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Optical investigation of constricted vacuum arcs

机译:收缩真空电弧的光学研究

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摘要

The optical investigation of arcs in transverse magnetic field (TMF) vacuum interrupters is difficult due to the strong motion of the constricted arc in the magnetic field. In order to determine a first estimate of temperature and pressure distribution in such arcs, a non-moving constricted arc is created in a dedicated test geometry with two pin electrodes. Dimensions and currents in this setup are very similar to the TMF case; the arc is mostly cylinder symmetric. The plasma temperature for a plane inside the cathode jet is deduced from spatially resolved optical emission spectroscopy: Using an in-house code the expected spectrum from an arc of given profile is computed taking into account known emission lines in the observation window and (self) absorption. With this the arc profile can be fitted to the experimental spectrum. We find typical peak temperatures around 25 kK, the pressure depends on the current (e.g. 7 bar for 30 kA peak). Furthermore, spatial profiles of temperature and pressure are given.
机译:由于狭窄电弧在磁场中的强烈运动,很难对横向磁场(TMF)真空灭弧室中的电弧进行光学研究。为了确定在这样的电弧中的温度和压力分布的第一估计,在具有两个销电极的专用测试几何形状中创建了不动的收缩电弧。此设置中的尺寸和电流与TMF情况非常相似。弧大部分是圆柱对称的。阴极射流内部平面的等离子体温度是通过空间分辨光学发射光谱法得出的:使用内部代码,考虑到观察窗中的已知发射线和(自身),可以计算给定轮廓的电弧的预期光谱吸收。这样,电弧轮廓可以适合实验光谱。我们发现典型的峰值温度约为25 kK,压力取决于电流(例如,峰值为30 kA时为7 bar)。此外,给出了温度和压力的空间分布。

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