A novel four-node quadrilateral element with continuous nodal stress

Formulation and numerical evaluation of a novel four-node quadrilateral element with continuous nodal stress(Q4-CNS)are presented.Q4-CNS can be regarded as an improved hybrid FE-meshless four-node quadrilateral element(FE-LSPIM QUAD4), which is a hybrid FE-meshless method.Derivatives of Q4-CNS are c...

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Bibliographic Details
Published inApplied mathematics and mechanics Vol. 30; no. 12; pp. 1519 - 1532
Main Author 唐旭海 郑超 吴圣川 张建海
Format Journal Article
LanguageEnglish
Published Heidelberg Shanghai University Press 01.12.2009
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ISSN0253-4827
1573-2754
DOI10.1007/s10483-009-1204-1

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Summary:Formulation and numerical evaluation of a novel four-node quadrilateral element with continuous nodal stress(Q4-CNS)are presented.Q4-CNS can be regarded as an improved hybrid FE-meshless four-node quadrilateral element(FE-LSPIM QUAD4), which is a hybrid FE-meshless method.Derivatives of Q4-CNS are continuous at nodes, so the continuous nodal stress can be obtained without any smoothing operation.It is found that,compared with the standard four-node quadrilateral element(QUAD4),Q4- CNS can achieve significantly better accuracy and higher convergence rate.It is also found that Q4-CNS exhibits high tolerance to mesh distortion.Moreover,since derivatives of Q4-CNS shape functions are continuous at nodes,Q4-CNS is potentially useful for the problem of bending plate and shell models.
Bibliography:Q4-CNS, four-node quadrilateral element, partition of unity, continuousnodal stress, accuracy, mesh distortion
31-1650/O1
O241.82
O343.1
ObjectType-Article-2
SourceType-Scholarly Journals-1
ObjectType-Feature-1
content type line 23
ISSN:0253-4827
1573-2754
DOI:10.1007/s10483-009-1204-1