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- W2724201729 abstract "In this work we propose and analyze a novel Hybrid High-Order discretization of a class of (linear and) nonlinear elasticity models in the small deformation regime which are of common use in solid mechanics. The proposed method is valid in two and three space dimensions, it supports general meshes including polyhedral elements and nonmatching interfaces, enables arbitrary approximation order, and the resolution cost can be reduced by statically condensing a large subset of the unknowns for linearized versions of the problem. Additionally, the method satisfies a local principle of virtual work inside each mesh element, with interface tractions that obey the law of action and reaction. A complete analysis covering very general stress-strain laws is carried out, and optimal error estimates are proved. Extensive numerical validation on model test problems is also provided." @default.
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- W2724201729 creator A5037714004 @default.
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- W2724201729 date "2017-01-01" @default.
- W2724201729 modified "2023-10-16" @default.
- W2724201729 title "A Hybrid High-Order Method for Nonlinear Elasticity" @default.
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- W2724201729 doi "https://doi.org/10.1137/16m1105943" @default.
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