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A nominally second-order cell-centered Lagrangian scheme for simulating elastic–plastic flows on two-dimensional unstructured grids

Date

Date

Date
2013
Journal Article
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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

Abstract

Abstract

Abstract

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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1 since deposited on 2013-11-21
Acq. date: 2025-11-13

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Creators (Authors)

Journal/Series Title

Journal/Series Title

Journal/Series Title

Volume

Volume

Volume
235

Number

Number

Number
15

Page range/Item number

Page range/Item number

Page range/Item number
626

Page end

Page end

Page end
665

Item Type

Item Type

Item Type
Journal Article

Dewey Decimal Classifikation

Dewey Decimal Classifikation

Dewey Decimal Classifikation

Language

Language

Language
English

Publication date

Publication date

Publication date
2013-02-15

Date available

Date available

Date available
2013-11-21

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Publisher

ISSN or e-ISSN

ISSN or e-ISSN

ISSN or e-ISSN
0021-9991

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OA Status
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1 since deposited on 2013-11-21
Acq. date: 2025-11-13

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Citation copied

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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