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Study of the Temperature Effect on Operating Mode of a Thyratron-type Gas-discharge Current Interrupter in a Scheme with Inductive Energy Storage

机译:一种在具有感应储能储存方案中蜂王龙型气体放电电流断路器的温度效应的研究

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This paper presents results of experimental studies the effect of changing operating temperature on the operating mode of thyratron-type gas-discharge current switches in a scheme with inductive energy storage. Analysis of the obtained results made it possible to establish that the average settling time in the continuous-frequency mode for such type of switches is 20–25 min. Based on the distributions of the surface temperature on the functional units of the devices over time, it can be seen that the degree of anode, grid and cathode nodes heating increases towards the anode node at Um≥30 kV, at Um≤30 kV heating degree increases towards the grid and cathode nodes, due to changes in the ratio of switching losses and conduction losses. In the new gas- discharge current interrupter, it was possible to reduce the heating of the grid node by an average of 15-20%, while a temperature change by 70°C leads to a 2-fold increase in a critical charge.
机译:本文介绍了实验研究的结果,在具有感应储能的方案中改变了操作温度对蜂王龙型气体放电电流开关的操作模式的影响。对所得结果的分析使得可以建立这种类型的开关连续频率模式的平均稳定时间为20-25分钟。基于随着时间的推移装置的功能单元对表面温度的分布,可以看出阳极,电网和阴极节点加热的程度朝向阳极节点增加 m ≥30kV,在你 m 由于切换损耗和传导损耗的比率变化,≤30kV加热度朝向电网和阴极节点增加。在新的气体放电电流断续器中,可以将电网节点的加热平均降低了15-20%,而温度变化在70℃下导致临界电荷增加到2倍。

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