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Assessments on Operational Modal Identification Refining of a Structural Element

机译:结构元素运算模态识别精制的评估

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This study deals with operational modal identification techniques area, presenting a group of experimental and computational approaches about refining of modal characteristics for structural parts during their dynamic exploitation regime. Hereby, it can be included both into the modal experimental/operational analysis domain-with application in dynamic state evaluation in order to provide essential information to vibration control measures, and into the structural health monitoring area-providing a feasible tool for compiling the referenced state and estimating the failure imminence. The analyses were developed based on the laboratory setup, taking into account a simple structural element with constant mechanical and geometrical characteristics. The theoretical approaches contain both analytical evaluations, and computational simulations with the help of the finite element method. The results comparison between the classical modal identification techniques and the proposed method reveals an improved capability of the last for modal characterization of a singular structural element within its dynamic evolution, also taking into account that the number of experimental measurements was constantly maintained. Future developments will take into consideration the applicability of these assessments for structural ensembles or variable characteristic elements.
机译:本研究涉及操作模态识别技术领域,介绍了一组关于在其动态开发制度期间为结构部件进行模态特性精炼的实验和计算方法。因此,它可以包括在动态状态评估中的模态实验/操作分析域中的应用程序,以便为振动控制措施提供基本信息,以及结构健康监测区域 - 为编译引用状态提供可行的工具并估算失败侵权。基于实验室设置开发了分析,考虑到具有恒定机械和几何特性的简单结构元件。在有限元方法的帮助下,理论方法包含分析评估和计算模拟。经典模态识别技术与所提出的方法之间的结果比较揭示了最后一种奇异结构元件在其动态演化中的模态表征的改进能力,同时考虑了实验测量的数量不断保持。将来会考虑到这些评估对结构集合或可变特征元素的适用性。

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