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    Analysis of the discontinuous Petrov-Galerkin method with optimal test functions for the Reissner-Mindlin plate bending model

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    Type
    Article
    Authors
    Calo, Victor M. cc
    Collier, Nathan
    Niemi, Antti H.
    KAUST Department
    Computer, Electrical and Mathematical Sciences and Engineering (CEMSE) Division
    Earth Science and Engineering Program
    Environmental Science and Engineering Program
    Numerical Porous Media SRI Center (NumPor)
    Office of the VP
    Physical Science and Engineering (PSE) Division
    Date
    2014-01
    Preprint Posting Date
    2013-01-25
    Permanent link to this record
    http://hdl.handle.net/10754/563294
    
    Metadata
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    Abstract
    We analyze the discontinuous Petrov-Galerkin (DPG) method with optimal test functions when applied to solve the Reissner-Mindlin model of plate bending. We prove that the hybrid variational formulation underlying the DPG method is well-posed (stable) with a thickness-dependent constant in a norm encompassing the L2-norms of the bending moment, the shear force, the transverse deflection and the rotation vector. We then construct a numerical solution scheme based on quadrilateral scalar and vector finite elements of degree p. We show that for affine meshes the discretization inherits the stability of the continuous formulation provided that the optimal test functions are approximated by polynomials of degree p+3. We prove a theoretical error estimate in terms of the mesh size h and polynomial degree p and demonstrate numerical convergence on affine as well as non-affine mesh sequences. © 2013 Elsevier Ltd. All rights reserved.
    Citation
    Calo, V. M., Collier, N. O., & Niemi, A. H. (2014). Analysis of the discontinuous Petrov–Galerkin method with optimal test functions for the Reissner–Mindlin plate bending model. Computers & Mathematics with Applications, 66(12), 2570–2586. doi:10.1016/j.camwa.2013.07.012
    Publisher
    Elsevier BV
    Journal
    Computers & Mathematics with Applications
    DOI
    10.1016/j.camwa.2013.07.012
    arXiv
    1301.6149
    Additional Links
    http://arxiv.org/abs/arXiv:1301.6149v1
    ae974a485f413a2113503eed53cd6c53
    10.1016/j.camwa.2013.07.012
    Scopus Count
    Collections
    Articles; Environmental Science and Engineering Program; Physical Science and Engineering (PSE) Division; Earth Science and Engineering Program; Computer, Electrical and Mathematical Science and Engineering (CEMSE) Division

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