CF3I gas mixtures have attracted considerable attention as potential environmentally-friendly alternatives to SF6 gas,owing to their excellent insulating performance.This paper attempts to study the CF3I ternary gas m...CF3I gas mixtures have attracted considerable attention as potential environmentally-friendly alternatives to SF6 gas,owing to their excellent insulating performance.This paper attempts to study the CF3I ternary gas mixtures with c-C4F8 and buffer gases N2 and CO2 by considering dielectric strength from electron transport parameters based on the Boltzmann method and synergistic effect analysis,compared with SF6 gas mixtures.The results confirm that the critical electric field strength of CF3I/c-C4F8/70%CO2 is greater than that of 30%SF6/70%CO2 when the CF3I content is greater than 17%.Moreover,a higher content of c-C4F8 decreases the sensitivity of gas mixtures to an electric field,and this phenomenon is more obvious in CF3I/c-C4F8/CO2 gas mixtures.The synergistic effects for CF3I/c-C4F8/70%N2 were most obvious when the c-C4F8 content was approximately 20%,and for CF3I/c-C4F8/70%CO2 when the c-C4F8 content was approximately 10%.On the basis of this research,CF3I/c-C4F8/70%N2 shows better insulation performance when the c-C4F8 content is in the15%–20%range.For CF3I/c-C4F8/70%CO2,when the c-C4F8 content is in the 10%–15%range,the gas mixtures have excellent performance.Hence,these gas systems might be used as alternative gas mixtures to SF6 in high-voltage equipment.展开更多
高压断路器分合闸过程中触头间隙介质的绝缘强度及其变化是断路器结构设计的重要性能指标。搭建高压断路器触头间隙介质绝缘特性实验回路,测量C_(4)F_(7)N/CO_(2)混合气体断路器空载分合闸过程中不同压强、不同C4F7N含量时触头间隙介质...高压断路器分合闸过程中触头间隙介质的绝缘强度及其变化是断路器结构设计的重要性能指标。搭建高压断路器触头间隙介质绝缘特性实验回路,测量C_(4)F_(7)N/CO_(2)混合气体断路器空载分合闸过程中不同压强、不同C4F7N含量时触头间隙介质的动态击穿电压,研究C_(4)F_(7)N/CO_(2)混合气体断路器的关合预击穿特性和分闸绝缘特性。实验发现,断路器空载分合闸过程中C_(4)F_(7)N/CO_(2)混合气体动态击穿电压存在“低电压击穿”现象;合闸过程中,动态击穿电压分散性较大,C_(4)F_(7)N/CO_(2)混合气体断路器的关合预击穿特性显著劣于SF6断路器,增大压强或增加C4F7N含量对混合气体动态击穿电压分散性的改善不大;正、负极性条件下0.7MPa时9%C_(4)F_(7)N/91%CO_(2)混合气体的分闸平均绝缘强度上升率(rate of rise of dielectric strength,RRDS)分别为49.8kV/ms和42.7kV/ms,具有“反极性”效应;分闸过程中,“低电压击穿”现象主要出现在刚分后2ms(开距约6mm)范围以内,断路器若在此时间(开距)范围内熄弧,极易发生弧后重击穿现象,因此,C_(4)F_(7)N/CO_(2)混合气体断路器结构设计时应避免在此范围内熄弧。展开更多
基金supported by National Natural Science Foundation of China(No.51337006)。
文摘CF3I gas mixtures have attracted considerable attention as potential environmentally-friendly alternatives to SF6 gas,owing to their excellent insulating performance.This paper attempts to study the CF3I ternary gas mixtures with c-C4F8 and buffer gases N2 and CO2 by considering dielectric strength from electron transport parameters based on the Boltzmann method and synergistic effect analysis,compared with SF6 gas mixtures.The results confirm that the critical electric field strength of CF3I/c-C4F8/70%CO2 is greater than that of 30%SF6/70%CO2 when the CF3I content is greater than 17%.Moreover,a higher content of c-C4F8 decreases the sensitivity of gas mixtures to an electric field,and this phenomenon is more obvious in CF3I/c-C4F8/CO2 gas mixtures.The synergistic effects for CF3I/c-C4F8/70%N2 were most obvious when the c-C4F8 content was approximately 20%,and for CF3I/c-C4F8/70%CO2 when the c-C4F8 content was approximately 10%.On the basis of this research,CF3I/c-C4F8/70%N2 shows better insulation performance when the c-C4F8 content is in the15%–20%range.For CF3I/c-C4F8/70%CO2,when the c-C4F8 content is in the 10%–15%range,the gas mixtures have excellent performance.Hence,these gas systems might be used as alternative gas mixtures to SF6 in high-voltage equipment.
文摘高压断路器分合闸过程中触头间隙介质的绝缘强度及其变化是断路器结构设计的重要性能指标。搭建高压断路器触头间隙介质绝缘特性实验回路,测量C_(4)F_(7)N/CO_(2)混合气体断路器空载分合闸过程中不同压强、不同C4F7N含量时触头间隙介质的动态击穿电压,研究C_(4)F_(7)N/CO_(2)混合气体断路器的关合预击穿特性和分闸绝缘特性。实验发现,断路器空载分合闸过程中C_(4)F_(7)N/CO_(2)混合气体动态击穿电压存在“低电压击穿”现象;合闸过程中,动态击穿电压分散性较大,C_(4)F_(7)N/CO_(2)混合气体断路器的关合预击穿特性显著劣于SF6断路器,增大压强或增加C4F7N含量对混合气体动态击穿电压分散性的改善不大;正、负极性条件下0.7MPa时9%C_(4)F_(7)N/91%CO_(2)混合气体的分闸平均绝缘强度上升率(rate of rise of dielectric strength,RRDS)分别为49.8kV/ms和42.7kV/ms,具有“反极性”效应;分闸过程中,“低电压击穿”现象主要出现在刚分后2ms(开距约6mm)范围以内,断路器若在此时间(开距)范围内熄弧,极易发生弧后重击穿现象,因此,C_(4)F_(7)N/CO_(2)混合气体断路器结构设计时应避免在此范围内熄弧。