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EFFECT OF INTERACTION BETWEEN PRIMARY AND SECONDARY SYSTEMS ON FLOOR RESPONSE SPECTRA

机译:主次系统相互作用对地板响应谱的影响

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A parametric study on the interaction between primary structure and secondary components is presented in this paper. A simplified model of multi-story buildings is used to model the primary structure. The secondary component is modeled as a single degree of freedom object with known period of vibration, mass and damping ratio. A formulation already developed in another study has been employed to compute floor response spectrum of components that their characteristics affect the response of the primary structure. The advantage of this method to other proposed methods is that the primary structure is modeled as an MDOF which can capture higher mode effects. Effect of secondary component with different mass ratios on modified acceleration transfer functions of different modes of the primary structures as well as the secondary component has been shown. The ranges of mass ratios where the interaction can be ignored have also been presented. Effect of location of the secondary component has also been presented. The building models have been subjected to white noise as well as filtered white noise and floor response spectra for different mass ratios mounted at different heights of the primary structures have been investigated.
机译:本文对一级结构与次级部件之间的相互作用进行了参数研究。多层建筑物的简化模型用于对主要结构进行建模。次要分量被建模为具有已知周期的振动,质量和阻尼比的单自由度对象。另一项研究中已经开发出的公式已被用来计算组件的地面响应谱,这些特性会影响主要结构的响应。该方法相对于其他建议方法的优势在于,将主要结构建模为可以捕获更高模式效应的MDOF。已经示出了具有不同质量比的次级部件对初级结构的不同模式以及次级部件的改进的加速度传递函数的影响。还提出了可以忽略相互作用的质量比范围。还介绍了次要部件的位置的影响。对于安装在主要结构的不同高度的不同质量比的建筑模型,已经经受了白噪声以及滤波后的白噪声和地板响应谱的影响。

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