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Seismic Failure Pattern Prediction in a Historical Masonry Minaret under Different Earthquakes

机译:不同地震下历史砌体迷你术的地震失效模式预测

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Historical structures are the values that are of great importance to that country, showing the roots of a country, and must be passed on from generation to generation. This study attempts to make a contribution to this goal. Seismic damage pattern estimation in a historical brick masonry minaret under different ground motion levels is investigated by using updated finite element models based on ambient vibration data in this study. Imaret Mosque which was built in 1481 AD is selected for an application. Surveying measurement and material tests were conducted to obtain a 3D solid model and mechanical properties of the components of the minaret. Firstly, the initial 3D finite element model of the minaret was analyzed and numerical dynamic characteristics of the minaret were obtained. Then, ambient vibration tests as well as operational modal analysis were implemented in order to obtain the experimental dynamic characteristics of the minaret. The initial finite element model of the minaret was updated by using the experimental dynamic results. Lastly, linear and nonlinear time-history analyses of the updated finite element model of the minaret were carried out using the acceleration records of two different level earthquakes that occurred in Turkey, in Afyon-Dinar (1995) and ?ay-Sultanda?? (2002). A concrete damage plasticity model is considered in the nonlinear analyses. The conducted analyses indicate that the compressive and tension stress results of the linear analyses are not as realistic as the nonlinear analysis results. According to the nonlinear analysis, the ?ay-Sultanda?? earthquake would inflict limited damage on the minaret, whereas the Dinar earthquake would damage some parts of the elements in the transition segment of the minaret.
机译:历史结构是对该国的重要性,表明国家的根源,并且必须从一代人传递到一代。这项研究试图为这一目标做出贡献。采用本研究中的环境振动数据,研究了在不同地运动水平下进行不同地运动水平下的历史砖砌型尖塔的地震损伤模式估计。内置于1481年广告中的iMaret清真寺进行应用。进行测量和材料试验以获得尖塔的组分的3D实体模型和机械性能。首先,分析了尖塔的初始3D有限元模型,获得了尖塔的数值动态特性。然后,实施了环境振动试验以及操作模态分析,以获得尖塔的实验性动态特性。通过使用实验动态结果更新尖塔的初始有限元模型。最后,使用在土耳其发生的两种不同水平地震的加速度记录,在Afyon-Dinar(1995)中,使用两种不同水平地震的加速度记录进行线性和非线性时间历史分析(2002)。在非线性分析中考虑了混凝土损伤可塑性模型。所进行的分析表明,线性分析的压缩和张力应力结果与非线性分析结果不那么现实。根据非线性分析,?AY-Sultanda ??地震会对尖塔造成有限的伤害,而第纳尔地震会损坏尖塔的过渡段中的一些元素。

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