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SEISMIC VULNERABILITY ASSESSMENT THROUGH EXPLICIT CONSIDERATION OF UNCERTAINTIES IN STRUCTURAL CAPACITIES AND STRUCTURAL DEMANDS

机译:通过明确考虑结构能力和结构需求的不确定性来进行地震易损性评估

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Earthquakes are among the most important natural hazards confronting engineers, regulatory authorities, and the public at large. The assessment of strucutral seismic vulnerability has become the subject of intensive research. In this paper, a mathematical framework for seismic vulnerability assessment of building structures is presented, and the concept of vulnerability function is introduced and mathematically described, which is integrally related to the fragility assessment and reflects the susceptibility of a system to serious consequences. The limit state of a building structure is stated as the structural demand exceeding the structural capacity, so the methodology is developed based on a systematic treatment of uncertainties in seismic hazard, structural demands due to seismic hazard, and capacities of building structures in resisting limit states. The methods and assessment procedures are illustrated through a steel building frame, showing the presented methodology is an efficient tool in support of seismic vulnerability assessment. The explicit consideration of uncertainty is an integral part of the engineering risk management and decision process, and the methodology can also be applied to other buildings, bridges or civil infrastructure systems.
机译:地震是工程师,监管机构和广大公众面临的最重要的自然灾害之一。结构地震易损性的评估已成为深入研究的主题。本文提出了一种用于建筑结构地震易损性评估的数学框架,并引入了易损性函数的概念并进行了数学描述,这与易损性评估紧密相关,反映了系统对严重后果的敏感性。建筑结构的极限状态表示为超出结构容量的结构需求,因此,该方法的开发是基于对地震危害不确定性,地震危害引起的结构需求以及抵抗极限状态的建筑结构的能力的系统处理。通过钢结构框架说明了方法和评估程序,表明所提出的方法是支持地震脆弱性评估的有效工具。明确考虑不确定性是工程风险管理和决策过程不可或缺的一部分,该方法还可以应用于其他建筑物,桥梁或民用基础设施系统。

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