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A model for earthquake risk management based on the life-cycle performance of structures

机译:基于结构生命周期性能的地震风险管理模型

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Over 50 years of design life, buildings are exposed to different magnitudes and frequencies of earthquakes that require consideration of life-cycle cost (LCC). The LCC entails quantifying the building performance under seismic hazard and investments throughout the life of the structures. Traditional LCC utilises probabilities of being in different damage states. However, for buildings with inherent irregularities (e.g. vertical irregularity and plan irregularity), these probabilities are not readily available. In this paper, a system-based approach, utilising fuzzy set theory, is used to quantify the possibility of being in different damage states. The analysis is limited to study the effect of seismic exposure on the building LCC. The proposed method is illustrated with two case studies, a six-storey reinforced concrete (RC) building located in Vancouver, Canada, and vulnerability of an urban centre with 1000 RC buildings. Furthermore, sensitivity analysis is carried out to highlight the impact of different building performance modifiers on the LCC.
机译:在超过50年的设计寿命中,建筑物遭受不同程度和频率的地震,需要考虑生命周期成本(LCC)。 LCC要求量化在整个结构寿命期间遭受地震危险和投资的建筑物性能。传统的LCC利用处于不同损坏状态的概率。但是,对于具有固有不规则性(例如垂直不规则性和平面不规则性)的建筑物,这些概率不易获得。在本文中,基于系统的方法利用模糊集理论来量化处于不同损伤状态的可能性。该分析仅限于研究地震暴露对建筑物LCC的影响。通过两个案例研究说明了所提出的方法,一个是位于加拿大温哥华的六层钢筋混凝土(RC)建筑物,以及一个有1000座RC建筑物的城市中心的脆弱性。此外,进行了敏感性分析以突出不同建筑性能改进剂对LCC的影响。

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