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首页> 外文期刊>The Structural Design of Tall and Special Buildings >Reduction of inelastic seismic demands in a mid-rise rocking wall structure designed using the displacement-based design procedure
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Reduction of inelastic seismic demands in a mid-rise rocking wall structure designed using the displacement-based design procedure

机译:减少使用基于位移的设计程序设计的中层摇摆墙结构中的非弹性地震需求

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Precast post-tensioned rocking wall structural system has been developed in the recent past as a damage-avoidance structural system for seismic regions. For a widespread use of this structural system, suitable design procedures are required to ensure a reliable and well-predicted performance under different levels of seismic hazard. In the current study, a mid-rise 20-story rocking wall structure is selected and designed using the displacement-based design procedure. Furthermore, two different capacity design procedures are used to predict the increased force demands due to higher mode effects. The time history results against moderate and severe level of seismic hazards show the effectiveness of displacement-based design procedure in predicting and controlling the displacement and drift demands, while the simplified procedure and the modified modal superposition procedure for the capacity design are found to be unconservative and conservative, respectively. To further investigate the seismic demands, modal decomposition of inelastic seismic responses is carried out, and the contribution of different modes in the total responses is calculated. Based on this improved understanding, a mitigation technique of dual gap opening is employed. A detailed discussion about the location and design strength of the extra gap-opening is carried out by considering different performance parameters. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:预制后张拉摇摆墙结构系统是最近开发的,作为地震区域的避免破坏的结构系统。为了广泛使用该结构系统,需要采取适当的设计程序,以确保在不同地震危险等级下的性能可靠且可预测。在当前的研究中,采用基于位移的设计程序选择并设计了一个中层20层的摇摆墙结构。此外,由于较高的模态效应,使用两种不同的能力设计程序来预测增加的力需求。针对中度和重度地震危险的时程结果表明,基于位移的设计程序在预测和控制位移和漂移需求方面是有效的,而简化的程序和修改后的模态叠加程序被认为是不保守的和保守。为了进一步研究地震需求,对非弹性地震响应进行了模态分解,并计算了不同模态在总响应中的贡献。基于这种改进的理解,采用了双间隙打开的缓解技术。通过考虑不同的性能参数,对额外的间隙开口的位置和设计强度进行了详细的讨论。版权所有(C)2016 John Wiley&Sons,Ltd.

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