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Prediction of the response of secondary structures under dynamic loading considering primary-secondary structure interaction

机译:考虑一次-二次结构相互作用的动力荷载下二次结构的响应预测

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In current seismic design, earthquake-induced forces in secondary structures are estimated from the acceleration of the primary structure at the support of the secondary structure. However, recent studies had shown that the response of the secondary structure can significantly affect that of the primary structure, which will simultaneously modifies that of the secondary structure. To accurately estimate the response of the secondary structure, the interaction at the interface of the two structures needs to be considered. In this study, a scaled model consisting of primary and secondary structures was designed to capture the interacting forces. The degree of fixity of the secondary structure was varied. Two types of dynamic loading, that is, impact and harmonic loads, were applied to the model structures. The relationship between the interacting force and the response of the secondary structure is discussed. Empirical formulae for predicting the maximum displacement of the secondary structure based on the displacement spectrum at its base were proposed. The formulae provided more accurate prediction of the top displacement of the secondary structure considered, in comparison with that obtained from a conventional floor response spectrum.
机译:在当前的地震设计中,通过在二级结构的支撑下一级结构的加速度来估计二级结构中的地震诱发力。但是,最近的研究表明,二级结构的响应会显着影响一级结构的响应,这将同时修改二级结构的响应。为了准确估计二级结构的响应,需要考虑两个结构的界面处的相互作用。在这项研究中,设计了一个由一级和二级结构组成的比例模型来捕获相互作用力。二级结构的固定程度有所不同。将两种类型的动态载荷,即冲击载荷和谐波载荷,应用于模型结构。讨论了相互作用力与二级结构响应之间的关系。提出了基于基础位移谱预测二级结构最大位移的经验公式。与从常规地板响应谱获得的公式相比,该公式提供了对所考虑的二级结构的顶部位移的更准确的预测。

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