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Seismic assessment of a heavy-timber frame structure with ring-doweled moment-resisting connections

机译:带环形旋转力矩连接的沉重木材框架结构的地震评估

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The performance of heavy-timber structures in earthquakes depends strongly on the inelastic behavior of the mechanical connections. Nevertheless, the nonlinear behavior of timber structures is only considered in the design phase indirectly through the use of an R-factor or a q-factor, which reduces the seismic elastic response spectrum. To improve the estimation of this, the seismic performance of a three-story building designed with ring-doweled moment resisting connections is analyzed here. Connections and members were designed to fulfill the seismic detailing requirements present in Eurocode 5 and Eurocode 8 for high ductility class structures. The performance of the structure is evaluated through a probabilistic approach, which accounts for uncertainties in mechanical properties of members and connections. Nonlinear static analyses and multi-record incremental dynamic analyses were performed to characterize the q-factor and develop fragility curves for different damage levels. The results indicate that the detailing requirements of Eurocode 5 and Eurocode 8 are sufficient to achieve the required performance, even though they also indicate that these requirements may be optimized to achieve more cost-effective connections and members. From the obtained fragility curves, it was verified that neglecting modeling uncertainties may lead to overestimation of the collapse capacity.
机译:地震中重木结构的性能强烈取决于机械连接的无弹性行为。然而,木结构的非线性行为仅通过使用R型或Q系数间接地在设计相中考虑,这减少了地震弹性响应谱。为了改善这一点,在此处分析了用环形旋转力矩抵抗连接的三层建筑物的地震性能。连接和成员旨在满足欧式码级和欧元码8中存在的地震细节要求,用于高延展级结构。通过概率方法评估结构的性能,该方法对成员和连接的机械性能中的不确定性估计。执行非线性静态分析和多记录增量动态分析,以表征Q系数并开发不同损伤水平的脆弱曲线。结果表明,欧式码码5和欧洲码码8的详细要求足以实现所需的性能,即使它们也表明这些要求可以优化以实现更具成本效益的连接和成员。从所获得的脆弱性曲线中,核实忽略了建模的不确定性可能导致塌陷能力的高估。

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