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Modal Analysis, Experimental Validation, And Calibration Of A Historical Masonry Minaret

机译:历史砌体尖塔的模态分析,实验验证和校准

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摘要

This paper describes a historical masonry minaret, its finite element modeling, modal testing, and finite element model calibration. Iskenderpasa historical masonry minaret located in Trabzon City Center, Turkey, is selected as an application. Modal analysis is performed on the developed 3-D finite element model of the minaret to obtain the analytical frequencies and mode shapes. The ambient vibration tests on the minaret under environmental excitations, such as traffic loads and wind, are conducted. The output-only modal parameter identification is carried out by using peak picking of the average normalized power spectral densities in the frequency domain and stochastic subspace identification in the time domain. Dynamic characteristics such as natural frequencies, mode shapes, and damping ratios are determined. The finite element model of the minaret is calibrated to minimize the differences between analytically and experimentally estimated modal properties by changing some uncertain modeling parameters such as material properties and boundary conditions. At the end of the study, maximum differences in the natural frequencies are reduced on an average from 27 % to 5 %. A good agreement is also found between analytical and experimental natural frequencies and mode shapes after model calibration.
机译:本文介绍了一座历史悠久的砌石尖塔,其有限元建模,模态测试和有限元模型校准。选择了位于土耳其特拉布宗市中心的Iskenderpasa历史砌石尖塔。对尖塔的3D有限元模型进行模态分析,以获得分析频率和振型。进行尖塔在环境激励(例如交通负荷和风)下的环境振动测试。通过使用频域中平均归一化功率谱密度的峰值选取和时域中的随机子空间标识来执行仅输出模态参数标识。确定自然频率,振型和阻尼比等动态特性。通过更改一些不确定的建模参数(例如材料特性和边界条件),对尖塔的有限元模型进行校准,以最小化分析和实验估计的模态特性之间的差异。研究结束时,自然频率的最大差异平均从27%降低到5%。在模型校准后,在分析和实验固有频率与模态形状之间也找到了很好的协议。

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