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首页> 外文期刊>Journal of Engineering Mechanics >Structural System Identification of Buildings by a Wave Method Based on a Nonuniform Timoshenko Beam Model
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Structural System Identification of Buildings by a Wave Method Based on a Nonuniform Timoshenko Beam Model

机译:基于非均匀Timoshenko梁模型的波动法识别建筑物的结构系统

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A nonuniform Timoshenko beam model of a building, with piecewise constant properties along the height, is presented, along with an algorithm for structural system identification from earthquake records. The model accounts for shear and flexural deformation, rotatory inertia, and variation of building properties with height. The model stiffness parameters are identified by matching (in the least-squares sense) propagating pulses in impulse response functions. To minimize the effects of soil-structure interaction, the fit is performed on a band excluding the fundamental mode of vibration. This algorithm is a new development in a wave method for structural health monitoring of buildings, intended for use in seismic alert systems to facilitate decision making on evacuation immediately after the earthquake, and for general condition monitoring. The model can also be used with an earthquake early warning system for quick linear response prediction to decide on safe shutdown of sensitive equipment in advance of strong shaking. Identification and response prediction are demonstrated on the north-south response of the Los Angeles 54-story Office Building, a tall, steel-frame building in downtown Los Angeles. (C) 2015 American Society of Civil Engineers.
机译:提出了建筑物的非均匀Timoshenko梁模型,该模型沿高度具有分段恒定特性,并提供了一种从地震记录中识别结构系统的算法。该模型考虑了剪切和弯曲变形,旋转惯性以及建筑物特性随高度的变化。模型刚度参数通过匹配(在最小二乘意义上)脉冲响应函数中的传播脉冲来识别。为了最大程度地减少土壤与结构相互作用的影响,拟合在不包含基本振动模式的频段上进行。该算法是波动法中建筑物结构健康监测的一种新发展,旨在用于地震预警系统中,以方便地震后立即进行疏散的决策,以及用于一般状况监测。该模型还可以与地震预警系统一起使用,以进行快速线性响应预测,从而在强烈震动之前决定安全关闭敏感设备。洛杉矶54层办公楼是洛杉矶市中心一座高大的钢结构建筑,其南北响应显示了识别和响应预测。 (C)2015年美国土木工程师学会。

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