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OMA of model chimney using Bench-Scale earthquake simulator

机译:模型烟囱的OMA使用长凳级地震模拟器

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摘要

This study investigated the possibility of using the recorded micro tremor data on ground level as ambient vibration input excitation data for investigation and application Operational Modal Analysis (OMA) on the bench-scale earthquake simulator (The Quanser Shake Table) for model chimney. As known OMA methods (such as EFDD, SSI and so on) are supposed to deal with the ambient responses. For this purpose, analytical and experimental modal analysis of a model chimney for dynamic characteristics was performed. 3D Finite element model of the chimney was evaluated based on the design drawing. Ambient excitation was provided by shake table from the recorded micro tremor ambient vibration data on ground level. Enhanced Frequency Domain Decomposition is used for the output only modal identification. From this study, best correlation is found between mode shapes. Natural frequencies and analytical frequencies in average (only) 1.996% are different.
机译:本研究调查了在模型烟囱的板凳级地震模拟器(Quanser Shable Robile)上的调查和应用操作模态分析(OMA)的环境振动输入励磁数据中使用记录的微震动数据。 如已知的OMA方法(例如EFDD,SSI等)应该应对环境反应。 为此目的,进行了用于动态特性的模型烟囱的分析和实验模态分析。 基于设计图评估了烟囱的3D有限元模型。 摇动台从地面上记录的微震环境振动数据提供了环境激励。 增强频域分解用于仅输出模态标识。 从本研究中,模式形状之间的最佳相关性。 平均的自然频率和分析频率(仅限)1.996%是不同的。

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