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首页> 外文期刊>Journal of Sound and Vibration >Damage detection of building structures under ambient excitation through the analysis of the relationship between the modal participation ratio and story stiffness
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Damage detection of building structures under ambient excitation through the analysis of the relationship between the modal participation ratio and story stiffness

机译:通过分析模态参与率与故事刚度与环境激励下建筑结构损伤检测

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This paper presents a new approach for the damage detection of building structures under ambient excitation based on the inherent modal characteristics. In this study, without the extraction of modal parameters widely utilized in the previous studies on damage detection, a new index called the modal participation ratio (MPR), which is a representative value of the modal response extracted from dynamic responses measured in ambient vibration tests, is proposed to evaluate the change of the system of a structure according to the reduction of the story stiffness. The relationship between the MPR, representing a modal contribution for a specific mode and degree of freedom in buildings, and the story stiffness damage factor (SSDF), representing the extent of reduction in the story stiffness, is analyzed in various damage scenarios. From the analyses with three examples, several rules for the damage localization of building structures are found based on the characteristics of the MPR variation for the first mode subject to change in the SSDF. In addition, a damage severity function, derived from the relationship between the MPR for the first mode in the lowest story and the SSDF, is constructed to identify the severity of story stiffness reduction. Furthermore, the locations and severities of multiple damages are identified via the superposition of the presented damage severity functions. The presented method was applied to detect damage in a three-dimensional reinforced concrete (RC) structure. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文基于固有的模态特性,介绍了环境激励下建筑结构损坏的新方法。在本研究中,没有在先前研究的损伤检测中广泛利用的模态参数的提取,一个称为模态参与比(MPR)的新指数,这是从环境振动测试中测量的动态响应提取的模态响应的代表值建议根据故事刚度的减少评估结构系统的变化。在各种损害情景中分析了代表建筑物的特定模式和自由度的模态贡献,以及故事刚度损伤因子(SSDF)的关系。根据三个例子的分析,基于MPR变化的特征来发现建筑物结构的若干损坏定位规则,其在SSDF中进行变化的MPR变化。此外,构建了从最低故事和SSDF中的第一模式的MPR之间的关系导出的伤害严重性函数,以识别故事刚度降低的严重程度。此外,通过呈现损伤严重性函数的叠加来识别多个损坏的位置和严重程度。应用了所提出的方法以检测三维钢筋混凝土(RC)结构中的损坏。 (c)2017 Elsevier Ltd.保留所有权利。

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