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Floor response spectra for light components mounted on regular moment-resisting frame structures

机译:安装在常规抗力矩框架结构上的轻型组件的地板响应光谱

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The peak acceleration demands for acceleration-sensitive nonstructural components supported on elastic and inelastic regular moment-resisting frame structures are statistically analyzed. The responses of a variety of stiff and flexible frame structures (with 3, 6, 9, and 18 stories) subjected to a set of 40 ground motions are evaluated. The nonstructural components under consideration are those that can be represented by single-degree-of-freedom systems with masses that are small compared to the total mass of the supporting structure. This study evaluates and quantifies the dependence of peak component accelerations on the location of the nonstructural component in the structure, the damping ratio of the component, and the properties of the supporting structure such as its modal periods, height, stiffness distribution, and strength. The results show that current seismic code provisions will not always provide an adequate characterization of peak component accelerations. Recommendations are provided to estimate peak acceleration demands for the design of nonstructural components mounted on inelastic frame structures.
机译:统计分析了弹性和非弹性规则抗弯框架结构上对加速度敏感的非结构构件的峰值加速度需求。评估了一组40个地面运动对各种刚性和柔性框架结构(具有3、6、9和18层)的响应。所考虑的非结构组件是那些可以由单自由度系统表示的组件,其质量比支撑结构的总质量小。这项研究评估并量化了峰值加速度对结构中非结构性部件的位置,部件的阻尼比以及支撑结构的特性(如模态周期,高度,刚度分布和强度)的依赖性。结果表明,当前的地震法规规定并不能始终提供峰值分量加速度的充分表征。提供建议以估计安装在非弹性框架结构上的非结构部件的峰值加速度需求。

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