Nonlinear Continua [electronic resource] / by Eduardo N. Dvorkin, Marcela B. Goldschmit.

Por: Dvorkin, Eduardo N [author.]Colaborador(es): Goldschmit, Marcela B [author.]Tipo de material: TextoTextoSeries Computational Fluid and Solid MechanicsEditor: Berlin, Heidelberg : Springer Berlin Heidelberg, 2005Descripción: XII, 260 p. 30 illus. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9783540292647Trabajos contenidos: SpringerLink (Online service)Tema(s): Engineering | Global differential geometry | Mechanics | Materials | Hydraulic engineering | Engineering | Continuum Mechanics and Mechanics of Materials | Differential Geometry | Mechanics | Engineering Fluid Dynamics | Engineering Thermodynamics, Transport PhenomenaFormatos físicos adicionales: Sin títuloClasificación CDD: 620.1 Clasificación LoC:TA405-409.3QA808.2Recursos en línea: de clik aquí para ver el libro electrónico
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Springer eBooksResumen: This book develops a modern presentation of Continuum Mechanics, oriented towards numerical applications in the fields of nonlinear analysis of solids, structures and fluid mechanics. The kinematics of the continuum deformation, including pull-back / push-forward transformations between different configurations, stress and strain measures, balance principles, constitutive relations and variational principles are developed using general curvilinear coordinates. Even though the mathematical presentation of the different topics is quite rigorous, an effort is made to link formal developments with engineering physical intuition.
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Kinematics of the continuous media -- Stress Tensor -- Balance principles -- Constitutive relations -- Variational methods.

This book develops a modern presentation of Continuum Mechanics, oriented towards numerical applications in the fields of nonlinear analysis of solids, structures and fluid mechanics. The kinematics of the continuum deformation, including pull-back / push-forward transformations between different configurations, stress and strain measures, balance principles, constitutive relations and variational principles are developed using general curvilinear coordinates. Even though the mathematical presentation of the different topics is quite rigorous, an effort is made to link formal developments with engineering physical intuition.

ZDB-2-ENG

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