形区高度的增加、电容屏厚度和变形区宽度的减小都会增强电场畸变。
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