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Seismic performance of buildings retrofitted with nonlinear viscous dampers and adjacent reaction towers

机译:装有非线性粘性阻尼器和邻近反应塔的建筑物的抗震性能

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An effective strategy of seismic retrofitting consists of installing nonlinear viscous dampers between the existing building, with insufficient lateral resistance, and some auxiliary towers, specially designed and erected as reaction structures. This allows improving the seismic performance of the existing building without any major alteration to its structural and nonstructural elements, which makes this approach particularly appealing for buildings with heritage value. In this paper, the nonlinear governing equations of the coupled lateral-torsional seismic motion are derived from first principles for the general case of a multistory building connected at various locations in plan and in elevation to an arbitrary number of multistory towers. This formulation is then used to assess the performance of the proposed retrofitting strategy for a real case study, namely, a 5-story student hall of residence in the city of Messina, Italy. The results of extensive time-history analyses highlight the key design considerations associated with the stiffness of the reaction towers and the mechanical parameters of the nonlinear viscous dampers, confirming the validity of this approach.
机译:一种有效的抗震改造策略是在既有横向阻力不足的现有建筑物与一些专门设计并竖立作为反应结构的辅助塔之间安装非线性粘性阻尼器。这可以提高现有建筑物的抗震性能,而无需对其结构和非结构元素进行任何重大改动,这使得这种方法特别适合具有遗产价值的建筑物。在本文中,耦合横向-横向地震运动的非线性控制方程是从多层结构的一般情况的第一原理导出的,该多层结构在平面图中和高处连接到任意数量的多层塔。然后将该公式用于评估针对实际案例研究(即位于意大利墨西拿市的5层学生宿舍)的拟议改造策略的性能。广泛的时间历史分析结果突出了与反应塔的刚度和非线性粘性阻尼器的机械参数相关的关键设计考虑因素,从而证实了该方法的有效性。

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