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Arc Voltage Characteristics in Ultrahigh-Pressure Nitrogen Including Supercritical Region

机译:包含超临界区的超高压氮气中的电弧电压特性

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摘要

A supercritical (SC) fluid is formed when both pressure and temperature of a fluid exceed the critical point, where distinct gas and liquid phases no longer exist. SC fluids demonstrate combined properties of gas and liquid, which make them interesting to investigate them as an arc extinction medium. This paper focuses on the arc voltage characteristics of industrial grade nitrogen subjected to different filling pressures up to 98 bar including SC region. Pressure, arc duration, current, and distance dependence of the arc are investigated by arc voltage measurement. It has been found that arc voltage increases with filling pressure without any abrupt change during the transition from gas into the SC region. Arc duration and current dependence of the arc voltage are not significant in the investigated parameter range. Arc voltage measurement with different electrode gaps suggests that the electrode voltage drop does not vary with filling pressure.
机译:当流体的压力和温度都超过临界点时,就会形成超临界(SC)流体,此时不再存在明显的气相和液相。 SC流体显示出气体和液体的组合特性,这使它们很有趣地被研究为消弧介质。本文着重研究了工业级氮气在包括SC区在内的高达98 bar的不同填充压力下的电弧电压特性。通过电弧电压测量来研究压力,电弧持续时间,电流和电弧的距离​​依赖性。已经发现,在从气体到SC区域的过渡期间,电弧电压随着填充压力而增加,而没有任何突变。在研究的参数范围内,电弧持续时间和电弧电压的电流依赖性不显着。不同电极间隙的电弧电压测量表明,电极压降不会随填充压力而变化。

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