In this paper we investigate an approach for a posteriori error estimation based on recovery of an improved stress ΓΏeld. The qualitative properties of the recovered stress ΓΏeld necessary to obtain a conservative error estimator, i.e. an upper bound on the true error, are given. A speciΓΏc procedure f
NATURAL FREQUENCY ERROR ESTIMATION USING A PATCH RECOVERY TECHNIQUE
β Scribed by D.B. Stephen; G.P. Steven
- Publisher
- Elsevier Science
- Year
- 1997
- Tongue
- English
- Weight
- 342 KB
- Volume
- 200
- Category
- Article
- ISSN
- 0022-460X
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β¦ Synopsis
In computing eigenvalues for a large finite element system, it has been observed that the eigenvalue extractors produce eigenvectors that are in some sense more accurate than their corresponding eigenvalues. In this paper, computational examples are presented to validate this observation. From this observation, a patch type technique is developed based on the eigenvector for one mesh quality to provide an eigenvalue error indicator. Tests show this indicator to be both accurate and reliable.
This technique was first observed by Stephen and Steven for an error estimation for buckling and has been extended in this paper to predict an error for the natural frequency finite element analysis of a structure.
π SIMILAR VOLUMES
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