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Packet-to-Packet Variation of Flux Density in a Three-Phase, Three-Limb Power Transformer Core

机译:三相三臂电力变压器铁心的磁通密度的逐包变化

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The results of an experimental investigation and calculations of the influence of bolt holes and slit edges on the packet to packet variation of flux density in a three-phase, three-limb power transformer core, tested under no load are presented. The overall peak flux density was calculated from the induced voltage in the secondary winding of the core whereas the flux densities in individual packets were calculated from the measured voltage induced across the top and bottom laminations of each packet using a flexible needle probe technique. Three single-phase cores were assembled from the individual packets of the three-phase core. Their effective permeabilities were measured and also calculated from the lamination dimensions and the B-H characteristics of the core material. The experiments and the calculations indicate that the variation in flux density in the three-phase, three-limb core can be attributed to the presence of bolt holes and stress near slit edges of laminations which reduce the effective permeability of the narrow packet considerably.
机译:给出了在无负载条件下测试的三相三臂电力变压器铁心中螺栓孔和狭缝边缘对封包的影响以及封包对封包通量密度变化的影响的实验研究结果和计算结果。总峰值磁通密度是根据铁芯次级绕组中的感应电压计算得出的,而单个包装中的磁通密度是根据使用柔性针探针技术在每个包装的顶部和底部叠片上感应的测量电压计算得出的。从三相铁心的单个包装中组装了三个单相铁心。测量了它们的有效渗透率,并且还根据芯材的层压尺寸和B-H特性进行了计算。实验和计算表明,三相三臂铁心中磁通密度的变化可归因于螺栓孔的存在和叠片狭缝边缘附近的应力,这大大降低了窄盒的有效磁导率。

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