首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Estimating uncertainty in limit state capacities for reinforced concrete frame structures through pushover analysis
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Estimating uncertainty in limit state capacities for reinforced concrete frame structures through pushover analysis

机译:通过推覆分析估算钢筋混凝土框架结构极限状态能力的不确定性

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摘要

In seismic fragility and risk analysis, the definition of structural limit state (LS) capacities is of crucial importance. Traditionally, LS capacities are defined according to design code provisions or using deterministic pushover analysis without considering the inherent randomness of structural parameters. To assess the effects of structural randomness on LS capacities, ten structural parameters that include material strengths and gravity loads are considered as random variables, and a probabilistic pushover method based on a correlation-controlled Latin hypercube sampling technique is used to estimate the uncertainties in LS capacities for four typical reinforced concrete frame buildings. A series of ten LSs are identified from the pushover curves based on the design-code-given thresholds and the available damage-controlled criteria. The obtained LS capacities are further represented by a lognormal model with the median m(C) and the dispersion beta(C). The results show that structural uncertainties have limited influence on m(C) for the LSs other than that near collapse. The commonly used assumption of beta(C) between 0.25 and 0.30 overestimates the uncertainties in LS capacities for each individual building, but they are suitable for a building group with moderate damages. A low uncertainty as beta(C)=0.1 similar to 0.15 is adequate for the LSs associated with slight damages of structures, while a large uncertainty as beta(C)=0.40 similar to 0.45 is suggested for the LSs near collapse.
机译:在地震脆弱性和风险分析中,结构极限状态(LS)能力的定义至关重要。传统上,LS能力是根据设计规范规定或使用确定性推覆分析来定义的,而不考虑结构参数固有的随机性。为了评估结构随机性对LS能力的影响,将包括材料强度和重力载荷在内的十个结构参数视为随机变量,并使用基于相关控制的拉丁超立方体采样技术的概率推覆方法来估计LS中的不确定性可以容纳四座典型的钢筋混凝土框架建筑。根据给定的设计规范阈值和可用的损害控制标准,从下垂曲线中识别出一系列的10个LS。所获得的LS容量进一步由具有中位数m(C)和离差beta(C)的对数正态模型表示。结果表明,结构不确定性对LSs的m(C)的影响有限,除了接近崩溃之前。 beta(C)的常用假设介于0.25和0.30之间,高估了每个建筑物的LS容量的不确定性,但它们适用于损坏程度中等的建筑群。与结构轻微损坏相关的LS而言,较低的不确定性(如beta(C)= 0.1接近0.15)就足够了,而对于接近坍塌的LS,建议将较大的不确定性(如beta(C)= 0.40接近​​0.45)。

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