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首页> 外文期刊>Journal of The Institution of Engineers (India) >Performance-based Design of RC Frame Buildings with Metallic and Friction Dampers
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Performance-based Design of RC Frame Buildings with Metallic and Friction Dampers

机译:基于性能的金属和摩擦阻尼器RC框架建筑设计

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摘要

Supplemental energy dissipation is a technique of earthquake resistant design and for improving the seismic performance of existing buildings. In the present study, a comprehensive design methodology for performance based design of frame buildings with metallic and friction dampers has been proposed. In this study, the target performance level is aimed to achieve both in terms of inter-storey drift and plastic hinge rotation. A non-iterative step-by-step design procedure is proposed to achieve the target performance level. The methodology provides the design yield forces in case of metallic dampers, and slip forces in case of friction dampers. A satisfactory distribution of both types of dampers along the height of the building is also provided in the methodology. The efficiency of the proposed design methodology is validated by applying to a ten storey building and performing nonlinear time history analysis. The building, with and without dampers, is subjected to five spectrum compatible time histories with peak ground acceleration of 0.24 g and the relative performance of the building with the two types of dampers is studied.
机译:补充能量消散是一种抗震设计技术,用于提高现有建筑物的抗震性能。在本研究中,已经提出了一种用于金属和摩擦阻尼器的框架建筑物基于性能的设计的综合设计方法。在这项研究中,目标性能水平旨在实现层间漂移和塑料铰链旋转。为了达到目标性能水平,提出了一种非迭代的分步设计过程。该方法在金属阻尼器的情况下提供设计屈服力,在摩擦阻尼器的情况下提供滑动力。该方法中还提供了两种阻尼器沿建筑物高度的令人满意的分布。通过将其应用于十层建筑并进行非线性时程分析,可以验证所提出设计方法的效率。带有和不带有阻尼器的建筑物经受五次频谱兼容的时间历史,峰值加速度为0.24 g,并研究了带有两种阻尼器的建筑物的相对性能。

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