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Adaptive Degrees-of-Freedom Finite-Element Analysis of 3-D Transient Magnetic Problems

机译:3-D瞬态磁性问题的自适应自由度有限元分析

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In this article, an adaptive degrees-of-freedom (DoFs) finite-element method (FEM) is presented to solve the 3-D transient magnetic problems. For time-dependent problems, the error distribution changes over time, and hence mesh coarsening is needed in some regions to keep the number of DoFs small. In this novel h-type adaptive FEM, real mesh coarsening is replaced by an implicit elimination of DoFs, which avoids the following operations after mesh coarsening and the interpolation errors from fine mesh to coarse mesh. The DoFs to be eliminated are constrained by interpolation functions, which are formulated by the master DoFs. To adapt to the 3-D field, a constraint with a variable number of master DoFs and rational coefficients is adopted. The constraints are then integrated into the finite-element (FE) equation in the element level using the slave–master technique, which is followed by a global assembly process. After solving the global FE equation, the solution of constrained DoFs can be recovered from the solution of master DoFs. Several transient problems are computed to showcase the effectiveness of this proposed method.
机译:在本文中,提出了一种自适应的自由度(DOF)有限元方法(FEM)以解决3-D瞬态磁性问题。对于时间依赖的问题,错误分布随时间变化,因此在某些区域中需要网格粗化,以保持小的DOF数量。在这种新型H型自适应有限元件中,通过隐式消除DOF来取代实际网状粗化,这避免了网格粗糙化后的以下操作,并且从微目网格到粗网格的插值误差。要消除的DOF是由插值函数约束,该内插功能由主DOF配制。为了适应3-D字段,采用具有可变数量的主DOF和RATITATION系数的约束。然后使用从属母部技术将约束集成到元素级别中的有限元(FE)方程,然后是全局组装过程。在解决全局Fe方程之后,可以从主DOF的溶液中回收受约束的DOF的溶液。计算了几个瞬态问题以展示该方法的有效性。

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