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Experimental Research on Discharge Characteristics and Altitude Corrections for Typical Long Air Gaps at High Altitude Area

机译:高海拔地区典型长气隙流量特性及高度校正的实验研究

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Due to unbalanced energy resources and allocation of productive force in China, our country has to develop and build ultra-high voltage grid. As most of western regions in China are located in high attitude area, the construction of power transmission and transformation project would inevitably go though these different altitude regions with average elevation of over 1000 meters. The atmospheric condition in different altitude regions has distinctive impact on the discharge voltage of outdoor insulators. The experimental results from low altitude regions cannot be used for engineering design of high altitude applications. The characteristic of air gap discharge is the basis of UHV transmission line external insulation design. Studying the discharge characteristics of side-phase discharge and its altitude correction can not only provide reference for choosing air gap distance in power projects at high altitude, but also be used for correcting air gap discharge voltage at high altitude. For the purpose of obtaining air gap discharge voltage and its correction in different altitudes, typical phase-to-phase air gap was selected, and comparative experiments were conducted under the same configuration condition at the different altitude areas such as Wuhan (35m), Chengdu (500m), Guiyang (1000m), Kunming (2100m). The experiments were carried out under extreme weather conditions which considered air pressure, temperature and humidity, including direct alternating current (AC) voltage discharge tests with gap length of 1.3m, lightning impulse (LI) voltage discharge tests with gap length of m, and switching impulse (SI) voltage discharge tests with gap length of 3.3m and 4.2m. According to the test results, the influence of atmospheric conditions and altitude correction factors of AC, LI, and SI discharge voltage were calculated and analyzed systemically in this paper. Finally, altitude correction parameters of typical air gap discharge voltage at high altitude of 2100m in v- ltages of AC, LI and SI were proposed, and the impact of proposed changes in the voltage range under the influence of factors such as temperature, humidity, and barometric pressure, etc., obtained modified formula to meet the needs of practical engineering.
机译:由于中国能源资源的不平衡和生产力的分配,我国不得不发展和建设超高压电网。由于中国西部大部分地区位于高海拔地区,输变电工程的建设不可避免地要经过海拔超过1000米的不同海拔地区。不同海拔地区的大气条件对室外绝缘子的放电电压有显着影响。低海拔地区的实验结果不能用于高海拔应用的工程设计。气隙放电的特性是特高压输电线路外部绝缘设计的基础。研究侧相放电的放电特性及其高度校正,不仅可以为选择高海拔电力项目中的气隙距离提供参考,而且可以用于校正高海拔地区的气隙放电电压。为了获得不同高度的气隙放电电压及其校正,选择典型的相间气隙,并在相同构型条件下,在武汉(35m),成都等不同海拔地区进行了对比实验。 (500m),贵阳(1000m),昆明(2100m)。实验是在考虑了气压,温度和湿度的极端天气条件下进行的,包括间隙长度为1.3m的直流电(AC)电压放电测试,间隙长度为m的雷电脉冲(LI)电压放电测试以及间隙长度分别为3.3m和4.2m的开关脉冲(SI)电压放电测试。根据测试结果,系统地计算和分析了大气条件的影响以及AC,LI和SI放电电压的海拔校正因子。最后,提出了在AC,LI和SI的电压下2100m高空典型气隙放电电压的高度校正参数,并且在温度,湿度,和大气压力等,获得了修改后的公式,可以满足实际工程的需要。

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