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The cell method: a purely algebraic computational method in physics and engineering

The Cell Method (CM) is a computational tool that maintains critical multidimensional attributes of physical phenomena in analysis. This information is neglected in the differential formulations of the classical approaches of finite element, boundary element, finite volume, and finite difference ana...

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Detalles Bibliográficos
Autor principal: Ferretti, Elena
Lenguaje:eng
Publicado: Momentum Press 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/2288740
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author Ferretti, Elena
author_facet Ferretti, Elena
author_sort Ferretti, Elena
collection CERN
description The Cell Method (CM) is a computational tool that maintains critical multidimensional attributes of physical phenomena in analysis. This information is neglected in the differential formulations of the classical approaches of finite element, boundary element, finite volume, and finite difference analysis, often leading to numerical instabilities and spurious results. This book highlights the central theoretical concepts of the CM that preserve a more accurate and precise representation of the geometric and topological features of variables for practical problem solving. Important applications occur in fields such as electromagnetics, electrodynamics, solid mechanics and fluids. CM addresses non-locality in continuum mechanics, an especially important circumstance in modeling heterogeneous materials. Professional engineers and scientists, as well as graduate students, are offered: A general overview of physics and its mathematical descriptions; Guidance on how to build direct, discrete formulations; Coverage of the governing equations of the CM, including nonlocality; Explanations of the use of Tonti diagrams; and References for further reading.
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spelling cern-22887402021-04-21T19:02:15Zhttp://cds.cern.ch/record/2288740engFerretti, ElenaThe cell method: a purely algebraic computational method in physics and engineeringGeneral Theoretical PhysicsThe Cell Method (CM) is a computational tool that maintains critical multidimensional attributes of physical phenomena in analysis. This information is neglected in the differential formulations of the classical approaches of finite element, boundary element, finite volume, and finite difference analysis, often leading to numerical instabilities and spurious results. This book highlights the central theoretical concepts of the CM that preserve a more accurate and precise representation of the geometric and topological features of variables for practical problem solving. Important applications occur in fields such as electromagnetics, electrodynamics, solid mechanics and fluids. CM addresses non-locality in continuum mechanics, an especially important circumstance in modeling heterogeneous materials. Professional engineers and scientists, as well as graduate students, are offered: A general overview of physics and its mathematical descriptions; Guidance on how to build direct, discrete formulations; Coverage of the governing equations of the CM, including nonlocality; Explanations of the use of Tonti diagrams; and References for further reading.Momentum Pressoai:cds.cern.ch:22887402014
spellingShingle General Theoretical Physics
Ferretti, Elena
The cell method: a purely algebraic computational method in physics and engineering
title The cell method: a purely algebraic computational method in physics and engineering
title_full The cell method: a purely algebraic computational method in physics and engineering
title_fullStr The cell method: a purely algebraic computational method in physics and engineering
title_full_unstemmed The cell method: a purely algebraic computational method in physics and engineering
title_short The cell method: a purely algebraic computational method in physics and engineering
title_sort cell method: a purely algebraic computational method in physics and engineering
topic General Theoretical Physics
url http://cds.cern.ch/record/2288740
work_keys_str_mv AT ferrettielena thecellmethodapurelyalgebraiccomputationalmethodinphysicsandengineering
AT ferrettielena cellmethodapurelyalgebraiccomputationalmethodinphysicsandengineering