DocumentCode :
1801655
Title :
Parallel finite element analysis of electric field in aluminum reduction cell based on domain decomposition method
Author :
Zhao Xian-yong ; Cen Lihui ; Chen Xiao-fang ; Gui Wei-hua ; Sun Chen-wei ; Yang Chun-hua
Author_Institution :
Sch. of Inf. Sci. & Eng., Central South Univ., Changsha, China
fYear :
2013
fDate :
26-28 July 2013
Firstpage :
8501
Lastpage :
8506
Abstract :
Finite element analysis for large-scale complicated structure such as aluminum reduction cell makes higher demand on memory capacity and calculation speed, resulting in failure or inefficiency of traditional serial computation for such large-scale problems constantly. The parallelization of Jacobi preconditioned conjugate gradient (PCG) algorithm and boundary conditions processing is discussed based on domain decomposition method (DDM). And the storage of coefficient matrix for each sub-domain is studied based on element-by-element (EBE) strategy. Coordinate-based division is used for task partition considering structural characteristics of the aluminum reduction cell. Subsequently, parallel program of finite element analysis based on DDM is developed using C language and MPI standard library, and then applied to numeric simulation of electric field distribution in aluminum reduction cell. Parallel performance of both entire and each part of the program developed is analyzed and parallel efficiency of DDM and EBE method is compared. Experiment results show that the method is of significantly high acceleration performance and can greatly shorten the calculation time, which indicates the effectiveness of DDM´s application in parallel finite element analysis of large-scale complicated structures.
Keywords :
C language; Jacobian matrices; aluminium; conjugate gradient methods; electric fields; finite element analysis; metallurgy; parallel programming; production engineering computing; C language; DDM method; EBE method; Jacobi preconditioned conjugate gradient algorithm; MPI standard library; PCG algorithm; aluminum reduction cell; boundary condition processing; calculation speed; coefficient matrix; coordinate-based division; domain decomposition method; electric field; electric field distribution; element-by-element strategy; large-scale complicated structure; large-scale problems; memory capacity; numeric simulation; parallel finite element analysis; parallel program; Algorithm design and analysis; Aluminum; Analytical models; Boundary conditions; Finite element analysis; Program processors; Vectors; Aluminum Reduction Cell; Domain Decomposition Method; Electric Field; Parallel Finite Element Analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (CCC), 2013 32nd Chinese
Conference_Location :
Xi´an
Type :
conf
Filename :
6640945
Link To Document :
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