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Numerical Analysis of the Effect of Magnetic Shielding on Stray Losses in Adjacent Parts of Power Transformer Ascending Flange

机译:磁屏蔽对电力变压器升压法兰相邻部分中杂散损耗效果的数值分析

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To deal with local overheat of power transformer structural parts, a three-dimensional (3D) finite-element analysis (FEA) model based on surface impedance method is established for simulating the stray losses in adjacent parts of power transformer ascending flange. Through simulation and analysis of shielding effect with different materials, different thickness and at different parts on stray losses under different lead currents, a 4mm copper shielding is determined to reduce the stray losses in ascending flange and tank lid. After adding this shielding structure, the stray losses can be reduced by 55% and 32.5% respectively, which can give a constructive guidance for product design and structure optimization.
机译:为了处理电力变压器结构部件的局部过热,建立了一种基于表面阻抗法的三维(3D)有限元分析(FEA)模型,用于模拟电力变压器上升法兰的相邻部分中的杂散损耗。通过用不同材料的屏蔽效果的仿真和分析,不同厚度和不同部分的不同铅电流下的杂散损失,确定4mm铜屏蔽以减少上升法兰和罐盖中的杂散损失。在添加这种屏蔽结构后,杂散损耗分别可以减少55%和32.5%,这可以为产品设计和结构优化提供建设性指导。

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