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EC8-based seismic design and assessment of self-centering post-tensioned steel frames with viscous dampers

机译:基于EC8的抗震设计以及带有粘性阻尼器的自定心后张紧钢框架的评估

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摘要

This paper focuses on seismic design and assessment of steel self-centering moment-resisting frames (SC-MRFs) with viscous dampers within the framework of Eurocode 8 (EC8). Performance levels are defined with respect to drifts, residual drifts and limit states in the post-tensioned (PT) connections. A preliminary pushover analysis is conducted at the early phase of the design process to estimate rotations and axial forces in post-tensioned (PT) connections instead of using approximate formulae. Different designs of an SC-MRF with viscous dampers are considered to investigate all possible scenarios, i.e. use of dampers to achieve drifts significantly lower than the EC8 drift limit; to significantly reduce steel weight without exceeding the EC8 drift limit; or to reduce steel weight and achieve drifts lower than the EC8 drift limit. Nonlinear dynamic analyses using models capable of simulating all structural limit states up to collapse confirm the minimal-damage performance of the SC-MRFs. It is shown that the use of the preliminary pushover analysis makes the design procedure very accurate in predicting structural and non-structural limit states. Supplemental damping along with strict design criteria for the post-tensioned connections are found to significantly improve the seismic performance of the SC-MRFs. Moreover, the paper shows that SC-MRFs with viscous dampers have superior collapse resistance compared to conventional steel MRFs even when the SC-MRF is significantly lighter than the conventional MRF.\ud
机译:本文着重于在欧洲规范8(EC8)框架内采用粘性阻尼器的钢制自定心抗弯框架(SC-MRF)的抗震设计和评估。针对后张紧(PT)连接中的漂移,残余漂移和极限状态定义了性能水平。在设计过程的早期阶段进行了初步的推覆分析,以估计后张紧(PT)连接中的旋转和轴向力,而不是使用近似公式。考虑使用具有粘性阻尼器的SC-MRF的不同设计来研究所有可能的情况,即使用阻尼器来实现明显低于EC8漂移极限的漂移;在不超过EC8漂移极限的情况下显着减轻钢材重量;或减少钢的重量并实现低于EC8漂移极限的漂移。使用能够模拟所有结构极限状态直至坍塌的模型进行的非线性动力学分析证实了SC-MRF的最小损伤性能。结果表明,使用初步推覆分析可以使设计过程在预测结构和非结构极限状态时非常准确。发现对后张连接的补充阻尼以及严格的设计准则可显着改善SC-MRF的抗震性能。此外,该论文表明,即使SC-MRF比常规MRF轻得多,带粘性阻尼器的SC-MRF仍比常规钢MRF具有更好的抗塌陷性。

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