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Goal-oriented error estimation applied to direct solution of steady-state analysis with frequency-domain finite element method

Goal-oriented error estimation applied to direct solution of steady-state analysis with frequency-domain finite element method
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摘要 Based on the concept of the constitutive relation error along with the residuals of both the origin and the dual problems, a goal-oriented error estimation method with extended degrees of freedom is developed. It leads to the high quality locM error bounds in the problem of the direct-solution steady-state dynamic analysis with a frequency-domain finite element, which involves the enrichments with plural variable basis functions. The solution of the steady-state dynamic procedure calculates the harmonic response directly in terms of the physical degrees of freedom in the model, which uses the mass, damping, and stiffness matrices of the system. A three-dimensional finite element example is carried out to illustrate the computational procedures. Based on the concept of the constitutive relation error along with the residuals of both the origin and the dual problems, a goal-oriented error estimation method with extended degrees of freedom is developed. It leads to the high quality locM error bounds in the problem of the direct-solution steady-state dynamic analysis with a frequency-domain finite element, which involves the enrichments with plural variable basis functions. The solution of the steady-state dynamic procedure calculates the harmonic response directly in terms of the physical degrees of freedom in the model, which uses the mass, damping, and stiffness matrices of the system. A three-dimensional finite element example is carried out to illustrate the computational procedures.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2012年第5期539-552,共14页 应用数学和力学(英文版)
基金 Project supported by the National Natural Science Foundation of China (No. 10876100)
关键词 goal-oriented error estimation finite element method (FEM) direct-solutionsteady-state analysis frequency domain goal-oriented error estimation, finite element method (FEM), direct-solutionsteady-state analysis, frequency domain
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