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An In-depth Investigation of the Effect of Oil Pressure on the Complete Statistical Performance of a High-pressure Flowing Oil Switch

机译:深入研究油压对高压流动油开关的完整统计性能的影响

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A high-pressure flowing oil dielectric switch was developed for high-performance, high-voltage switching. It was evaluated by a team at the University of Missouri–Columbia. The switch was designed to produce a continuous train of nanosecond-rise electrical impulses, with a peak output power ranging up to several gigawatts, and at repetition frequencies ranging up to several kilohertz. High-pressure flowing oil was proposed for the switching medium as a means of enabling the rapid recovery of the insulating properties of the dielectric following electrical breakdown. The switch was developed for self-breakdown operation, with an anticipated lifetime of greater than $10^{7}$ switching cycles. An experimental study of the statistical performance of the high-pressure flowing oil switch was conducted over a range of oil pressures from 0.5 to10 MPa, oil flow, peak modulator charge voltages from 12.5 to 25.0 kV, gap separations from 0.50 to 1.00 mm, and at an oil flow rate of 20 Lpm. The switch was designed for self-breakdown operation at repetition frequencies of up to 100 Hz, though the experiment was conducted at 2 Hz. The breakdown electric field strength was found to follow a Weibull probability density function. The effect of increased oil pressure was to flatten the distribution with an asymmetric negative skew. The peak charge voltage was found to have virtually no effect on normal breakdown. The gap separation produced the largest effects observed, resulting in an increase in the average breakdown electric field strength with decreased gap separation, and a decrease in variance with increasing gap separation.
机译:开发了用于高性能,高压开关的高压流动油介电开关。它是由密苏里大学哥伦比亚大学的一个团队评估的。该开关旨在产生连续的纳秒级电脉冲序列,峰值输出功率高达几吉瓦,重复频率高达几千赫兹。提出了用于开关介质的高压流动油,作为在电击穿之后能够快速恢复电介质的绝缘性能的手段。该开关专为自击穿操作而开发,预期使用寿命超过$ 10 ^ {7} $个开关周期。在0.5至10 MPa的油压,油流量,12.5至25.0 kV的峰值调制器充电电压,0.50至1.00 mm的间隙间隔以及油流量为20 Lpm。该开关专为在高达100 Hz的重复频率下进行自击穿操作而设计,尽管实验是在2 Hz下进行的。发现击穿电场强度遵循威布尔概率密度函数。油压升高的作用是使分布不均匀且负偏斜变平。发现峰值充电电压实际上对正常击穿没有影响。间隙分离产生了观察到的最大影响,导致平均击穿电场强度随着间隙分离的减小而增加,并且随着间隙分离的增加而减小。

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