A conforming locking-free approximation for a Koiter shell

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摘要

As in the Naghdi framework, membrane locking is expected for bending-dominated Koiter shell when the thickness decreases. Inspired by Arnold and Brezzi (1997), we design a locking-free mixed finite element method for the Koiter shell. This method is implemented, in terms of the displacement variables, as the minimization of an altered energy over a conforming finite element space. We approximate the tangential displacements by continuous piecewise polynomials augmented by bubbles and the transversal displacements by the consistent HCT (Hsieh–Clough–Tocher) element. The membrane stresses, derived from a partial integration of the membrane energy, is approximated by discontinuous piecewise polynomials. We establish optimal error estimates independent of the thickness under some restrictions which prove that the mixed solution is locking-free. We confirm our theoretical predictions with some numerical tests, in particular, we consider a hemicylindrical shell and an hyperbolic paraboloid shell.

论文关键词:Shell,Koiter,Locking,Mixed formulation

论文评审过程:Received 15 September 2017, Revised 20 May 2018, Accepted 15 July 2018, Available online 10 August 2018, Version of Record 10 August 2018.

论文官网地址:https://doi.org/10.1016/j.amc.2018.07.040