Title :
An Adaptive Mesh Method in Transient Finite Element Analysis of Magnetic Field Using a Novel Error Estimator
Author :
Zhao, Yanpu ; Zhang, Xiu ; Ho, S.L. ; Fu, W.N.
Author_Institution :
Hong Kong Polytech. Univ., Kowloon, China
Abstract :
A novel error estimator for adaptive mesh refinement in finite element analysis (FEA) of magnetic field using quadratic finite elements is presented. The method uses a novel heuristic a posteriori error estimator, which is easy to compute and simple to implement, as an indicator of the numerical errors of the computed solution. The proposed error estimator is the L2 norm of the difference between the computed quadratic finite element solution and the interpolated linear solution. Throughout the time-stepping process for problems excited by periodic sinusoidal excitations, this error estimator can also be used to efficiently compute the numerical error at each time step and guide the adaptive mesh refinement in transient FEA. A multi-time-step adaptive mesh refinement method is also proposed in this paper for transient problems. The proposed method does not need to interpolate the solution from old mesh to a new adaptively refined mesh in transient FEA and hence there is no interpolation error. The effectiveness of the proposed error estimator is illustrated through several numerical examples being reported in this paper.
Keywords :
error analysis; estimation theory; magnetic fields; mesh generation; L2 norm; adaptive mesh method; interpolated linear solution; magnetic field; multitime-step adaptive mesh refinement method; numerical errors; periodic sinusoidal excitations; posteriori error estimator; quadratic finite element solution; time-stepping process; transient FEA; transient finite element analysis; transient problems; Error analysis; Finite element methods; Magnetic domains; Magnetostatics; Materials; Transient analysis; Adaptive mesh refinement; a posteriori error estimator; finite element method (FEM); magnetic field; numerical method;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2012.2198442