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Minimum failure cost-based energy dissipation system designs for buildings in three seismic regions - Part Ⅰ: Elements of failure cost analysis

机译:基于三个地震区域的建筑物的基于最小故障成本的消能系统设计-第一部分:故障成本分析的要素

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This and the companion papers are focused on the optimal utilization of viscous dampers for performance improvement of building structures by minimizing the failure/life-cycle costs. The cost minimization is a natural choice as the primary motivation for introducing the multi-objective performance based design concept in the earthquake engineering community was to reduce the observed unacceptable levels of damage costs in buildings for moderate intensity but more frequent earthquakes. This paper describes an approach to calculate the failure and life-cycle costs associated with different levels of damage and their consequences considering the random occurrences of seismic events and uncertainties in the calculated response. The inter-story drift is used as an effective response variable to define fragilities and failure costs, although it is realized that damage of some components may be better expressed in terms of the acceleration response. Since a life-cycle cost-based optimization methodology could be computationally demanding especially for yielding structures, the use a response spectrum method of analysis is considered for the response and failure cost calculations. Comparison of the numerical results, for three example buildings in Los Angeles, Seattle and Boston, obtained by the approximate response spectrum method and accurate time-stepping method utilizing an ensemble of base motions indicates that the response spectrum methods can provide a good estimate of the failure cost for a quick performance-based evaluation of different design alternatives. The companion paper utilizes this failure cost and performance evaluation approach to determine optimal designs of damping systems.
机译:该论文和随附的论文集中在通过最大程度地减少故障/生命周期成本来最佳利用粘性阻尼器来改善建筑结构的性能。成本最小化是一种自然的选择,因为在地震工程界引入基于多目标性能的设计概念的主要动机是为了减少中等强度但更频繁地震的建筑物中观察到的破坏成本,这是不可接受的。本文介绍了一种方法,该方法考虑到地震事件的随机发生和所计算响应中的不确定性,来计算与不同程度的破坏及其后果相关的破坏和生命周期成本。层间漂移被用作定义脆弱性和失效成本的有效响应变量,尽管人们意识到,某些组件的损坏可以根据加速响应更好地表达。由于基于生命周期成本的优化方法可能对计算特别是屈服结构有很高的要求,因此考虑将响应谱分析方法用于响应和故障成本计算。对于洛杉矶,西雅图和波士顿的三座示例建筑,通过近似响应谱法和利用基本运动的整体进行精确的时间步移法获得的数值结果的比较表明,响应谱法可以很好地估算出故障成本,用于基于性能的快速评估不同的设计方案。随附的论文利用这种故障成本和性能评估方法来确定阻尼系统的最佳设计。

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