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Determination of earthquake performance of Süleymaniye Mosque

Başlık çevirisi mevcut değil.

  1. Tez No: 104292
  2. Yazar: SAMİYE KAYA
  3. Danışmanlar: PROF. DR. ÖZAL YÜZÜGÜLLÜ
  4. Tez Türü: Yüksek Lisans
  5. Konular: Deprem Mühendisliği, Earthquake Engineering
  6. Anahtar Kelimeler: Belirtilmemiş.
  7. Yıl: 1999
  8. Dil: İngilizce
  9. Üniversite: Boğaziçi Üniversitesi
  10. Enstitü: Fen Bilimleri Enstitüsü
  11. Ana Bilim Dalı: Deprem Mühendisliği Ana Bilim Dalı
  12. Bilim Dalı: Belirtilmemiş.
  13. Sayfa Sayısı: 147

Özet

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Özet (Çeviri)

Built between 1549-1557 by the great Turkish architect Mimar Sinan and named after the legendary Ottoman Emperor Süleyman the Magnificient, the Süleymaniye Mosque is considered to be the masterpiece of the Ottoman architecture. It is a fact that the research studies carried out up today towards the determination of the earthquake performance of this masterpiece of Ottoman-Turkish Engineering is very limited. Within the framework of research activities being carried out at the Earthquake Engineering Department of Kandilli Earthquake Observatory and Earthquake Research Institute for the important historic edifices which was initiated with the Hagia Sophia, the present study on Süleymaniye Mosque is aimed at the exploration of the earthquake performance and dynamic characteristics of the structure.The three dimensional finite element model of the structure previously prepared by A.Selahiye was refined.Non-destructive material tests were carried out in the mosque in order to determine the material characteristics.The data obtained from the tests were used in the study and as a further step, the effects of different materials were investigated. At this stage the effects of different boundary conditions were also combined in the study.The earthquake records obtained from the strong ground motion accelerometers previously installed on Süleymaniye Mosque were also analysed to obtain the natural vibration frequencies and to compare the resulting values with those obtained by other methods. As a last stage of the study, the analysis of the improved model under a scenario earthquake for Istanbul was carried out.

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