This paper presents a new time-domain finite-element approach for modelling thin sheets with hyperbolic basis functions derived from the well-known steady-state solution of the linear flux diffusion equation. The combination of solutions at different operating frequencies permits the representation of the time-evolution of field quantities in the magnetic field formulation. This approach is here applied to solve a planar shielding problem in harmonic and time-dependent simulations for materials with either linear or nonlinear characteristics. Local and global quantities show good agreement with the reference solutions obtained by the standard finite element method on a complete and representative discretization of the region exposed to a time-varying magnetic field.
翻译:本文件介绍了一种新的时间-域有限要素方法,用于模拟光薄薄片,其双曲基功能来自线性通量扩散方程式的众所周知的稳定状态解决方案;不同操作频率的解决方案组合,可以代表磁场配制的实地数量的时间演变;这种方法在这里用于解决线性或非线性材料的相容和时间依赖模拟中的平面屏蔽问题;当地和全球数量与标准有限要素方法获得的参考解决方案的一致程度良好,该参考解决方案涉及受时间变化磁场影响的区域的完整和有代表性的离散。