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A strain monitoring approach for estimating lateral displacements of concrete columns under seismic excitations

机译:地震监测下估计混凝土柱横向位移的应变监测方法

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This study describes development of an indirect method for reference-free monitoring of lateral displacements in concrete columns under dynamic loads. The method is independent of the material and section properties of the structure. Therefore, damage due to the change in material and section properties during seismic events does not affect the estimated displacement results. The approach involves discretization of the column elements and placement of strain sensors on opposing sides of the columns for the computation of curvature during the seismic events. Element equivalent force vectors are obtained from the measured strains and subsequently employed for the computation of lateral displacements. Fiber Bragg grating displacement sensors were employed for monitoring the strains. The experimental portion of the research involved shake table tests of a four-span bridge using the recorded ground motions of the 1994 Northridge earthquake. The objective was to verify the accuracy and efficiency of the proposed method by comparing the results with direct displacement measurements. Comparison of the proposed method with the direct measurement of the lateral displacements during the shake table tests indicated reasonable correlation between the computed and direct measurements.
机译:这项研究描述了一种间接方法的发展,该方法用于无动力监测混凝土柱在动态载荷下的横向位移。该方法与结构的材料和截面特性无关。因此,在地震事件中由于材料和截面属性的变化而造成的损坏不会影响估计的位移结果。该方法涉及离散化列单元,以及在列的相对侧上放置应变传感器,以计算地震事件期间的曲率。从测得的应变中获得单元等效力矢量,然后将其用于计算侧向位移。光纤布拉格光栅位移传感器用于监测应变。该研究的实验部分涉及使用记录的1994年Northridge地震的地震动对四跨桥的振动台进行试验。目的是通过将结果与直接位移测量结果进行比较,以验证所提出方法的准确性和效率。所提出的方法与在振动台测试期间直接测量横向位移的比较表明,计算值和直接测量值之间存在合理的相关性。

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