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Life-cycle cost and seismic reliability analysis of 3D systems equipped with FPS for different isolation degrees

机译:不同隔离度的配备FPS的3D系统的生命周期成本和抗震可靠性分析

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The aim of the study consists in evaluating the life-cycle costs of a r.c. 3D system isolated by single concave FPS bearings with different isolated periods in order to evaluate the potential benefits provided by increasing values of the isolation degree. In particular, assuming the elastic response pseudo acceleration related to each isolated period and the coefficient of friction as random variables relevant to the problem characterized by appropriate probability density functions, the Latin Hypercube Sampling method has been adopted as random sampling technique in order to define the input data and perform 3D non-linear dynamic analyses. Thus, bivariate structural performance curves for each story of the superstructure and for the substructure as well as seismic reliability-based design (SRBD) abacuses for the isolation level have been defined for the different values of the isolation degree. Finally, the life-cycle cost analysis of the isolated system with different curvature radius of the FP bearings has been accomplished taking into account both the initial costs and the expected loss costs, due to future earthquakes, of the overall system during its design life (50 years) in order to evaluate the influence of the isolation degree on both the seismic performance and the total costs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:该研究的目的在于评估RC的生命周期成本。由具有不同隔离时间的单个凹面FPS轴承隔离的3D系统,以评估通过增加隔离度的值所提供的潜在利益。特别是,假设与每个孤立周期有关的弹性响应伪加速度和与系数有关的摩擦系数是与以适当的概率密度函数为特征的问题有关的随机变量,则采用Latin Hypercube抽样方法作为随机抽样技术,以便定义输入数据并执行3D非线性动态分析。因此,针对隔离度的不同值,已经定义了针对上层建筑和下部结构的每个层级以及针对子结构的双变量结构性能曲线以及针对隔离级别的基于地震可靠性的设计(SRBD)算盘。最后,考虑到整个系统在其设计寿命期间因整个地震而产生的初始成本和预期损失成本,已经完成了具有不同FP轴承曲率半径的隔离系统的生命周期成本分析( (50年),以评估隔离度对地震性能和总成本的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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