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Development and testing of stable, invariant, isoparametric curvilinear 2- and 3-D hybrid-stress elements - MaRDI portal

Development and testing of stable, invariant, isoparametric curvilinear 2- and 3-D hybrid-stress elements (Q791350)

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scientific article; zbMATH DE number 3850587
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English
Development and testing of stable, invariant, isoparametric curvilinear 2- and 3-D hybrid-stress elements
scientific article; zbMATH DE number 3850587

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    Development and testing of stable, invariant, isoparametric curvilinear 2- and 3-D hybrid-stress elements (English)
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    1984
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    Linear and quadratic Serendipity hybrid-stress elements are examined in respect of stability, coordinate invariance, and optimality. A formulation based upon symmetry group theory successfully addresses these issues in undistorted geometries and is fully detailed for plane elements. The resulting least-order stable invariant stress polynomials can be applied as astute approximations in distorted cases through a variety of tensor components and variational principles. A distortion sensitivity study for two- and three-dimensional elements provides favourable numerical comparisons with the assumed displacement method.
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    linear and quadratic Serendipity hybrid-stress elements
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    stability, coordinate invariance
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    optimality
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    symmetry group theory
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    undistorted geometries
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    plane elements
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    least-order stable invariant stress polynomials
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    distortion sensitivity
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    two- and three-dimensional elements
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    numerical comparisons
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    displacement method
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