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Time-wave velocity analysis for early earthquake damage detection in buildings:application to a damaged full-scale RC building

机译:时波速度分析,用于建筑物的早期地震破坏检测:在受损的大型钢筋混凝土建筑中的应用

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摘要

An algorithm for time velocity analysis of building response is presented, which identifies the wave velocity of vertically propagating waves through the building and detects their changes. The algorithm is intended for use in SHM systems for rapid assessment of the structural health and integrity following an earthquake. The velocities are identified by an interferometric algorithm, which involves least squares fit of pulses in impulse response functions. An important feature of this method is that it is not sensitive to the effects of soil-structure interaction. The algorithm is applied to a 12-story RC building in Los Angeles, lightly damaged by the San Fernando 1971 earthquake. The results of the time velocity analysis are critically compared with results of analysis of input power, interstory drift, and instantaneous frequency. The identified average vertical wave velocity was initially ~140m/s for the NS and ~110m/s for the EW response and reduced by ~26% and 32%, respectively. The detected reduction of the fundamental frequency of vibration was larger (~44% for the NS and 48% for the EW response). The difference is interpreted to be due to softening of the soil-foundation system, to which the identified frequency of vibration is sensitive. The change was larger in the lower half of the building (~31 % for the NS and ~37% for the EW response) as compared with the upper half (~24% for the NS and ~27% for the EW response), consistent with the observed damage.
机译:提出了一种用于建筑物响应时间速度分析的算法,该算法可识别垂直传播的波在建筑物中的波速并检测其变化。该算法旨在用于SHM系统中,以快速评估地震后的结构健康和完整性。速度由干涉算法确定,该算法涉及脉冲响应函数中脉冲的最小二乘拟合。该方法的一个重要特征是它对土壤-结构相互作用的影响不敏感。该算法应用于洛杉矶的一幢12层高的RC建筑物,该建筑物受到1971年圣费尔南多地震的轻微破坏。严格地将时间速度分析的结果与输入功率,层间漂移和瞬时频率的分析结果进行比较。 NS的确定平均垂直波速最初为〜140m / s,EW反应的初始平均波速为〜110m / s,分别降低了约26%和32%。检测到的基本振动频率降低幅度更大(NS约为44%,EW响应约为48%)。差异被解释为是由于土壤基础系统的软化,所识别的振动频率对其敏感。与下半部分相比,建筑物下半部分的变化较大(NS约为31%,EW响应约为37%),NS的上半部分变化约为7%,EW响应约为27%。与观察到的损坏一致。

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