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Reliability-based optimum design of passive friction dampers in buildings in seismic regions

机译:基于可靠性的地震区域建筑被动减震器的优化设计

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This paper describes an approach to design friction damper systems for installation in buildings located in seismic regions using a novel optimization technique: the Search Group Algorithm (SGA). The method aims at reducing the probability of failure of typical concrete buildings and is illustrated with a case study for Cucuta, Colombia. To characterize seismic risk, records of ground acceleration during seismic events are used to determine the expected value of the peak ground acceleration (PGA) annual exceedance rate for the site of interest. Seismic risk was estimated by fitting probability distribution functions of the PGA for periods of one and fifty years, with the objective of evaluating, through numerical simulation, the reliability of a concrete structure. It is confirmed that a significant increase of the system reliability may be achieved through the use of an optimized passive friction dampers system. Robust estimators of the reliability are determined with a database of seismic records with markedly different characteristics. The results highlight the efficiency of passive friction dampers to reduce the probability of failure in structures located in regions with high seismic activity.
机译:本文介绍了一种使用新型优化技术:搜索组算法(SGA)设计用于安装在地震区域内建筑物中的摩擦阻尼器系统的方法。该方法旨在降低典型混凝土建筑物的故障概率,并以哥伦比亚库库塔的案例研究为例进行了说明。为了表征地震风险,地震事件期间的地面加速度记录用于确定感兴趣站点的峰值地面加速度(PGA)年度超出率的期望值。通过拟合PGA的150年周期的概率分布函数来估计地震风险,其目的是通过数值模拟来评估混凝土结构的可靠性。可以肯定的是,通过使用优化的无源摩擦阻尼器系统可以显着提高系统的可靠性。通过具有明显不同特征的地震记录数据库确定可靠性的可靠估计。结果表明,被动式摩擦阻尼器可有效降低地震活动频繁地区的结构发生故障的可能性。

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