A coordinate-free guide to the mechanics of thin shells

Fuente: arXiv
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Main Author: Tomassetti, Giuseppe
Format: Preprint
Published: 2023
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_version_ 1866909401640599552
author Tomassetti, Giuseppe
author_facet Tomassetti, Giuseppe
contents In this tutorial, we provide a coordinate-free derivation of the system of equations that govern equilibrium of a thin shell that can undergo shear. This system involves tensorial fields representing the internal force and couple per unit length that adjacent parts of the shell exchange at their common boundary. By an appropriate decomposition of those quantities, we obtain a representation of the internal power in terms of time derivatives of suitable strain measures. Subsequently, we propose constitutive equations that employ these strain measures as independent variables. After specializing the theory to the case of unshearable shells, we linearize the resulting equations. As an application, we study the free vibrations of a pressurized spherical shell, showcasing the advantages of a coordinate-free perspective, which simplifies both the deduction and the solution of the final governing equations.
format Preprint
id arxiv_https___arxiv_org_abs_2305_08884
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A coordinate-free guide to the mechanics of thin shells
Tomassetti, Giuseppe
Classical Physics
74K25, 35Q74
In this tutorial, we provide a coordinate-free derivation of the system of equations that govern equilibrium of a thin shell that can undergo shear. This system involves tensorial fields representing the internal force and couple per unit length that adjacent parts of the shell exchange at their common boundary. By an appropriate decomposition of those quantities, we obtain a representation of the internal power in terms of time derivatives of suitable strain measures. Subsequently, we propose constitutive equations that employ these strain measures as independent variables. After specializing the theory to the case of unshearable shells, we linearize the resulting equations. As an application, we study the free vibrations of a pressurized spherical shell, showcasing the advantages of a coordinate-free perspective, which simplifies both the deduction and the solution of the final governing equations.
title A coordinate-free guide to the mechanics of thin shells
topic Classical Physics
74K25, 35Q74
url https://arxiv.org/abs/2305.08884