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首页> 外文期刊>Australian journal of electrical and electronics engineering >Estimating arc temperature in a model high breaking capacity fuse
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Estimating arc temperature in a model high breaking capacity fuse

机译:估算高分断能力熔断器中的电弧温度

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We present estimates of the temperature at different times during the arcing period of an experimental model of a sand-filled, high-voltage, high breaking capacity fuse. The model fuse does not interrupt current automatically but the technique described here could well be used in actual current-limiting high-voltage fuses to measure the time-resolved arc temperature. The test fuse is energized using a synthetic test circuit which supplies the fuse a prospective current of 4.5 kA at 6 kV, 50 Hz. An optical fibre is used to carry light from the fuse' arc to a spectrograph which is used to isolate spectral lines of interest. The spectrum is recorded by an intensified photodiode array. By gating the image intensifier in front of the diode array a complete spectrum is recorded in several microseconds. By varying the timing of the gate pulse the arc spectrum can be obtained at any desired time during the arcing period. The arc temperature is determined from the relative intensities of Si II spectral lines. The arc temperature is found to vary between 7,000 and 27,000 K at different instants during the arcing period.
机译:我们提供了一个充满沙子,高压,高分断能力的熔断器实验模型在电弧放电期间不同时间的温度估算值。模型熔断器不会自动中断电流,但是此处介绍的技术很可能用于实际的限流高压熔断器中,以测量时间分辨的电弧温度。使用合成测试电路为测试保险丝通电,该合成测试电路在6 kV,50 Hz时为保险丝提供4.5 kA的预期电流。光纤用于将来自保险丝电弧的光传输到光谱仪,该光谱仪用于隔离感兴趣的光谱线。通过增强的光电二极管阵列记录光谱。通过选通二极管阵列前面的图像增强器,可以在几微秒内记录完整的光谱。通过改变栅极脉冲的定时,可以在电弧放电期间的任何期望时间获得电弧光谱。电弧温度由Si II谱线的相对强度确定。发现在电弧放电期间的不同时刻,电弧温度在7,000和27,000 K之间变化。

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