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Structural Operativity Evaluation of Strategic Buildings through Finite Element (FE) Models Validated by Operational Modal Analysis (OMA)

机译:通过操作模态分析(OMA)验证的有限元(FE)模型对战略建筑的结构可操作性评估

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摘要

In this paper, a non-destructive technique based on the monitoring of the environmental vibrations of two strategic buildings by positioning accelerometers in well-defined points was used for fixing their dynamic behavior. The accelerometers measurements were elaborated through Operational Modal Analysis (OMA) techniques, in order to identify natural frequencies, damping coefficients, and modal shapes of the structure. Once these parameters have been determined, a numerical model calibrated on the identified frequencies and verified on the corresponding mode shapes was created for each building. The structural operational efficiency index of the buildings was determined by using the Seismic Model Ambient Vibration (SMAV) methodology, which allows us to evaluate their seismic vulnerability. The results obtained from the experimental analysis (on three different tests for each analyzed building) concern the frequencies and the modal shapes of the structure. They have been compared to the results of the finite element model, with a very small error, indicating a good quality of the analysis and also the possibility of using directly well-tuned models for verifying the structural operating indices.
机译:在本文中,采用了一种无损检测技术来固定其动态行为,该技术基于通过将加速度计定位在明确定义的点来监视两个战略建筑的环境振动的技术。加速度计的测量是通过操作模态分析(OMA)技术进行的,以识别结构的固有频率,阻尼系数和模态形状。一旦确定了这些参数,就为每个建筑物创建了一个在识别出的频率上校准并在相应的模式形状上验证的数值模型。建筑物的结构运行效率指数是通过使用“地震模型环境振动”(SMAV)方法确定的,这使我们能够评估其地震易损性。从实验分析中获得的结果(针对每个被分析的建筑物进行了三种不同的测试)涉及结构的频率和模态形状。他们已经与有限元模型的结果进行了比较,误差很小,表明分析的质量很高,而且还可以使用直接调整好的模型来验证结构运行指标。

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