Buch, Englisch, 296 Seiten, Format (B × H): 161 mm x 240 mm, Gewicht: 614 g
Buch, Englisch, 296 Seiten, Format (B × H): 161 mm x 240 mm, Gewicht: 614 g
Reihe: Emerging Materials and Technologies
ISBN: 978-1-032-39391-9
Verlag: CRC Press
Application of Numerical Methods in Engineering Problems Using MATLAB® presents an analysis of structures using numerical methods and mathematical modeling. This structural analysis also includes beam, plate, and pipe elements, and examines deflection and frequency or buckling loads. The various engineering theories of beams/plates/shells are comprehensively presented, and the relationships between stress and strain, and the governing equations of the structure are extracted. To solve governing equations with numerical methods, there are two general types, including methods based on derivatives or integrals. Derivative-based methods have the advantage of flexibility in modeling boundary conditions, low analysis time, and a very high degree of accuracy. Therefore, the book explains numerical methods based on derivatives, especially the differential quadrature method.
Features:
- Examines the application of numerical methods to obtain the deflection, frequency, and buckling loads.
- Discusses the application of numerical methods for solving motion equations.
- Includes numerous practical and applicable examples throughout.
Autoren/Hrsg.
Weitere Infos & Material
1. Basic Theories. 2. Solution Methods. 3. Buckling of Nanoparticles Reinforced Beams Exposed to Fire. 4. Dynamic Response of Nanofiber Reinforced Beams Subjected to Seismic Ground Excitation. 5. Buckling Analysis of Plates Reinforced by Graphene Platelet. 6. Vibration Analysis of Agglomerated Nanoparticles Reinforced Plates. 7. Vibration Analysis of Plates with NFRP Layer. 8. Vibration Analysis of Plates Reinforced with Nanoparticles and Piezoelectric Layer. 9. Forced Vibration Analysis of Plates Reinforced by Nanoparticles. 10. Seismic Analysis of Plates Reinforced by Nanoparticles. 11. Stress Analysis of Shells Reinforced with Nanoparticles. 12. Earthquake Response of Nanocomposite Shells Conveying and Immersing in Fluid. 13. Vibration and Instability Analysis of Shells Reinforced by Nanoparticles. 14. Dynamic Response of Nanocomposite Shells Covered with Piezoelectric Layer.