Finite Element Modeling in Structural Mechanics
From Bernoulli Beams to Reddy Plates, with Examples in Excel®, Mathematica®, and MATLAB®
- 1 Edición - 1 de enero de 2027
- Última edición
- Editor: Eugenio Ruocco
- Idioma: Inglés
Finite Element Modeling in Structural Mechanics: From Bernoulli Beams to Reddy Plates with Examples in Excel, Mathematica and Matlab presents a unique, energetic approach to derive… Leer más
Descripción
Descripción
Ideal for master's and doctoral students, as well as researchers, this guide equips you with the tools and knowledge needed to excel in advanced structural analysis and automated computation.
Puntos claves
Puntos claves
- Deepens theoretical understanding by employing an energetic methodology to derive FEM equations
- Provides a robust and generalizable framework that surpasses traditional static approaches
- Bridges the gap between theory and practice by providing step-by-step guidance on developing FEM codes using accessible tools such as Excel, Mathematica, and MATLAB
- Equips readers with the skills needed to create and adapt their own computational tools for advanced structural analysis
- Includes one-dimensional Bernoulli, Timoshenko, and Reddy beam models and two-dimensional Kirchhoff and Mindlin plate theories
De interès para
De interès para
Índice
Índice
2. A historical overview of the Finite Element Method
3. Variational formulation of elasticity problems: the bar under axial loads
4. Two- and Three-dimensional Trusses
5. The Bernoulli beam
6. The Timoshenko beam
7. The Reddy beam
8. The Frames
9. The plate under axial loads
10. Kirchhoff, Mindlin, Reddy plates
11. Conclusion
Detalles del producto
Detalles del producto
- Edición: 1
- Última edición
- Publicado: 1 de enero de 2027
- Idioma: Inglés
Sobre el editor
Sobre el editor
ER
Eugenio Ruocco
Eugenio Ruocco is an Associate Professor of Structural Mechanics at the University of Campania "Luigi Vanvitelli" in Italy. He earned his PhD in Structural Mechanics from the University of Palermo in 2001, focusing on analytical solutions for buckling in stiffened plates and shells. Dr. Ruocco has taught at various universities, including the University of Naples and the Second University of Naples.
His research interests include numerical methods and analytical solutions in structural mechanics, with over 100 published papers on topics such as buckling, vibration in stiffened plates and shells, and boundary element methods in elasticity and plasticity. Sixty of his publications are featured in indexed international journals.
Since 2022, Dr. Ruocco has been on the editorial board of the "International Journal for Computational Methods in Engineering Science and Mechanics" and actively participates in international research projects. He has also been a visiting professor at esteemed institutions worldwide.