Publication: A nominally second-order cell-centered Lagrangian scheme for simulating elastic–plastic flows on two-dimensional unstructured grids
A nominally second-order cell-centered Lagrangian scheme for simulating elastic–plastic flows on two-dimensional unstructured grids
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Maire, P.-H., Abgrall, R., Breil, J., Loubère, R., & Rebourcet, B. (2013). A nominally second-order cell-centered Lagrangian scheme for simulating elastic–plastic flows on two-dimensional unstructured grids. Journal of Computational Physics, 235(15), 626–665. https://doi.org/10.1016/j.jcp.2012.10.017
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In this paper, we describe a cell-centered Lagrangian scheme devoted to the numerical simulation of solid dynamics on two-dimensional unstructured grids in planar geometry. This numerical method, utilizes the classical elastic-perfectly plastic material model initially proposed by Wilkins [M.L. Wilkins, Calculation of elastic–plastic flow, Meth. Comput. Phys. (1964)]. In this model, the Cauchy stress tensor is decomposed into the sum of its deviatoric part and the thermodynamic pressure which is defined by means of an equation of stat
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Maire, P.-H., Abgrall, R., Breil, J., Loubère, R., & Rebourcet, B. (2013). A nominally second-order cell-centered Lagrangian scheme for simulating elastic–plastic flows on two-dimensional unstructured grids. Journal of Computational Physics, 235(15), 626–665. https://doi.org/10.1016/j.jcp.2012.10.017