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In depth investigation on the physics based mechanisms of the losses in a single silicon steel sheet used in electrical machines

机译:深入调查电机中使用的单芯钢板损失物理机制的深入研究

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In this work a 3D nonlinear time-stepping simulation is used to directly calculate the eddy currents in a standard silicon steel lamination. The Finite Element model contains a lamination stack which is exposed to a rotating magnetic field. The travelling wave in the air-gap consists of a single harmonic which is calculated for a reference machine and based on an equivalent frequency concept. The calculation of the iron losses with the statistical loss model is compared with the direct 3D eddy current simulation. The statistical loss model is underestimating the losses, and it is shown that the influence of the eddy currents on the magnetic field distribution cannot be neglected.
机译:在该工作中,使用3D非线性时间踩踏模拟来直接计算标准硅钢层压中的涡流。有限元模型包含叠层堆叠,其暴露于旋转磁场。气隙中的行进波由单个谐波组成,该谐波是针对参考机器计算并基于等同的频率概念组成。将使用统计损失模型的铁损耗与直接3D涡流模拟进行比较。统计损失模型低估了损失,并表明涡流对磁场分布的影响不能被忽略。

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