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首页> 外文期刊>IEEE Transactions on Power Delivery >Voltage-time characteristics for steep-front impulse voltages of particle-contaminated spacers in SF/sub 6/ gas-insulated switchgear
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Voltage-time characteristics for steep-front impulse voltages of particle-contaminated spacers in SF/sub 6/ gas-insulated switchgear

机译:SF / sub 6 /气体绝缘开关设备中受颗粒污染的垫片的陡峭前冲电压的电压时间特性

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摘要

The voltage-time characteristics of spacer surfaces for steep-front impulse waves are investigated under a particle-contaminated condition in SF/sub 6/ gas. The characteristics are measured as a function of particle length, particle position, and space shapes. Flashover voltages monotonically increase in the submicrosecond region as time to flashover is shorter, and are a minimum in the 1 mu s region. Applicability of the equal voltage-time area criterion for estimating the voltage-time characteristics is discussed and the estimation is clarified. Moreover, it is demonstrated that an optimized spacer with ribs greatly improves flashover voltages in the submicrosecond region as well as in the 1 mu s and power frequency region.
机译:在SF / sub 6 /气体中被颗粒污染的条件下,研究了陡峭前冲波的隔板表面的电压-时间特性。根据颗粒长度,颗粒位置和空间形状来测量特性。随着击穿时间变短,在亚微秒区域中的击穿电压会单调增加,并且在1μs区域中最小。讨论了等电压-时域准则在估计电压-时间特性中的适用性,并阐明了该估计。此外,已经证明,具有肋的优化间隔件极大地改善了亚微秒区域以及1μs和工频区域中的闪络电压。

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