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FE Model of the Fatih Sultan Mehmet Suspension Bridge Using Thin Shell Finite Elements

机译:薄壳有限元法提赫苏丹穆罕默德悬索桥有限元模型

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This paper presents the results of an eigenvalue analysis of the Fatih Sultan Mehmet Bridge. A high-resolution finite element model was created directly from the available design documents. All physical properties of the structural components were included in detail, so no calibration to the measured data was necessary. The deck and towers were modeled with shell elements. A nonlinear static analysis was performed before the eigenvalue calculation. The calculated natural frequencies and corresponding mode shapes showed good agreement with the available measured ambient vibration data. The calculation of the effective modal mass showed that nine modes had single contributions higher than 5 % of the total mass. They were in a frequency range up to 1.2 Hz. The comparison of the results for the torsional modes especially demonstrated the advantage of using thin shell finite elements over the beam modeling approach.
机译:本文介绍了法提赫苏丹穆罕默德大桥的特征值分析结果。直接从可用的设计文档中创建了高分辨率的有限元模型。详细介绍了结构部件的所有物理特性,因此无需对测量数据进行校准。甲板和塔楼均采用壳单元建模。在特征值计算之前进行了非线性静态分析。计算出的固有频率和相应的模式形状与可用的测量环境振动数据显示出良好的一致性。有效模态质量的计算表明,九种模态的单一贡献高于总质量的5%。它们的频率范围高达1.2 Hz。扭转模式结果的比较特别证明了使用薄壳有限元优于梁建模方法的优势。

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