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Design of a High Voltage Lead Exit for Power Transformers using Silicone Rubber

机译:使用硅橡胶的电力变压器高压引线出口设计

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High voltage lead exits are used on the high voltage side of power transformers to lead the conductor from the windings to the bushings. These special insulation systems are used in order to increase the dielectric strength of long oil gaps in turrets. Conventionally, high voltage lead exits are composed of paper and pressboard material. They are bulky in construction, and hence, difficult to handle and mount. In this research, silicone rubbers are investigated for their usage as insulation materials for lead exits. Silicone rubbers exhibit excellent thermal, mechanical and chemical stability. They are also flexible materials and have a dielectric constant of 2.8. Hence, with the usage of silicone rubber as the insulation material, the lead exit design can be simplified and the overall size can be reduced. In this contribution, a 400 kV lead exit with a 2-barrier system is taken as the reference lead exit. The cumulative stress at various intervals in the oil gap is determined and is compared to the inception field strength in oil gap curve. The minimum safety factor of the reference design is determined by obtaining the ratio of discharge inception field strength to cumulative field strength at different intervals. Considering the obtained safety factor, the design of high voltage lead exit with silicone rubber insulation is discussed and possible arrangements are presented.
机译:高压引线出口用于电力变压器的高压侧,以引导导体从绕组到衬套。这些特殊的绝缘系统用于增加炮塔中长油间隙的介电强度。传统上,高压铅馈出由纸和压板材料构成。它们在施工中庞大,因此,难以处理和安装。在该研究中,研究了硅胶橡胶,以它们用作用于铅退出的绝缘材料。硅胶橡胶具有出色的热,机械和化学稳定性。它们也是柔性材料,具有2.8的介电常数。因此,随着硅橡胶作为绝缘材料的使用,可以简化引线出口设计并且可以减少整体尺寸。在这一贡献中,用双屏障系统的400 kV铅退出作为参考引线出口。确定油间隙中各种间隔的累积应力,并与油间隙曲线中的初始强度进行比较。参考设计的最小安全系数是通过以不同间隔的累积场强的累积场强的比率来确定的。考虑到所获得的安全系数,讨论了具有硅橡胶绝缘的高压引线出口的设计,并提出了可能的布置。

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