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Numerical Modeling of Masonry and Historical Structures: From Theory to Application: Woodhead Publishing Series in Civil and Structural Engineering

Editat de Bahman Ghiassi, Gabriele Milani
en Limba Engleză Paperback – 18 iun 2019
Numerical Modeling of Masonry and Historical Structures: From Theory to Application provides detailed information on the theoretical background and practical guidelines for numerical modeling of unreinforced and reinforced (strengthened) masonry and historical structures. The book consists of four main sections, covering seismic vulnerability analysis of masonry and historical structures, numerical modeling of unreinforced masonry, numerical modeling of FRP-strengthened masonry, and numerical modeling of TRM-strengthened masonry. Each section reflects the theoretical background and current state-of-the art, providing practical guidelines for simulations and the use of input parameters.


  • Covers important issues relating to advanced methodologies for the seismic vulnerability assessment of masonry and historical structures
  • Focuses on modeling techniques used for the nonlinear analysis of unreinforced masonry and strengthened masonry structures
  • Follows a theory to practice approach
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Specificații

ISBN-13: 9780081024393
ISBN-10: 0081024398
Pagini: 890
Dimensiuni: 152 x 229 mm
Greutate: 1.07 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering


Public țintă

civil and structural engineers, materials scientists, architects and structural designers

Cuprins

Part I: Seismic vulnerability analysis of masonry and historical structures
1. Seismic vulnerability analysis of historical structures
2. Seismic performance-based assessment of masonry structures (Perpetuate guidelines)
3. Nonlinear time history analysis of masonry for seismic assessment
4. Uncertainties in determining the seismic vulnerability of historic masonry buildings
5. A framework for the seismic assessment of existing masonry buildings accounting for different sources of uncertainty
6. Methods and Challenges for the Seismic Assessment of Historic Masonry Structures
Part II: Numerical modeling of unreinforced masonry
7. Mechanical properties
8. Macro-modelling technique
9. Micro-modelling technique
10. Homogenization and quasi periodic masonry
11. Limit analysis
12. DEM analysis
13. Equivalent frame modeling/macro-elements
Part III: Numerical modeling of FRP- strengthened masonry
14. FRP strengthened masonry. Delamination and numerical issues
15. Homogenization model for pushover analysis of FRP-strengthened masonry
16. Pushover analysis of FRP-strengthened masonry: long-term seismic performance simulation
17. Dynamic analysis of FRP-strengthened masonry
Part III: Modeling and analysis of TRM- strengthened masonry
18. Computational modeling of textile reinforced mortars and numerical issues
19. Homogenization model for pushover analysis of TRM-strengthened masonry
20. Macro-modeling approach for pushover analysis of TRM-strengthened masonry
21. Dynamic time-history analysis of TRM- strengthened masonry