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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Dielectric breakdown characteristics of cryogenic nitrogen gas above liquid nitrogen
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Dielectric breakdown characteristics of cryogenic nitrogen gas above liquid nitrogen

机译:液氮上方低温氮气的介电击穿特性

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We measured the DC dielectric breakdown characteristics of cryogenic nitrogen gas above a liquid nitrogen surface for needle-to-plane and sphere-to-plane electrode configurations. Experimental results revealed that the DC breakdown voltage of cryogenic nitrogen gas increased, as the distance from the gap axis to the liquid nitrogen surface diminished, i.e. as the liquid nitrogen surface got closer to the gap. The breakdown voltage proved to be enhanced not only by the temperature drop of nitrogen gas due to the existence of liquid nitrogen, but also by an effect of vapor mist arising from vaporization of liquid nitrogen. For the quasi-uniform electrode configuration, the relation between breakdown voltage and the gas density times the gap spacing agreed well with the Paschen curve for nitrogen with both the temperature falling and the vapor-mist density considered. For the nonuniform needle electrode, positive breakdown voltage was higher than negative one; the polarity effect was interpreted in terms of the electric field relaxation at the tip of the positive needle resulting from partial discharges observed only for the positive needle.
机译:我们测量了液氮表面上方低温氮气在针对平面和球对平面电极配置中的直流电击穿特性。实验结果表明,随着从气隙轴到液氮表面的距离减小,即随着液氮表面更靠近气隙,低温氮气的直流击穿电压增加。不仅由于液氮的存在而使氮气温度下降,而且由于液氮的汽化而产生的水蒸气雾的影响也提高了击穿电压。对于准均匀电极结构,考虑到温度下降和气雾密度,击穿电压与气体密度乘以间隙间距之间的关系与氮气的Paschen曲线吻合得很好。对于不均匀的针状电极,正的击穿电压高于负的击穿电压。极性效应是根据仅在正极针上观察到的局部放电而在正极针尖处产生的电场弛豫来解释的。

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