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Shake-table testing of hybrid post-tensioned precast wall systems with alternative dissipating solutions

机译:混合后张法预制墙系统与替代耗散解决方案的振动台测试

摘要

It is fast becoming common practice for civil engineering infrastructure and building structures to be designed to achieve a set of performance objectives. To do so, consideration is now being given to systems capable of sustaining minimal damage after an earthquake while still being cost competitive. This has led to the development of high performance seismic resisting systems, followed by advances in design methodologies.The paper presents the experimental response of four pre-cast, post-tensioned rocking walls with high-performing dissipating solutions tested on the shake-table at the University of Canterbury. The wall systems were designed as a retrofit solution for an existing frame building however, can also be used for the design of new, high-performance structures. The use of externally mounted dampers allowed numerous dissipation schemes to be explored including mild-steel dampers (hysteretic dampers), viscous dampers, a combination of both or no dampers. The advantages of both velocity and displacement dependant dissipation was investigated for protection against strong ground motions with differing rupture characteristics i.e. far-field and near-field events.The experimental results are used to verify a proposed design procedure for post-tensioned rocking systems with supplementary hysteretic and viscous dissipation. The predicted response compared well with the measured shake-table response.
机译:为了实现一系列性能目标而设计土木工程基础设施和建筑结构正迅速成为一种惯例。为此,现在考虑的是能够在地震后维持最小损害,同时仍具有成本竞争力的系统。这导致了高性能抗震系统的发展,其后是设计方法的发展。本文介绍了四种预制,后张预应力摇壁的实验响应,并在振动台上测试了高性能的耗散解决方案。坎特伯雷大学。墙壁系统被设计为现有框架建筑的翻新解决方案,但是,也可以用于设计新的高性能结构。外部安装阻尼器的使用允许探索多种耗散方案,包括低碳钢阻尼器(滞后阻尼器),粘性阻尼器,两者的组合或没有阻尼器。研究了速度和位移相关耗散的优势,以防止具有不同破裂特性(即远场和近场事件)的强烈地面运动。实验结果用于验证拟议的带有附加张紧力的摇摆系统的设计程序滞回和粘性耗散。预测的响应与测得的振动台响应进行了很好的比较。

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