Title :
A New Mesh Smoothing Method to Improve the Condition Number of Submatrices of Coefficient Matrix in Edge Finite Element Method
Author :
Noguchi, So ; Takada, Akifumi ; Nobuyama, Fumiaki ; Miwa, M. ; Igarashi, H.
Author_Institution :
Grad. Sch. of Inf. Sci. & Technol., Hokkaido Univ., Sapporo, Japan
Abstract :
A common mesh smoothing method strives to improve the shape quality of all elements. Generally a mesh consisting of only well-shaped elements is desired in finite element analysis. Although a perfect-shaped element yields short computation time, even a well-shaped element, whose shape is close to a regular polygon, sometimes prolongs the computation time of solving the system of equations derived with the edge-based finite element method. In this paper, we propose a new smoothing scheme of improving a convergence property of the system of equations by applying a common mesh smoothing method to some elements, which cause long computation time of the iterative solver. The proposed smoothing scheme utilizes the condition number of submatrices, into which coefficient matrix derived with the edge-based finite element method is subdivided, in order to choose ill-conditioned elements to be smoothed. As a result, the computation time is shortened applying a smoothing process only to the chosen ill-conditioned elements.
Keywords :
finite element analysis; iron; iterative methods; smoothing methods; Fe; coefficient matrix; computation time; convergence property; edge-based finite element method; ill-conditioned elements; iterative solver; mesh smoothing method; perfect-shaped element; regular polygon; shape quality; short computation time; smoothing scheme; system of equations; well-shaped element; Coefficient matrix; finite element method; mesh generation; mesh smoothing;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2013.2239978