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Diagnosis of electron temperature of arc plasma in vacuum circuit breakers

机译:真空断路器中电弧等离子体的电子温度诊断

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Plasma parameters of vacuum arc, such as electron temperature, electron density and ionization etc. are very important to the development of vacuum circuit interrupters. However, few methods are taken on the plasma parameter diagnosis. Here, a new way to get arc plasma parameters in vacuum circuit interrupters is proposed. The feasibility of diagnosis of electron temperature of arc plasma parameters in vacuum interrupters according to CCD (Charge Coupled Device) digital image processing is analyzed. A set of experimental setup based on a demountable vacuum chamber is designed. An images collecting system using high-speed and high-resolution camera CCD is built. Vacuum arc can be ignited in the demountable chamber and the images can be captured by CCD. Combined with the principle of temperature measurement with colorimetric method, the distribution curve of electron temperature in vacuum arc can be got in the condition of low voltage and high current. From the results we can see that electron temperature in the arc center is higher than those in other places, and the highest temperature in the distribution of electron temperature is about 2.9eV, which agrees well with other's results diagnosed by probes or other method. The feasibility of CCD method is also validated by the experimental results.
机译:真空电弧的等离子体参数,例如电子温度,电子密度和电离等,对真空断路器的发展非常重要。但是,很少有方法用于血浆参数诊断。在此,提出了一种在真空断路器中获得电弧等离子体参数的新方法。分析了根据CCD(电荷耦合器件)数字图像处理诊断真空灭弧室中电弧等离子体参数的电子温度的可行性。设计了一套基于可拆卸真空室的实验装置。建立了使用高速高分辨率CCD的图像采集系统。真空电弧可以在可拆卸腔中点燃,并且可以通过CCD捕获图像。结合比色法测温原理,可以得到低电压,大电流条件下真空电弧中电子温度的分布曲线。从结果可以看出,电弧中心的电子温度高于其他地方,并且电子温度分布中的最高温度约为2.9eV,这与通过探针或其他方法诊断出的其他结果非常吻合。实验结果也验证了CCD方法的可行性。

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