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Numerical Modeling of Masonry and Historical Structures

From Theory to Application

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2019
ISBN13: 9780081024393
Rubricering
Elsevier Science e druk, 2019 9780081024393
€ 349,00
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Samenvatting

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.

Specificaties

ISBN13:9780081024393
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

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