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The damped cable system for seismic protection of frame structures-Part I: General concepts, testing and modeling

机译:框架结构抗震阻尼电缆系统-第一部分:一般概念,测试和建模

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Research studies on the damped cable system (DCS) for seismic protection of frame structures are presented in this paper and the accompanying one. This technology includes prestressed steel cables linked to pressurized fluid viscous spring-dampers fixed to the foundation at their lower ends, and to the top floor, or one of the upper floors, at their upper ends. The cables have sliding contacts with the floor slabs, to which they are joined by steel deviators. The general characteristics of the system, as well as of the constituting spring-dampers and cables, are initially discussed. The results of a laboratory testing campaign developed on a DCS prototype are examined, and transferred into the formulation of the finite element model of the system, conceived to be easily generated by commercial structural analysis programs. A second dynamic experimental investigation follows, concerning a pilot installation of the system on a full-scale mock-up building. The benefits of the protective technology are evaluated in terms of maximum displacements and accelerations, as well as of equivalent viscous damping coefficient and MDOF transmissibility ratio. Further sections of the study, including a preliminary sizing criterion of DCS, additional numerical enquiries aimed at optimizing its geometrical layout, and the application to a real case study building, are offered in the companion paper.
机译:这篇论文及其所附的论文对用于框架结构抗震保护的阻尼电缆系统(DCS)进行了研究。这项技术包括预应力钢缆,这些钢缆与加压流体粘性弹簧阻尼器相连,这些阻尼器的下端固定在地基上,在上端固定到顶层或上一层。电缆与楼板具有滑动接触,并通过钢偏斜器连接到楼板上。首先讨论该系统以及组成的弹簧阻尼器和电缆的一般特性。对在DCS原型上开发的实验室测试活动的结果进行了检查,并将其转换为系统的有限元模型的公式化,认为可以通过商业结构分析程序轻松生成。随后进行了第二次动态实验研究,涉及将系统试点安装在完整的模型建筑物上。可以根据最大位移和加速度以及等效的粘性阻尼系数和MDOF透射比来评估防护技术的优势。随书提供了研究的其他部分,包括DCS的初步尺寸确定标准,旨在优化其几何布局的其他数值查询以及在实际案例研究中的应用。

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