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Main Authors: Harakeh, Mohammad, Ban, Michael, de Saxcé, Géry
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2410.23122
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author Harakeh, Mohammad
Ban, Michael
de Saxcé, Géry
author_facet Harakeh, Mohammad
Ban, Michael
de Saxcé, Géry
contents In a previous paper, we proposed a symplectic version of Brezis-Ekeland-Nayroles principle based on the concepts of Hamiltonian inclusions and symplectic polar functions. We applied it to the standard plasticity. The object of this work is to extend the previous formalism to non associated plasticity. For this aim, we generalize the concept of bipotential to dynamical systems. The keystone idea is to define a symplectic bipotential. We present a method to build it from a bipotential. Next, we generalize the symplectic Brezis-Ekeland-Nayroles principle to non associated dissipative laws. We apply it to the non associated plasticity and to the unilateral contact law with Coulomb's dry friction.
format Preprint
id arxiv_https___arxiv_org_abs_2410_23122
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Symplectic bipotentials
Harakeh, Mohammad
Ban, Michael
de Saxcé, Géry
Dynamical Systems
49J40, 53Z05, 70F40, 74C05, 74F10
In a previous paper, we proposed a symplectic version of Brezis-Ekeland-Nayroles principle based on the concepts of Hamiltonian inclusions and symplectic polar functions. We applied it to the standard plasticity. The object of this work is to extend the previous formalism to non associated plasticity. For this aim, we generalize the concept of bipotential to dynamical systems. The keystone idea is to define a symplectic bipotential. We present a method to build it from a bipotential. Next, we generalize the symplectic Brezis-Ekeland-Nayroles principle to non associated dissipative laws. We apply it to the non associated plasticity and to the unilateral contact law with Coulomb's dry friction.
title Symplectic bipotentials
topic Dynamical Systems
49J40, 53Z05, 70F40, 74C05, 74F10
url https://arxiv.org/abs/2410.23122