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Dynamic fracture of piezoelectric materials: solution of time-harmonic problems via BIEM

Dynamic Fracture of Piezoelectric Materials focuses on the Boundary Integral Equation Method as an efficient computational tool. The presentation of the theoretical basis of piezoelectricity is followed by sections on fundamental solutions and the numerical realization of the boundary value problems...

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Detalles Bibliográficos
Autores principales: Dineva, Petia, Gross, Dietmar, Müller, Ralf, Rangelov, Tsviatko
Lenguaje:eng
Publicado: Springer 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-319-03961-9
http://cds.cern.ch/record/1646834
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author Dineva, Petia
Gross, Dietmar
Müller, Ralf
Rangelov, Tsviatko
author_facet Dineva, Petia
Gross, Dietmar
Müller, Ralf
Rangelov, Tsviatko
author_sort Dineva, Petia
collection CERN
description Dynamic Fracture of Piezoelectric Materials focuses on the Boundary Integral Equation Method as an efficient computational tool. The presentation of the theoretical basis of piezoelectricity is followed by sections on fundamental solutions and the numerical realization of the boundary value problems. Two major parts of the book are devoted to the solution of problems in homogeneous and inhomogeneous solids. The book includes contributions on coupled electro-mechanical models,computational methods, its validation and the simulation results, which reveal different effects useful for engineering design and practice. The book is self-contained and well-illustrated, and it serves as a graduate-level textbook or as extra reading material for students and researchers.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
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spelling cern-16468342021-04-21T21:20:53Zdoi:10.1007/978-3-319-03961-9http://cds.cern.ch/record/1646834engDineva, PetiaGross, DietmarMüller, RalfRangelov, TsviatkoDynamic fracture of piezoelectric materials: solution of time-harmonic problems via BIEMEngineeringDynamic Fracture of Piezoelectric Materials focuses on the Boundary Integral Equation Method as an efficient computational tool. The presentation of the theoretical basis of piezoelectricity is followed by sections on fundamental solutions and the numerical realization of the boundary value problems. Two major parts of the book are devoted to the solution of problems in homogeneous and inhomogeneous solids. The book includes contributions on coupled electro-mechanical models,computational methods, its validation and the simulation results, which reveal different effects useful for engineering design and practice. The book is self-contained and well-illustrated, and it serves as a graduate-level textbook or as extra reading material for students and researchers.Springeroai:cds.cern.ch:16468342014
spellingShingle Engineering
Dineva, Petia
Gross, Dietmar
Müller, Ralf
Rangelov, Tsviatko
Dynamic fracture of piezoelectric materials: solution of time-harmonic problems via BIEM
title Dynamic fracture of piezoelectric materials: solution of time-harmonic problems via BIEM
title_full Dynamic fracture of piezoelectric materials: solution of time-harmonic problems via BIEM
title_fullStr Dynamic fracture of piezoelectric materials: solution of time-harmonic problems via BIEM
title_full_unstemmed Dynamic fracture of piezoelectric materials: solution of time-harmonic problems via BIEM
title_short Dynamic fracture of piezoelectric materials: solution of time-harmonic problems via BIEM
title_sort dynamic fracture of piezoelectric materials: solution of time-harmonic problems via biem
topic Engineering
url https://dx.doi.org/10.1007/978-3-319-03961-9
http://cds.cern.ch/record/1646834
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AT rangelovtsviatko dynamicfractureofpiezoelectricmaterialssolutionoftimeharmonicproblemsviabiem