Parametric analysis of nonstructural component acceleration response spectra considering interaction between structures and nonstructural components

Guowei Zhang, Jincheng Song, Chang'an Qin, Guoliang Sun, Peng Zhuang
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Abstract

The nonstructural component–structure interaction (NSI) is a critical aspect in addressing the seismic design of structures and nonstructural components. However, the NSI is not considered in generating acceleration spectrum, which is the most commonly used tool for seismic design. To study the pattern of the NSI affecting acceleration response spectra of nonstructural components and floors, the acceleration response spectra of a benchmark steel frame structure with different parameters were calculated using a numerical method after the accuracy of the numerical method was verified by carrying out shaking table tests. These parameters are the damping ratio of the nonstructural component, the weight ratio of the nonstructural components to the floor, and the frequency ratio and height ratio of the nonstructural component to the structure. The influence of each parameter on acceleration response spectra was derived by comparing different spectra. The trend of acceleration response spectra of the nonstructural component with different combinations of parameters was compared to determine whether each parameter is relatively independent. This parametric analysis can be applied to calculating acceleration response spectra of the nonstructural component while considering the NSI.
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考虑结构与非结构部件之间相互作用的非结构部件加速度响应谱参数分析
非结构构件与结构之间的相互作用(NSI)是结构和非结构构件抗震设计的一个重要方面。然而,作为抗震设计最常用的工具,加速度反应谱的生成并未考虑 NSI。为了研究 NSI 对非结构部件和楼板加速度反应谱的影响模式,在通过振动台试验验证数值方法的准确性后,使用数值方法计算了具有不同参数的基准钢框架结构的加速度反应谱。这些参数包括非结构部件的阻尼比、非结构部件与楼板的重量比以及非结构部件与结构的频率比和高度比。通过比较不同的加速度响应谱,得出了各参数对加速度响应谱的影响。通过比较不同参数组合的非结构部件加速度响应谱的趋势,确定每个参数是否相对独立。这种参数分析可用于计算非结构部分的加速度响应谱,同时考虑 NSI。
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