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Electric Field Interaction in the Inter-Phase Region of Transformers

机译:变压器相互相位区域中的电场相互作用

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Large three-phase power transformers normally consist of three cylindrical coil sets (phase windings) assembled side by side in line. The high voltage winding of each phase is generally the outermost coil. The space between the phase windings is called the inter-phase region. Insulating sheets of pressboard, are placed between the phase windings to form dielectric barriers to prevent flashover between the phases. The insulation design is often a multi-layer arrangement of boards and oil gaps. A small number of transformers have been affected by the phenomenon of creeping discharge on the surface of the pressboard barriers. The mechanism of this phenomenon is not well understood. The paper describes the test facility which has been developed to model the inter-phase barrier region. Two independent electric fields are used to re-create the electric field profile in the barrier region. A discharge source is introduced into the resultant electric field and applied onto the pressboard surface to explore the effect of the electric field, both along and perpendicular to the barrier, on the discharge. Initial results show that the magnitude and density of discharge is affected by the phase relationship between the interacting fields.
机译:大型三相电力变压器通常由三个圆柱形线圈组(相绕组)组装在线并排组装。每个相的高压绕组通常是最外线线圈。相绕组之间的空间称为相互相位区域。压板的绝缘片放置在相绕组之间以形成介电屏障,以防止相之间的闪光灯。绝缘设计通常是板和油间隙的多层排列。少数变压器受到压板屏障表面上的爬行排出现象的影响。这种现象的机制尚不清楚。本文介绍了已经开发的测试设施,以模拟相相屏障区域。两个独立的电场用于重新创建阻挡区域中的电场轮廓。将排出源引入所得到的电场并施加到压板表面上,以探索电场,沿着放电探索电场的效果和垂直于屏障。初始结果表明,放电的幅度和密度受相互作用场之间的相位关系的影响。

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