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Multichannel Discharge Characteristics of Gas Switch Gap in SF6-N2 or SF6-Ar Gas Mixtures Under Nanosecond Triggering Pulses

机译:纳秒级触发脉冲下SF6-N2或SF6-Ar气体混合物中气体转换间隙的多通道放电特性%纳秒级触发脉冲下SF6-N2或SF6-Ar气体混合物中气体转换间隙的多通道放电特性

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Experiments were carried out to ascertain multichannel discharge characteristics in a self-designed coaxial field-distortion gas switch filled with SFa-N2 or SF6-Ar gas mixtures of different mixing ratios. In these experiments, the pressure varied from 0.1 MPa to 0.2 MPa, the voltage pulse peak applied to the switch was in the range from 40 kV to 78 kV, and the pulse rise time was 11 ns. The static breakdown strength of the gas switch gap in the switch was also measured. The results show that in general the average number of discharge channels for SF6-Ar or SF6-N2 gas mixture which contains less SFa is larger than that for gas mixture which contains more SF6, however, the average number of channels almost keeps constant as the gas mixing ratio varies when the pulse rise rate is high enough. The static breakdown strength of the gas switch gap decreases slightly as the content of argon or nitrogen increases.
机译:在自行设计的同轴场致畸变气体开关中进行了实验,以确定多通道放电特性,该开关装有不同混合比的SFa-N2或SF6-Ar气体混合物。在这些实验中,压力在0.1 MPa至0.2 MPa之间变化,施加到开关的电压脉冲峰值在40 kV至78 kV范围内,并且脉冲上升时间为11 ns。还测量了开关中气体开关间隙的静态击穿强度。结果表明,总的来说,SFa较少的SF6-Ar或SF6-N2气体混合物的平均排放通道数量要大于SF6较多的气体混合物的平均排放通道数量,但是,随着排放量的增加,平均通道数量几乎保持恒定。当脉冲上升率足够高时,气体混合比会变化。气体开关间隙的静态击穿强度随氩或氮含量的增加而略有降低。

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