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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Performance-based seismic design of steel structures accounting for fuzziness in their joint flexibility
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Performance-based seismic design of steel structures accounting for fuzziness in their joint flexibility

机译:基于性能的钢结构抗震设计考虑了联合柔性的模糊性

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This paper presents a performance-based earthquake engineering framework to explicitly take into account fuzziness in the design parameters, with application to steel structures. Semi-rigidity of column-to-foundation and beam-to-column connections is considered as a relevant example of design parameters that can be conveniently modelled using fuzzy variables. Without lack of generality, their fixity factors are described by means of triangular membership functions, fully defined by lower and upper values of admissibility and their most likely value, i.e. their reference value. For demonstration purposes, the procedure is applied to analyse two different case studies, namely a 5-storey single-bay plane frame and an industrial 3D modular structure. The analyses are performed accounting for the fuzziness of the connections, which is then propagated onto representative engineering demand parameters, within a general performance-based design (PBD) approach.
机译:本文提出了一种基于性能的地震工程框架,以明确考虑设计参数中的模糊性,并将其应用于钢结构。列到基础和梁到列连接的半刚性被认为是设计参数的相关示例,可以使用模糊变量方便地对其进行建模。不失一般性,它们的固定性因子通过三角隶属度函数来描述,该函数完全由可容许性的下限值和上限值以及它们的最可能值即参考值定义。出于演示目的,该程序适用于分析两个不同的案例研究,即5层单托架平面框架和工业3D模块化结构。执行分析时要考虑到连接的模糊性,然后在基于性能的一般设计(PBD)方法中将其传播到代表性的工程需求参数上。

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