Construct accurate multi-continuum micromorphic homogenisations in multi-D space-time with computer algebra

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1. Verfasser: Roberts, A. J.
Format: Preprint
Veröffentlicht: 2024
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author Roberts, A. J.
author_facet Roberts, A. J.
contents Homogenisation empowers the efficient macroscale system level prediction of physical scenarios with intricate microscale structures. Here we develop an innovative powerful, rigorous and flexible framework for asymptotic homogenisation of dynamics at the \emph{finite} scale separation of real physics, with proven results underpinned by modern dynamical systems theory. The novel systematic approach removes most of the usual assumptions, whether implicit or explicit, of other methodologies. By no longer assuming averages the methodology constructs so-called multi-continuum or micromorphic homogenisations systematically informed by the microscale physics. The developed framework and approach enables a user to straightforwardly choose and create such homogenisations with clear physical and theoretical support, and of highly controllable accuracy and fidelity.
format Preprint
id arxiv_https___arxiv_org_abs_2407_03483
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Construct accurate multi-continuum micromorphic homogenisations in multi-D space-time with computer algebra
Roberts, A. J.
Dynamical Systems
Mathematical Software
Analysis of PDEs
35B27, 74H10, 37L10, 35B40
Homogenisation empowers the efficient macroscale system level prediction of physical scenarios with intricate microscale structures. Here we develop an innovative powerful, rigorous and flexible framework for asymptotic homogenisation of dynamics at the \emph{finite} scale separation of real physics, with proven results underpinned by modern dynamical systems theory. The novel systematic approach removes most of the usual assumptions, whether implicit or explicit, of other methodologies. By no longer assuming averages the methodology constructs so-called multi-continuum or micromorphic homogenisations systematically informed by the microscale physics. The developed framework and approach enables a user to straightforwardly choose and create such homogenisations with clear physical and theoretical support, and of highly controllable accuracy and fidelity.
title Construct accurate multi-continuum micromorphic homogenisations in multi-D space-time with computer algebra
topic Dynamical Systems
Mathematical Software
Analysis of PDEs
35B27, 74H10, 37L10, 35B40
url https://arxiv.org/abs/2407.03483