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Article type: Research Article
Authors: Monneau, R.
Affiliations: CERMICS, Ecole Nationale des Ponts et Chaussées, 6 et 8 avenue Blaise Pascal, Cite Descartes Champs-sur-Marne, 77455-Marne-la-Vallee cedex 2, France
Abstract: We study how three-dimensional linearized elasticity for thin plates can be approximated by a two-dimensional projection. The classical approach using formal asymptotic expansions in powers of the thickness in the Hellinger–Reissner formulation, only provides error estimates in the H1 norm for the displacements, assuming at least L2 regularity for the applied forces, plus additional regularity for some components. Here we make use of elliptic regularity theory. We prove a 3d–2d interior error estimate between the 3d displacement solution and its 2d projection. Moreover the constants involved in our estimate are independent on the particular geometry of the plate. Our approach yields an H2 error estimate, assuming only L2 regularity for the applied forces, which is optimal from the point of view of elliptic regularity theory. We also obtain interior Wk,p and Ck,α error estimates.
Keywords: linear elasticity, plate theory, error estimate, Kirchhoff–Love theory, two-dimensional projection
Journal: Asymptotic Analysis, vol. 49, no. 3-4, pp. 331-344, 2006
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