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Potential method in mathematical theories of multi-porosity media

This monograph explores the application of the potential method to three-dimensional problems of the mathematical theories of elasticity and thermoelasticity for multi-porosity materials. These models offer several new possibilities for the study of important problems in engineering and mechanics in...

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Detalles Bibliográficos
Autor principal: Svanadze, Merab
Lenguaje:eng
Publicado: Springer 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-030-28022-2
http://cds.cern.ch/record/2700165
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author Svanadze, Merab
author_facet Svanadze, Merab
author_sort Svanadze, Merab
collection CERN
description This monograph explores the application of the potential method to three-dimensional problems of the mathematical theories of elasticity and thermoelasticity for multi-porosity materials. These models offer several new possibilities for the study of important problems in engineering and mechanics involving multi-porosity materials, including geological materials (e.g., oil, gas, and geothermal reservoirs); manufactured porous materials (e.g., ceramics and pressed powders); and biomaterials (e.g., bone and the human brain). Proceeding from basic to more advanced material, the first part of the book begins with fundamental solutions in elasticity, followed by Galerkin-type solutions and Green’s formulae in elasticity and problems of steady vibrations, quasi-static, and pseudo-oscillations for multi-porosity materials. The next part follows a similar format for thermoelasticity, concluding with a chapter on problems of heat conduction for rigid bodies. The final chapter then presents a number of open research problems to which the results presented here can be applied. All results discussed by the author have not been published previously and offer new insights into these models. Potential Method in Mathematical Theories of Multi-Porosity Media will be a valuable resource for applied mathematicians, mechanical, civil, and aerospace engineers, and researchers studying continuum mechanics. Readers should be knowledgeable in classical theories of elasticity and thermoelasticity.
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spelling cern-27001652021-04-21T18:15:15Zdoi:10.1007/978-3-030-28022-2http://cds.cern.ch/record/2700165engSvanadze, MerabPotential method in mathematical theories of multi-porosity mediaMathematical Physics and MathematicsThis monograph explores the application of the potential method to three-dimensional problems of the mathematical theories of elasticity and thermoelasticity for multi-porosity materials. These models offer several new possibilities for the study of important problems in engineering and mechanics involving multi-porosity materials, including geological materials (e.g., oil, gas, and geothermal reservoirs); manufactured porous materials (e.g., ceramics and pressed powders); and biomaterials (e.g., bone and the human brain). Proceeding from basic to more advanced material, the first part of the book begins with fundamental solutions in elasticity, followed by Galerkin-type solutions and Green’s formulae in elasticity and problems of steady vibrations, quasi-static, and pseudo-oscillations for multi-porosity materials. The next part follows a similar format for thermoelasticity, concluding with a chapter on problems of heat conduction for rigid bodies. The final chapter then presents a number of open research problems to which the results presented here can be applied. All results discussed by the author have not been published previously and offer new insights into these models. Potential Method in Mathematical Theories of Multi-Porosity Media will be a valuable resource for applied mathematicians, mechanical, civil, and aerospace engineers, and researchers studying continuum mechanics. Readers should be knowledgeable in classical theories of elasticity and thermoelasticity.Springeroai:cds.cern.ch:27001652019
spellingShingle Mathematical Physics and Mathematics
Svanadze, Merab
Potential method in mathematical theories of multi-porosity media
title Potential method in mathematical theories of multi-porosity media
title_full Potential method in mathematical theories of multi-porosity media
title_fullStr Potential method in mathematical theories of multi-porosity media
title_full_unstemmed Potential method in mathematical theories of multi-porosity media
title_short Potential method in mathematical theories of multi-porosity media
title_sort potential method in mathematical theories of multi-porosity media
topic Mathematical Physics and Mathematics
url https://dx.doi.org/10.1007/978-3-030-28022-2
http://cds.cern.ch/record/2700165
work_keys_str_mv AT svanadzemerab potentialmethodinmathematicaltheoriesofmultiporositymedia