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Novel Finite Element Technologies for Solids and Structures (Hardcover, 1st ed. 2020): Joerg Schroeder, Paulo De Mattos Pimenta Novel Finite Element Technologies for Solids and Structures (Hardcover, 1st ed. 2020)
Joerg Schroeder, Paulo De Mattos Pimenta
R2,794 Discovery Miles 27 940 Ships in 10 - 15 working days

This book presents new ideas in the framework of novel, finite element discretization schemes for solids and structure, focusing on the mechanical as well as the mathematical background. It also explores the implementation and automation aspects of these technologies. Furthermore, the authors highlight recent developments in mixed finite element formulations in solid mechanics as well as novel techniques for flexible structures at finite deformations. The book also describes automation processes and the application of automatic differentiation technique, including characteristic problems, automatic code generation and code optimization. The combination of these approaches leads to highly efficient numerical codes, which are fundamental for reliable simulations of complicated engineering problems. These techniques are used in a wide range of applications from elasticity, viscoelasticity, plasticity, and viscoplasticity in classical engineering disciplines, such as civil and mechanical engineering, as well as in modern branches like biomechanics and multiphysics.

Novel Finite Element Technologies for Solids and Structures (Paperback, 1st ed. 2020): Joerg Schroeder, Paulo De Mattos Pimenta Novel Finite Element Technologies for Solids and Structures (Paperback, 1st ed. 2020)
Joerg Schroeder, Paulo De Mattos Pimenta
R2,789 Discovery Miles 27 890 Ships in 10 - 15 working days

This book presents new ideas in the framework of novel, finite element discretization schemes for solids and structure, focusing on the mechanical as well as the mathematical background. It also explores the implementation and automation aspects of these technologies. Furthermore, the authors highlight recent developments in mixed finite element formulations in solid mechanics as well as novel techniques for flexible structures at finite deformations. The book also describes automation processes and the application of automatic differentiation technique, including characteristic problems, automatic code generation and code optimization. The combination of these approaches leads to highly efficient numerical codes, which are fundamental for reliable simulations of complicated engineering problems. These techniques are used in a wide range of applications from elasticity, viscoelasticity, plasticity, and viscoplasticity in classical engineering disciplines, such as civil and mechanical engineering, as well as in modern branches like biomechanics and multiphysics.

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