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Method of three-dimensional network solution of leakage field of three-phase transformers

机译:三相变压器漏磁场的三维网络求解方法

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摘要

A fast, handy method of assessment of a three-dimensional leakage field distribution and hot-spot localization in three-phase power transformers is proposed. The computational model is based on the reluctance network method. A 3-D leakage field of a three-phase transformer is simulated with an equivalent reluctance of a 3-D network which consists of a lumped MMF within the interwinding gap, active reluctances for nonconductive areas, and complex reluctances in conductive parts. The latter ones take into account the reaction of eddy currents, induced in the tank wall and other metal elements. A corresponding program for an IBM PC/AT computer has been developed which allows an interactive analysis to be done in about 15 s for each structure variant. The proposed method can help to analyze and select optimal structures of 3-D screens and shunts, localize hot spots, etc. Accuracy and error problems are also discussed. The computed results were verified experimentally on several model transformers and compared to 2-D computations for large 240-MVA and other transformers.
机译:提出了一种快速,便捷的方法来评估三相电力变压器中的三维漏磁场分布和热点定位。计算模型基于磁阻网络方法。用3-D网络的等效磁阻模拟了三相变压器的3-D漏磁场,该等效磁阻由绕组间间隙内的集总MMF,非导电区域的有源磁阻和导电部件中的复磁阻组成。后者考虑了在罐壁和其他金属元素中引起的涡流的反应。已经开发了用于IBM PC / AT计算机的相应程序,该程序允许针对每个结构变体在大约15秒内完成交互式分析。所提出的方法可以帮助分析和选择3D屏幕和分流器的最佳结构,定位热点等。还讨论了精度和错误问题。计算结果在多个模型变压器上进行了实验验证,并与大型240-MVA和其他变压器的2D计算进行了比较。

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