The examination of behaviour of vertical loaded brick masonry arch having tie rods
2014
0 views
0 downloads
Advisor: Yrd. Doç. Dr. Fatih Kürşat Fırat
Abstract (EN)
For centuries, arch structures have been used to span large openings. In Anatolia, wood or iron tie rods have been used in the arches of historical buildings such as mosques, madrases, houses and khans which are especially from the Ottoman period. These tie rods are of great importance for the protection of the stability of arches under vertical load. In this study, tie rods are examined in terms of the influence on the general structural behavior, a total of six experimental models were tested under vertical load; one model with no tie rod and five models with different tie rods. The tested models were also evaluated by using the Finite Element Method. Consequently, the experimental results are presented in comparison with these numerical results and comments on the tie rods used on the arches are discussed based the obtained results. Furthermore, recommendations are offered to resolve the problems of tie rod applications encountered in restoration works. Keywords: Tie-rod effects, Masonry arches, Finite element analysis, Lusas software, Drucker-prager criterion.
Author
Dr. Şükran Tuğrulelçi
How to Cite
Şükran Tuğrulelçi (Master Thesis). The examination of behaviour of vertical loaded brick masonry arch having tie rods, 2014, Aksaray University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Aksaray University
- The effect of successful aging and ego integrity on psychological adaptation in elderly individuals(2020)
- An analysis of the relationship between high school teachers' perception of prefessional well-being and instructional leadership behaviours(2016)
- Web scraping and sentiment analysis based product analysis system(2023)
- School counselors' opinions on eighth grade guidance curriculum's effect of levels of acquisition of 21st century skills (8th Grade)(2024)
- Analysis of stress in adhesively bonded and pinned metal sheets(2011)
- An invertigation of carbon fiber reinforced polymers anchored and bonded to concrete(2011)
