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首页> 外文期刊>Mathematical research letters: MRL >Synergistic effect of SF6/N2 gas mixtures on surface partial discharge under DC voltage
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Synergistic effect of SF6/N2 gas mixtures on surface partial discharge under DC voltage

机译:SF6 / N2气体混合物在直流电压下表面局部放电的协同作用

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摘要

With the development of high-voltage direct-current (HVDC) transmission, DC gas insulated lines (GIL) with SF6/N2 gas mixtures as insulating medium have been successfully adopted. Space is typically the weak link of equipment insulation where surface discharge is one of the common discharge forms in power equipment. Therefore, research on the surface discharge characteristics of SF6/N2 under DC voltage can contribute to insulation design of SF6/N2 insulated DC GIS, GIL and other power equipment. In this paper, a DC high-voltage experimental system is established to study partial discharge (PD) along insulation surfaces. The characteristics at the initial discharge and the discharge development stages are analyzed in detail. Additionally, the synergistic effect of mixed gas is investigated based on the discharge characteristics and the synergistic effect coefficient is introduced. The experimental results show that the synergistic effect of mixed gas partial discharge inception voltage (PDIV) under high pressure is more obvious compared to low pressure and the discharge quantities of mixed gas is smaller than that of pure SF6 at the discharge development stage. This study on the multiple influencing factors of synergistic effect is expected to provide important insight for exploring the SF6/N2 discharge mechanism and helps decreasing the usage SF6.
机译:随着高压直流(HVDC)变速器的发展,已成功采用了具有SF6 / N2气体混合物的直流气体绝缘线(GIL)作为绝缘介质。空间通常是设备绝缘的弱链路,其中表面放电是电力设备中的常见放电形式之一。因此,在直流电压下SF6 / N2的表面放电特性的研究可以有助于SF6 / N2绝缘直流GIS,GIL和其他电力设备的绝缘设计。本文建立了DC高压实验系统,以沿着绝缘表面研究局部放电(PD)。详细分析了初始放电和放电开发阶段的特性。另外,根据放电特性研究了混合气体的协同效应,并引入了协同效应系数。实验结果表明,与低压相比,在高压下的高压下的混合气体局部放电初始电压(PDIV)的协同效应更明显,并且混合气体的放电量小于放电开发阶段的纯SF6。这项研究对协同效应的多重影响因素有望为探索SF6 / N2排放机制提供重要的见解,并有助于降低使用SF6。

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