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Transient 3D Finite Element Simulations of the SIS100 Magnet Considering Anisotropic, Nonlinear Material Models for the Ferromagnetic Yoke

机译:考虑各向异性,非线性材料模型的铁磁轭的SIS100磁体的瞬态3D有限元模拟

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摘要

During the design and optimization phase of the superconductive dipole magnets for the new SIS100 synchrotron at GSI Darmstadt, numerical simulations are carried out to predict the losses due to eddy currents in the laminated yoke. In order to represent the ferromagnetic iron in the numerical model, homogenized material models accounting for the anisotropy induced by the lamination are applied. For a simplified geometry of the SIS100 dipole magnet, the eddy-current losses obtained using different anisotropic nonlinear material models are compared.
机译:在GSI达姆施塔特的新型SIS100同步加速器的超导偶极磁体的设计和优化阶段,进行了数值模拟,以预测由于层状轭铁中的涡流引起的损耗。为了在数值模型中表示铁磁铁,应用了考虑到层压引起的各向异性的均质材料模型。为了简化SIS100偶极磁体的几何形状,比较了使用不同各向异性非线性材料模型获得的涡流损耗。

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