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Analysis of thick and thin shell structures by curved finite elements

Sohrabuddin AhmadBruce M. IronsO.C. Zienkiewicz

Abstract

Abstract A general formulation for the curved, arbitrary shape of thick shell finite elements is presented in this paper along with a simplified form for axisymmetric situations. A number of examples ranging from thin to thick shell applications are given, which include a cooling tower, water tanks, an idealized arch dam and an actual arch dam with deformable foundation. A new process using curved, thick shell finite elements is developed overcoming the previous approximations to the geometry of the structure and the neglect of shear deformation. A general formulation for a curved, arbitrary shape of shell is developed as well as a simplified form suitable for axisymmetric situations. Several illustrated examples ranging from thin to thick shell applications are given to assess the accuracy of solution attainable. These examples include a cooling tower, tanks, and an idealized dam for which many alternative solutions were used. The usefulness of the development in the context of arch dams, where a ‘thick shell’ situation exists, leads in practice to a fuller discussion of problems of foundation deformation, etc., so that practical application becomes possible and economical.

Composite Structure Analysis and OptimizationStructural Load-Bearing AnalysisElasticity and Material ModelingShell (structure)Rotational symmetryArchFinite element methodContext (archaeology)Structural engineeringDeformation (meteorology)Arch damTowerFoundation (evidence)
Citations
1,263
FWCI
15.98
field-weighted impact
References
15
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100%
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Cited by
Reduced integration technique in general analysis of plates and shells
International Journal for Numerical Methods in Engineering · 1971 · 1,401 citations
A formulation of general shell elements—the use of mixed interpolation of tensorial components
International Journal for Numerical Methods in Engineering · 1986 · 821 citations
References
Curved, isoparametric, “quadrilateral” elements for finite element analysis
International Journal of Solids and Structures · 1968 · 458 citations
A frontal solution program for finite element analysis
International Journal for Numerical Methods in Engineering · 1970 · 902 citations
The Effect of Transverse Shear Deformation on the Bending of Elastic Plates
Journal of Applied Mechanics · 1945 · 3,276 citations
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