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Finite Elements Overview
The finite element method (FEM) is a predominant method to derive numerical models from mathematical models. Its basic theory is described in this chapter. From a mechanical point of view, material behavior is primarily focused on strains and stresses. The formal definitions of strains and stresses assume a homogeneous area of matter. The major contribution to the mathematical approximation error is the discretization error arising from the difference between mathematical and numerical model. A section discusses the basic discussion of procedures as they are directly used to solve problems of reinforced concrete structures. Finally, the chapter touches some theoretical background regarding the finite element method.
Finite Elements Overview
The finite element method (FEM) is a predominant method to derive numerical models from mathematical models. Its basic theory is described in this chapter. From a mechanical point of view, material behavior is primarily focused on strains and stresses. The formal definitions of strains and stresses assume a homogeneous area of matter. The major contribution to the mathematical approximation error is the discretization error arising from the difference between mathematical and numerical model. A section discusses the basic discussion of procedures as they are directly used to solve problems of reinforced concrete structures. Finally, the chapter touches some theoretical background regarding the finite element method.
Finite Elements Overview
Häussler‐Combe, Ulrich (Autor:in)
08.10.2014
26 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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