Title :
An Irregular Meshless h-p Adaptive Finite Element Analysis Formulation for High Performance Computing Environments
Author :
Ma, Donglin ; McFee, Steve
Author_Institution :
Dept. of Electr. & Comput. Eng., McGill Univ., Montreal, Que.
Abstract :
A new meshless finite element analysis formulation is developed and investigated. The approach is based on a hybrid coupling of conventional meshless theory, and the "irregular-cut" finite element technique. The method provides a near orthogonal hierarchal relationship among local basis functions, and supports the virtually unrestricted introduction and refinement of localized modeling degrees of freedom in a discretization. The formulation is naturally suited for high performance computing environments, and has been developed and implemented for h-p adaptive finite element analysis applications in practical electromagnetics, on the CLUMEQ Supercomputer Centre facilities at McGill University. Computational results based on 2-D and 3-D benchmark analyses support the correctness of the formulation, and demonstrate the computational performance and efficiency of the implementation
Keywords :
computational electromagnetics; electromagnetic coupling; finite element analysis; CLUMEQ Supercomputer Centre facilities; McGill University; benchmark analysis; electromagnetics; high performance computing environments; hybrid coupling; irregular meshless h-p adaptive FEA formulation; irregular-cut finite element technique; local basis functions; localized modeling degrees of freedom; meshless theory; orthogonal hierarchal relationship; performance computing environments; Benchmark testing; Computational modeling; Concurrent computing; Electromagnetic analysis; Finite element methods; High performance computing; Multidimensional systems; Parallel processing; Performance analysis; Supercomputers;
Conference_Titel :
Electromagnetic Field Computation, 2006 12th Biennial IEEE Conference on
Conference_Location :
Miami, FL
Print_ISBN :
1-4244-0320-0
DOI :
10.1109/CEFC-06.2006.1632902