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        Collapse mechanism estimation of a historical slender minaret

        H. Nohutcu,E. Hokelekli,E. Ercan,A. Demir,G. Altintas 국제구조공학회 2017 Structural Engineering and Mechanics, An Int'l Jou Vol.64 No.5

        The aim of this study is to accurately estimate seismic damage and the collapse mechanism of the historical stone masonry minaret “Hafsa Sultan”, which was built in 1522. Surveying measurements and material tests were conducted to obtain a 3D solid model and the mechanical properties of the components of the minaret. The initial Finite Element (FE) model is analyzed and numerical dynamic characteristics of the minaret are obtained. The Operational Modal Analysis (OMA) method is conducted to obtain the experimental dynamic characteristics of the minaret and the initial FE model is calibrated by using the experimental results. Then, linear time history (LTH) and nonlinear time history (NLTH) analyses are carried out on the calibrated FE model by using two different ground motions. Iron clamps which used as connection element between the stones of the minaret considerably increase the tensile strength of the masonry system. The Concrete Damage Plasticity (CDP) model is selected in the nonlinear analyses in ABAQUS. The analyses conducted indicate that the results of the linear analyses are not as realistic as the nonlinear analysis results when compared with existing damage.

      • KCI등재

        Effect of model calibration on seismic behaviour of a historical mosque

        Ali Demir,Halil Nohutcu,Emre Ercan,Emin Hokelekli,Gokhan Altintas 국제구조공학회 2016 Structural Engineering and Mechanics, An Int'l Jou Vol.60 No.5

        The objective of the study is to investigate the effects of model calibration on seismic behaviour of a historical mosque which is one of the most significant Ottomon structures. Seismic analyses of calibrated and noncalibrated numeric models were carried out by using acceleration records of Kocaeli earthquake in 1999. In numerical analysis, existing crack zones on real structure was investigated in detail. As a result of analyses, maximum stresses and displacements of calibrated and noncalibrated numerical models were compared each other. Consequently, seismic behaviour and damage state of historical masonry Hafsa Sultan mosque was determined as more realistic in the event of a severe earthquake.

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