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Multi-harmonic approach to determine load dependent local flux variations in power transformer cores

机译:用于确定电力变压器铁芯负载相关局部磁通变化的多谐波方法

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This paper presents a methodology for the calculation of the flux distribution in power transformer cores considering nonlinear material, with reduced computational effort. The calculation is based on a weak coupled multi-harmonic approach. The methodology can be applied to 2D and 3D Finite Element models. The decrease of the computational effort for the proposed approach is 90% compared to a time-stepping method at comparable accuracy. Furthermore, the approach offers a possibility for parallelisation to reduce the overall simulation time. The speed up of the parallelised simulations is nearly linear. The methodology is applied to a single-phase and a three-phase power transformer. Exemplary, the flux distribution for a capacitive load case is determined and the differences in the flux distribution obtained by a 2D and 3D FE model are pointed out. Deviations are significant, due to the fact, that the 2D FE model underestimates the stray fluxes. It is shown, that a 3D FE model of the transformer is required, if the nonlinearity of the core material has to be taken into account.
机译:本文提出了一种在考虑了非线性材料的情况下,以减少的计算量来计算变压器铁芯中磁通量分布的方法。该计算基于弱耦合多谐波方法。该方法可以应用于2D和3D有限元模型。与时间步长方法相比,所提方法的计算量减少了90%以上。此外,该方法提供了并行化的可能性,以减少总体仿真时间。并行仿真的速度几乎是线性的。该方法适用于单相和三相电力变压器。示例性地,确定电容负载情况下的通量分布,并指出通过2D和3D FE模型获得的通量分布的差异。由于2D FE模型低估了杂散通量,因此存在很大的偏差。如图所示,如果必须考虑铁心材料的非线性,则需要变压器的3D FE模型。

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