自定心混合阻尼连接低层钢结构框架抗震设计

Junlin Li , Wei Wang
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引用次数: 4

摘要

本文开发了一种面向实践的新出现的抗侧向力系统抗震设计程序。该系统结合了有利的重新定心功能和吸引人的混合阻尼能力。该系统克服了传统自定心建筑框架在不占用建筑空间的情况下产生的有害框架膨胀效应。按照建议的设计程序,对具有代表性的三层建筑进行了具有不同参数的多种设计,以实现性能目标,其中考虑的抗侧向力系统用于抵抗地震力。对设计进行了非线性响应历史分析,以评估所提出设计方法的适用性和充分性。根据本研究进行的分析,发现使用所提出的方法设计的考虑系统可以满足所选性能目标指定的瞬态和剩余层间漂移要求。虽然根据所建议的设计方法进行的初始设计可能是不充分的,但推荐的重新设计策略可以帮助将设计转换为可接受的设计,只需经过一轮修改。此外,混合阻尼的组成可能会影响最大地板加速度响应。在本研究中,用粘性阻尼代替滞回阻尼最多可使地板最大加速度降低12.75%。通过调整混合阻尼组成,这应该包括在设计考虑中。
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Seismic design of low-rise steel building frames with self-centering hybrid damping connections

This paper develops a practice-oriented seismic design procedure for an emerging lateral force resisting system. The system combines the favorable re-centering feature with the attractive hybrid damping capacity. The system overcomes the detrimental frame expansion effect that occurs in conventional self-centering building frames without the cost of building space. Following the proposed design procedure, multiple designs with different parameters to achieve performance objectives were performed for a representative three-story building in which the considered lateral force resisting system is used to resist the seismic forces. Nonlinear response history analyses were performed for the designs to evaluate the applicability and adequacy of the proposed design approach. Based on the analyses conducted in this research, it was found that the considered system designed using the proposed approach can meet both transient and residual inter-story drift requirements specified for the selected performance objectives. While an initial design per the proposed design approach may be inadequate, the re-design strategy recommended can help transform the design to an acceptable one after only one round of modification. Moreover, the composition of hybrid damping may affect the maximum floor acceleration responses. In this study, the maximum floor acceleration can be reduced 12.75% at most by replacing hysteretic damping with viscous damping. This should be included in design consideration in the proposed approach through adjusting the hybrid damping composition.

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