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Output-only damage detection in buildings using proportional modal flexibility-based deflections in unknown mass scenarios

机译:在未知质量场景中使用基于比例模态挠度的挠度检测建筑物中的仅输出损伤

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Methods based on the evaluation of structural deflections from experimental modal flexibility matrices are important tools in vibration-based damage detection, especially for building structures. Modal flexibility matrices, however, can not be directly estimated when dealing with output-only vibration data (e.g. in the important case of structures tested under ambient vibrations). One can use an a-priori estimate of the mass matrix of the structure or the added mass method to obtain the modal normalization constants needed to assemble the flexibility matrix, but these operations can be challenging for real-life civil structures. To address this problem, a modal flexibility-based approach for output-only damage detection and localization in building structures that can be applied with minimal or no a-priori information on the structural masses is proposed in this paper. This approach is also able to deal with the general case in which mass modifications, e.g. due to operational variability in structures, are present before and after damage. The approach is based on the estimation (directly from output-only data) of modal flexibility-based deflections of building structures that are proportional with respect to the corresponding true deflections. From analytical investigations it was found that the missing scaling factor between the two deflections can be made theoretically equal to the total mass of the structure, as proposed in the paper. Then, interstory drifts evaluated from the proportional deflections are used for damage detection and localization according to two proposed strategies. The first strategy can be applied with minimal a-priori information on the masses (i.e. using a parameter that quantifies an eventual relative modification of the total mass of the structure before and after damage). The second one is a more advantageous strategy that can be applied from output-only data without any a-priori information on the masses, even in the case in which the masses are varied before and after damage. The effectiveness of the proposed approach was demonstrated using both numerical simulations and experimental vibration tests on frame building structures.
机译:基于实验模态柔韧性矩阵评估结构挠度的方法是基于振动的损伤检测的重要工具,特别是对于建筑结构。但是,在处理仅输出的振动数据时(例如,在环境振动下测试的结构的重要情况下),不能直接估计模态柔韧性矩阵。可以使用结构的质量矩阵的先验估计或添加的质量方法来获得组装柔性矩阵所需的模态归一化常数,但是这些操作对于现实生活中的土木结构可能具有挑战性。为了解决这个问题,本文提出了一种基于模态灵活性的基于方法的方法,用于建筑结构中仅输出的损伤检测和定位,该方法可以在结构质量方面使用最少或没有先验信息的情况下应用。这种方法也能够处理通常的情况,例如,进行大量修改。由于结构的操作可变性,在损坏之前和之后都存在。该方法基于(直接从仅输出数据中)基于模态柔韧性的建筑结构挠度的估计,该挠度相对于相应的真实挠度成比例。从分析研究中可以发现,两个挠曲之间缺失的比例因子在理论上可以等于结构的总质量,如本文所建议的。然后,根据两种提出的策略,将从比例挠度评估的层间位移用于损伤检测和定位。可以在质量上具有最小先验信息的情况下应用第一策略(即,使用量化结构在损伤之前和之后最终相对质量的最终变化的参数)。第二种是更有利的策略,即使在损坏前后质量发生变化的情况下,也可以从仅输出的数据应用质量而无需任何先验信息。框架结构的数值模拟和振动试验都证明了该方法的有效性。

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