在介质空隙中低压放电

E. Husain, R. Nema
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引用次数: 2

摘要

当空隙完全封闭在绝缘中时,局部放电的开始受到空隙壁的影响。我们测量了在大气压以下的不同压力下的放电开始,并显示了压力对不同d/t '(空隙直径/空隙深度)的影响,d/t '用作空隙尺寸的参数。当d/t′增大时,存在一个极限情况,超过该极限情况,放电起始电压Vi与开孔相似。Vi的增加速率与孔洞直径有关。在相对较低的压力下,放电开始受空隙尺寸的影响不大,这可以归因于在pt '(压力×空隙深度)范围内,气体的击穿电压变化缓慢。这些观察结果有助于理解在低压下干燥和浸渍的电缆、电容器、套管或环氧树脂浇注设备的绝缘系统中的放电,这些设备含有大气压下的气囊。该研究对高空隔热设计和航天器隔热也具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Discharges at low pressures in dielectric voids
When voids are fully enclosed in insulation, the inception of partial discharges is affected by the walls of voids. We have measured the discharge inception at different pressures below atmospheric pressure and shown the effect of pressure for different d/t′ (void diameter/void depth) which is used as a parameter of void dimensions. When d/t′ increases, there is a limiting case beyond which the discharge inception voltage Vi is similar to open voids. The rate of increase of Vi depends on the void diameter. At relatively low pressures the discharge inception is not much affected by void dimensions and this can be attributed to the fact that in this range of pt′ (pressure × void depth), the breakdown voltage of gas changes slowly. The observations are useful in understanding discharges in the insulation system of cables, capacitors, bushings or epoxy cast equipment which are dried and impregnated at low pressures containing gas pockets at sub-atmospheric pressures. The studies are also important for high altitude insulation design and spacecraft insulation.
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