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Numerical and experimental design of three-electrode spark gap for synthetic test circuits

机译:综合测试电路三电极火花隙的数值和实验设计

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The development of a three-electrode spark gap used with a synthetic circuit for circuit breaker testing is considered in this paper. Two types of three-electrode gas insulated spark gaps have been tested: a spark gap with a third electrode being inside the main electrode, and a spark gap with a separate third electrode. Both types of spark gaps were theoretically sized in the optimal way. Several characteristic are determined experimentally: (1) the influence of the gas insulation parameters on the spark gap functioning, (2) the influence of the working and triggering voltages polarities on the spark gap functioning, (3) the influence of the triggering voltage rate-of-rise on the spark gap functioning and (4) the degree of spark gap erosion vs number of operations. Three types of gases were applied: SF/sub 6/ gas, N/sub 2/ gas and a mixture of 60% SF/sub 6/ with 40% N/sub 2/. Also, three electrode materials were used: copper, steel and tungsten. The spark gap switching time and delay time are measured. The statistical analysis of results is presented.
机译:本文考虑了开发用于断路器测试的合成电路的三电极火花隙。已经测试了两种类型的三电极气体绝缘火花隙:带有在主电极内的第三电极的火花隙和带有单独的第三电极的火花隙。理论上,两种类型的火花隙均以最佳方式确定大小。实验确定了几个特性:(1)气体绝缘参数对火花隙功能的影响;(2)工作电压和触发电压极性对火花隙功能的影响;(3)触发电压率的影响火花隙功能的上升曲线;(4)火花隙腐蚀程度与操作次数的关系。施加了三种类型的气体:SF / sub 6 /气体,N / sub 2 /气体和60%SF / sub 6 /和40%N / sub 2 /的混合物。另外,使用了三种电极材料:铜,钢和钨。测量火花隙切换时间和延迟时间。给出了结果的统计分析。

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