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Identification Of Localized Frame Parameters Using Higher Natural Modes

机译:使用更高的自然模式识别局部帧参数

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摘要

The use of sensitive higher modes in physical structural parameter identification of local members in a frame system is discussed in this paper. Analytical studies are supported by low-level vibration tests on a third-scale four-story reinforced concrete frame structure embedded in soil to represent a realistic foundation system. Preliminary numerical modal analysis are carried out to establish the sensitivity of higher modes to localized damage in the frame. Damage to one of the elements on the first story of the frame was simulated by adding a mass to the column and examining the vibration modes before and after the addition of the mass. Through forced vibration tests and selective placement of strain transducers, the Poly-reference least-squares complex frequency domain method (PolyMAX) is used to determine the existence of 'highly sensitive higher modes' (HSHMs). An evaluation of the identified higher modes further enables the identification of physical parameters of the target column element using a simple minimization scheme. Findings from the present study indicate that physical parameters of a local element in a frame structure can be identified effectively using HSHMs and that the higher modes of vibration are more sensitive to changes in local physical parameters than lower global modes. The identification of physical parameters as outlined in this study can be applied in structural damage detection.
机译:本文讨论了在框架系统局部成员的物理结构参数识别中使用敏感的较高模态。分析研究得到了对埋在土壤中的三层四层钢筋混凝土框架结构的低水平振动测试的支持,这些结构代表了现实的基础系统。进行了初步的数值模态分析,以建立较高模态对框架中局部损伤的敏感性。通过在柱上添加质量并检查添加质量前后的振动模式,可以模拟框架第一层中一个元素的损坏。通过强制振动测试和应变传感器的选择性放置,多参考最小二乘复频域方法(PolyMAX)用于确定是否存在“高灵敏度较高模态”(HSHM)。对所识别的较高模式的评估还使得能够使用简单的最小化方案来识别目标列元素的物理参数。从本研究的发现表明,使用HSHM可以有效地识别框架结构中局部元素的物理参数,并且较高的振动模式比较低的全局模式对局部物理参数的变化更敏感。本研究概述的物理参数识别可用于结构损伤检测。

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