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Inelastic Analysis of Solids and Structures (Hardcover, 2005 ed.): M. Kojic, Klaus-Jurgen Bathe Inelastic Analysis of Solids and Structures (Hardcover, 2005 ed.)
M. Kojic, Klaus-Jurgen Bathe
R4,426 Discovery Miles 44 260 Ships in 10 - 15 working days

Inelastic Analysis of Solids and Structures presents in a unified manner the physical and theoretical background of inelastic material models and computational methods, and illustrates the behavior of the models in typical engineering conditions. The book describes experimental observations and principles of mechanics, and efficient computational algorithms for stress calculations as typically performed in finite element analysis. The theoretical background is given to an extent necessary to describe the commonly employed material models in metal isotropic and orthotropic plasticity, thermoplasticity and viscoplasticity, and the plasticity of geological materials. The computational algorithms are developed in a unified manner with some detailed derivations of the algorithmic relations. Many solved examples are presented, which are designed to give insight into the material behavior in various engineering conditions, and to demonstrate the application of the computational algorithms.

The Mechanics of Solids and Structures - Hierarchical Modeling and the Finite Element Solution (Hardcover, 2011 ed.): Miguel... The Mechanics of Solids and Structures - Hierarchical Modeling and the Finite Element Solution (Hardcover, 2011 ed.)
Miguel Luiz Bucalem, Klaus-Jurgen Bathe
R4,705 Discovery Miles 47 050 Ships in 10 - 15 working days

In the recent decades, computational procedures have been applied to an increasing extent in engineering and the physical sciences. Mostly, two separate fields have been considered, namely, the analysis of solids and structures and the analysis of fluid flows. These continuous advances in analyses are of much interest to physicists, mathematicians and in particular, engineers. Also, computational fluid and solid mechanics are no longer treated as entirely separate fields of applications, but instead, coupled fluid and solid analysis is being pursued. The objective of the Book Series is to publish monographs, textbooks, and proceedings of conferences of archival value, on any subject of computational fluid dynamics, computational solid and structural mechanics, and computational multi-physics dynamics. The publications are written by and for physicists, mathematicians and engineers and are to emphasize the modeling, analysis and solution of problems in engineering.

The Finite Element Analysis of Shells - Fundamentals (Hardcover, 2nd ed. 2011): Dominique Chapelle, Klaus-Jurgen Bathe The Finite Element Analysis of Shells - Fundamentals (Hardcover, 2nd ed. 2011)
Dominique Chapelle, Klaus-Jurgen Bathe
R6,562 Discovery Miles 65 620 Ships in 10 - 15 working days

This book presents a modern continuum mechanics and mathematical framework to study shell physical behaviors, and to formulate and evaluate finite element procedures. With a view towards the synergy that results from physical and mathematical understanding, the book focuses on the fundamentals of shell theories, their mathematical bases and finite element discretizations. The complexity of the physical behaviors of shells is analysed, and the difficulties to obtain uniformly optimal finite element procedures are identified and studied. Some modern finite element methods are presented for linear and nonlinear analyses. In this Second Edition the authors give new developments in the field and - to make the book more complete - more explanations throughout the text, an enlarged section on general variational formulations and new sections on 3D-shell models, dynamic analyses, and triangular elements. The analysis of shells represents one of the most challenging fields in all of mechanics, and encompasses various fundamental and generally applicable components. Specifically, the material presented in this book regarding geometric descriptions, tensors and mixed variational formulations is fundamental and widely applicable also in other areas of mechanics.

The Mechanics of Solids and Structures - Hierarchical Modeling and the Finite Element Solution (Paperback, 2011 ed.): Miguel... The Mechanics of Solids and Structures - Hierarchical Modeling and the Finite Element Solution (Paperback, 2011 ed.)
Miguel Luiz Bucalem, Klaus-Jurgen Bathe
R4,441 Discovery Miles 44 410 Ships in 10 - 15 working days

In the recent decades, computational procedures have been applied to an increasing extent in engineering and the physical sciences. Mostly, two separate fields have been considered, namely, the analysis of solids and structures and the analysis of fluid flows. These continuous advances in analyses are of much interest to physicists, mathematicians and in particular, engineers. Also, computational fluid and solid mechanics are no longer treated as entirely separate fields of applications, but instead, coupled fluid and solid analysis is being pursued. The objective of the Book Series is to publish monographs, textbooks, and proceedings of conferences of archival value, on any subject of computational fluid dynamics, computational solid and structural mechanics, and computational multi-physics dynamics. The publications are written by and for physicists, mathematicians and engineers and are to emphasize the modeling, analysis and solution of problems in engineering.

The Finite Element Analysis of Shells - Fundamentals (Paperback, Softcover reprint of hardcover 2nd ed. 2011): Dominique... The Finite Element Analysis of Shells - Fundamentals (Paperback, Softcover reprint of hardcover 2nd ed. 2011)
Dominique Chapelle, Klaus-Jurgen Bathe
R6,354 Discovery Miles 63 540 Ships in 10 - 15 working days

This book presents a modern continuum mechanics and mathematical framework to study shell physical behaviors, and to formulate and evaluate finite element procedures. With a view towards the synergy that results from physical and mathematical understanding, the book focuses on the fundamentals of shell theories, their mathematical bases and finite element discretizations. The complexity of the physical behaviors of shells is analysed, and the difficulties to obtain uniformly optimal finite element procedures are identified and studied. Some modern finite element methods are presented for linear and nonlinear analyses. In this Second Edition the authors give new developments in the field and - to make the book more complete - more explanations throughout the text, an enlarged section on general variational formulations and new sections on 3D-shell models, dynamic analyses, and triangular elements. The analysis of shells represents one of the most challenging fields in all of mechanics, and encompasses various fundamental and generally applicable components. Specifically, the material presented in this book regarding geometric descriptions, tensors and mixed variational formulations is fundamental and widely applicable also in other areas of mechanics.

Inelastic Analysis of Solids and Structures (Paperback, Softcover reprint of hardcover 1st ed. 2005): M. Kojic, Klaus-Jurgen... Inelastic Analysis of Solids and Structures (Paperback, Softcover reprint of hardcover 1st ed. 2005)
M. Kojic, Klaus-Jurgen Bathe
R4,387 Discovery Miles 43 870 Ships in 10 - 15 working days

Inelastic Analysis of Solids and Structures presents in a unified manner the physical and theoretical background of inelastic material models and computational methods, and illustrates the behavior of the models in typical engineering conditions. The book describes experimental observations and principles of mechanics, and efficient computational algorithms for stress calculations as typically performed in finite element analysis. The theoretical background is given to an extent necessary to describe the commonly employed material models in metal isotropic and orthotropic plasticity, thermoplasticity and viscoplasticity, and the plasticity of geological materials. The computational algorithms are developed in a unified manner with some detailed derivations of the algorithmic relations. Many solved examples are presented, which are designed to give insight into the material behavior in various engineering conditions, and to demonstrate the application of the computational algorithms.

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