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首页> 外文期刊>Journal of Earthquake Engineering >Seismic Vulnerability Assessment of Hybrid Steel-Timber Structure: Steel Moment-Resisting Frames with CLT Infill
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Seismic Vulnerability Assessment of Hybrid Steel-Timber Structure: Steel Moment-Resisting Frames with CLT Infill

机译:混合钢木结构抗震性评估:带CLT填充物的钢制耐弯框架

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摘要

In this article, seismic vulnerability assessment is carried-out on a novel hybrid structure (steel moment resisting frame (SMRF) and cross laminated timber (CLT) infill panels). For the seismicity of Vancouver, Canada, a three-bay, 3-, 6-, and 9-story height SMRFs are designed for two ductility levels (ductile and limited ductility). To study the seismic vulnerability CLT infilled building, parametric analysis was performed by varying infill configuration (bare frame, one-bay infilled, two-bay infilled, and fully infilled). The structure is modeled in OpenSees and nonlinear dynamic analysis is performed. Peak inter-story drift demand and corresponding FEMA performance limits (capacity) values are used to compute the corresponding fragility curves. From the analyses, it can be seen that as more bays are infilled, the fundamental period and seismic vulnerability is reduced significantly. The results highlight that, within the performance-based earthquake engineering, different objectives can be met with varying the CLT configuration.
机译:在本文中,对新型混合结构(抗弯矩框架(SMRF)和交叉层压木材(CLT)填充面板)进行了地震易损性评估。对于加拿大温哥华的地震活动,设计了三层,3层,6层和9层高的SMRF,用于两种延性水平(延性和有限延性)。为了研究地震易损性CLT填充建筑物,通过改变填充结构(裸机架,一托架填充,两托架填充和完全填充)进行了参数分析。该结构在OpenSees中建模,并执行非线性动力学分析。峰值层间漂移需求和相应的FEMA性能极限(容量)值用于计算相应的脆弱性曲线。从分析中可以看出,随着更多海湾的涌入,基期和地震易损性大大降低。结果表明,在基于性能的地震工程中,通过更改CLT配置可以满足不同的目标。

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