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Research on Discharge Characteristics and Altitude Correction of Typical Air-gap in 500kV High-Altitude Substation

机译:500kV高空变电站典型空气间隙的放电特性和高度校正研究

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In order to reduce the construction cost of 500kV substation and improve the design reliability, it is necessary to study the discharge characteristics of typical air gaps. In this paper, the discharge tests of bundle conductor to herringbone frame air gap of UHV substation were carried out in Beijing (0m above sea level, 0m a.s.l) and Tibet (4300m a.s.l). The discharge characteristic curves of AC, switching impulse and lightning impulse were obtained. Then, using the existing altitude correction methods, the calculated value and the tested value of altitude correction factor were compared and analyzed. Finally, using the linear interpolation method, the discharge characteristic curve in the range of 1000m-5000m above sea level was obtained, and the minimum air gap distance was recommended. The research results can be used to guide the engineering design of UHV substation in high altitude areas, and it is also great significant to the design, construction and operation of other power transmission projects in high altitude areas.
机译:为了降低500kV变电站的施工成本并提高设计可靠性,有必要研究典型的空气隙的放电特性。在本文中,在北京(海平面上方0m,0m A.L)和西藏(4300m A.S.L)中进行UHV变电站束导体对人字形变电站框架气隙的放电试验。获得了AC,切换脉冲和闪电脉冲的放电特性曲线。然后,使用现有的高度校正方法,比较和分析计算值和高度校正因子的测试值。最后,使用线性插值方法,获得了海平面上方1000m-5000m的放电特性曲线,建议使用最小的气隙距离。研究结果可用于指导高海拔地区UHV变电站的工程设计,对高海拔地区其他电力传输项目的设计,建设和运行来说也是重要的。

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