Seismic design for performance in non-structural elements using the direct displacement methodology in reinforced concrete buildings

G. Collantes
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Abstract

One of the under-investigated branches of performance design approaches is the design of non-structural elements. Non-structural elements are all those that do not participate directly in the structural resistance of a building, however, they present damage in the event of an earthquake. One of the methods developed in recent years is through direct displacement, which consists of restricting the non-structural element by giving it a maximum allowable displacement and calculating the allowable force by Hooke's law. Therefore, the nonstructural elements for different configurations of a reinforced concrete building were designed using the direct displacement methodology and compared with the design according to the force-based design. Five reinforced concrete buildings (structural wall system) with the same floor were modeled for five different seismic movements and the design was carried out by the two methods for a certain anchoring system. In conclusion, the design based on direct displacement is more efficient than the traditional design, since it considers inelastic parameters. In addition, any non-structural element must be designed by both methods and apply the envelope criteria so as not to violate local regulations.
钢筋混凝土建筑中使用直接位移法进行非结构构件抗震设计
性能设计方法的一个未被充分研究的分支是非结构元素的设计。非结构构件是所有那些不直接参与建筑物结构阻力的构件,但是,它们在地震发生时表现出破坏。近年来发展起来的一种方法是直接位移法,即通过给非结构单元一个最大允许位移来限制非结构单元,并根据胡克定律计算许用力。因此,采用直接位移法对某钢筋混凝土建筑不同构型的非结构单元进行了设计,并与基于力的设计进行了比较。对同一楼层的5栋钢筋混凝土建筑(结构墙体系)进行了5种不同地震运动的建模,并对某锚固体系采用两种方法进行了设计。综上所述,基于直接位移的设计比传统设计更有效,因为它考虑了非弹性参数。此外,任何非结构单元都必须采用这两种方法进行设计,并应用围护结构标准,以免违反当地法规。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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