高原地区雷害频繁,电气外绝缘性能降低。修建高原铁路隧道需要对隧道净空绝缘间隙进行修正,其中隧道-架空接触网气隙间距是确定隧道净空间隙的重要依据,雷电冲击放电电压是确定该气隙最小间距的控制因素。国内外现有高海拔修正系列标准...高原地区雷害频繁,电气外绝缘性能降低。修建高原铁路隧道需要对隧道净空绝缘间隙进行修正,其中隧道-架空接触网气隙间距是确定隧道净空间隙的重要依据,雷电冲击放电电压是确定该气隙最小间距的控制因素。国内外现有高海拔修正系列标准均不适用于3000 m以上地区,考虑放电基本特性和原理,在人工气候实验室搭建铁路隧道的典型结构,并模拟高原地区气候特点,研究300~700 mm 5个短间隙在243~4000 m 5个海拔条件下的正、负极性雷电冲击放电特性。基于大气实际参数提出了3种隧道净空绝缘间隙修正方法,建议在2、3、4 km海拔处分别按照340、390、440 mm进行隧道-架空接触网绝缘间隙修正,从而确定最小隧道净空高度。该方法可为高海拔地区铁路的电气化设计和改造提供指导,具有工程应用意义。展开更多
The acoustic effects of gas discharge plasma have received much attention.Previous studies have shown that cold plasma and thermal plasma have different principles of sound generation.In this paper,the differences in ...The acoustic effects of gas discharge plasma have received much attention.Previous studies have shown that cold plasma and thermal plasma have different principles of sound generation.In this paper,the differences in the acoustic characteristics of DC bias alternating arc plasma(thermal plasma)in different gas environments(argon,helium,and nitrogen)are investigated by combining experiments and simulations.Many processes in industrial machining involve this arc plasma.It was found that the acoustic characteristics of the arcs of these three gases are significantly different.The two key parameters,electrical and thermal conductivity of the gas,determine the acoustic characteristics of the arc by influencing the electric power of the arc and the heat dissipation through the anode.At the same drive current,the nitrogen arc has the largest voltage drop and the helium arc has the highest electroacoustic conversion efficiency.This results in the acoustic pressure amplitude being helium,nitrogen,and argon in descending order.The research contributes to a deeper understanding of the vocalization mechanism of arc plasma and provides theoretical guidance on gas selection for arc acoustic wave applications.展开更多
文摘高原地区雷害频繁,电气外绝缘性能降低。修建高原铁路隧道需要对隧道净空绝缘间隙进行修正,其中隧道-架空接触网气隙间距是确定隧道净空间隙的重要依据,雷电冲击放电电压是确定该气隙最小间距的控制因素。国内外现有高海拔修正系列标准均不适用于3000 m以上地区,考虑放电基本特性和原理,在人工气候实验室搭建铁路隧道的典型结构,并模拟高原地区气候特点,研究300~700 mm 5个短间隙在243~4000 m 5个海拔条件下的正、负极性雷电冲击放电特性。基于大气实际参数提出了3种隧道净空绝缘间隙修正方法,建议在2、3、4 km海拔处分别按照340、390、440 mm进行隧道-架空接触网绝缘间隙修正,从而确定最小隧道净空高度。该方法可为高海拔地区铁路的电气化设计和改造提供指导,具有工程应用意义。
基金Project supported by the National Natural Science Foundation of China(Grant Nos.51877118 and 52077117)。
文摘The acoustic effects of gas discharge plasma have received much attention.Previous studies have shown that cold plasma and thermal plasma have different principles of sound generation.In this paper,the differences in the acoustic characteristics of DC bias alternating arc plasma(thermal plasma)in different gas environments(argon,helium,and nitrogen)are investigated by combining experiments and simulations.Many processes in industrial machining involve this arc plasma.It was found that the acoustic characteristics of the arcs of these three gases are significantly different.The two key parameters,electrical and thermal conductivity of the gas,determine the acoustic characteristics of the arc by influencing the electric power of the arc and the heat dissipation through the anode.At the same drive current,the nitrogen arc has the largest voltage drop and the helium arc has the highest electroacoustic conversion efficiency.This results in the acoustic pressure amplitude being helium,nitrogen,and argon in descending order.The research contributes to a deeper understanding of the vocalization mechanism of arc plasma and provides theoretical guidance on gas selection for arc acoustic wave applications.