Modeling Steel and Composite Structures - Softcover

Vellasco, Pedro

 
9780128135266: Modeling Steel and Composite Structures

Inhaltsangabe

Modeling Steel and Composite Structures explains the computational tools, methods and procedures used to design steel and composite structures. The reference begins with the main models used to determine structural behavior. This is followed by a detailed description of experimental models and their main requirements and care. Numerous simulations presenting non-linear response are illustrated as are their restrictions in terms of boundary conditions, main difficulties, solution strategies and methods adopted to surpass convergence difficulties. In addition, examples of the use of computational intelligence methods to simulate steel and composite structures response are presented. Includes numerical models based in the finite element method Provides numerous simulations, presenting a non-linear response Contains examples of the use of computational intelligence methods to simulate steel and composite structures

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Über die Autorin bzw. den Autor

Pedro C. G. da S. Vellasco, MSc, PhD, DIC, Professor of Steel and Composite Structures, Structural Engineering Department, State University of Rio de Janeiro, UERJ. He has published more than 70 Journal papers and more than 300 conference papers, 4 books and 12 book chapters

Von der hinteren Coverseite

  • Numerical models based in the finite element method.
  • Numerous simulations presenting a non-linear response
  • Examples of the use of computational intelligence methods to simulate steel and composite structures

Brief and readable, Modeling Steel and Composite Structures expertly explain the computational tools, methods and procedures used to design steel and composite structures. The reference begins with the main models used to determine the structural behavior. This is followed by a detailed description of the experimental models, as well as their main requirements and care that have to be taken into account when performing steel and composite structural experiments in the laboratory.

Numerous simulations presenting non-linear response are illustrated as well as their restrictions in terms of boundary conditions, main difficulties, solution strategies and methods adopted to surpass convergence difficulties. Finally examples of the use of computational intelligence methods to simulate steel and composite structures response are presented..

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