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Sparkover in sphere gaps with alternating voltages and perturbed electric fields

机译:交流电压和扰动电场在球形间隙中产生的火花

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Quasi uniform field gaps, namely sphere gaps are quite often used in high voltage laboratories. In the present work, both simulation and experimental results to see the electric stress distribution on breakdown voltage are presented. Considering commonly used vertical arrangement of sphere gaps, disruptive discharge voltages are measured experimentally. These experiments are with one sphere grounded. In order to study the redistribution of electric stresses, experiments have been conducted by placing a hemi-spherically tipped rod (needle), near the gap axis. This rod is placed vertically on the ground plane being at ground potential. Experimental results are reported with the rod diameter of 3 mm and its height 10 cm as a function of sphere-gap separation. Experimental results reported are with power frequency alternating voltages. The simulations corresponding to these experimental conditions are reported to correlate the change in electric field distribution obtained by charge simulation models (CSM). Interpreting the experimental breakdown results in relation with simulation results of geometric electric field is attempted. The results with rod in the vicinity of sphere gap results in to a non axi-symmetric field. These are simulated to obtain the maximum stress on the electrodes.
机译:在高压实验室中经常使用准均匀的场隙,即球隙。在目前的工作中,无论是仿真还是实验结果都可以看到击穿电压上的电应力分布。考虑到球间隙的常用垂直排列,通过实验测量了破坏性放电电压。这些实验是在一个球体接地的情况下进行的。为了研究电应力的重新分布,已经通过在间隙轴附近放置一个半球形的杆(针)进行了实验。该棒垂直放置在处于接地电位的接地平面上。报道了实验结果,其中杆直径为3 mm,杆的高度为10 cm,是球隙分离的函数。报告的实验结果是使用工频交流电压的。据报道,与这些实验条件相对应的模拟与通过电荷模拟模型(CSM)获得的电场分布的变化相关。尝试将实验击穿结果与几何电场的模拟结果进行解释。杆在球体间隙附近的结果导致非轴对称场。对这些进行模拟以获得在电极上的最大应力。

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