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The damped cable system for seismic protection of frame structures-Part II: Design and application

机译:框架结构抗震阻尼电缆系统-第二部分:设计与应用

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The complementary sections of the studies carried out on the damped cable system, whose experimental and numerical characterization and assessment analyses are described in the companion paper, are presented herein. The first section includes a criterion for a preliminary evaluation of the section area of cables, the second branch stiffness of spring-dampers and the mutual installation preload, and suggestions for a simplified nonlinear dynamic computation of the damping coefficient of dissipaters. A second section follows, aimed at evaluating the influence of cable layout on damped cable system performance. A numerical enquiry is developed on a four-story and an eight-story RC plane frame, to assess their seismic response for several shapes of cables, and determine what geometrical configurations are the best performing ones. In the third section, a demonstrative application of the protective system, represented by the seismic retrofit of a hospital building with RC structure, is offered. The characteristics of the system designed for this case study, including locations, dimensions, layouts, and technical installation details of cables and spring-dampers, are illustrated, and the improvement of seismic performance as compared with the original conditions, is finally assessed.
机译:本文介绍了在阻尼电缆系统上进行的研究的补充部分,其实验和数值表征以及评估分析在随附的论文中进行了介绍。第一部分包括用于初步评估电缆截面积,弹簧阻尼器的第二分支刚度和相互安装预紧力的准则,以及用于简化耗散器阻尼系数的非线性动态计算的建议。接下来的第二部分旨在评估电缆布局对阻尼电缆系统性能的影响。在四层和八层的RC平面框架上进行了数值查询,以评估电缆对几种形状的地震响应,并确定哪种几何构型是性能最好的。在第三部分中,提供了保护系统的演示应用,以具有RC结构的医院建筑物的抗震改造为代表。说明了为该案例研究设计的系统的特性,包括电缆和弹簧阻尼器的位置,尺寸,布局以及技术安装细节,并最终评估了与原始条件相比抗震性能的提高。

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