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Material Parameters Identification of Historic Lighthouse Based on Operational Modal Analysis

机译:基于操作模态分析的历史灯塔材料参数识别

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摘要

In the present paper, the identification of the material parameters of a masonry lighthouse is discussed. A fully non-invasive method was selected, in which the material properties were determined via numerical model validation applied to the first pair of natural frequencies and their related mode shapes, determined experimentally. The exact structural model was built by means of the finite element method. To obtain experimental data for the inverse analysis, operational modal analysis was applied to the structure. Three methods were considered: peak picking (PP), eigensystem realization algorithm (ERA) and natural excitation technique with ERA (NExT-ERA). The acceleration’s responses to environmental excitations, enhanced in some periods of time by sheet piling hammering or by sudden interruptions like wind stroke, were assumed within the analysis input. Different combinations of the input were considered in the PP and NExT-ERA analysis to find the most reasonable modal forms. A number of time periods of a free-decay character were considered in the ERA technique to finally calculate the averaged modal forms. Finally, the elastic modulus, Poisson’s ratio and material density of brick, sandstone and granite masonry were determined. The obtained values supplement the state of the art database concerning historic building materials. In addition, the numerical model obtained in the analysis may be used in further cases of structural analysis.
机译:在本文中,讨论了砌体灯塔的材料参数的识别。选择完全非侵入性方法,其中通过应用于第一对自然频率的数值模型验证确定材料特性及其相关模式形状,实验确定。通过有限元方法构建了确切的结构模型。为了获得反向分析的实验数据,将操作模态分析应用于结构。考虑了三种方法:峰值拣选(PP),Eigensystem实现算法(时代)和时代的自然励磁技术(下一个时代)。在分析输入中,假设在分析输入中假设加速对环境激发的对环境激发的反应,在一段时间内通过纸张撞击或突然中断,因此在风中风等突然中断。在PP和Next-Era分析中考虑了输入的不同组合,以找到最合理的模态形式。在ERA技术中考虑了许多空闲衰减字符的时间段,最终计算平均模态形式。最后,确定了弹性模量,泊松比和材料密度砖,砂岩和花岗岩砌体。所获得的价值补充了有关历史建筑材料的美术数据库的状态。另外,在分析中获得的数值模型可以在结构分析的进一步情况下使用。

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