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Seismic performance of controlled-rocking concentrically braced frames designed by the equivalent energy procedure

机译:相同能量手术设计的控制摇摆同心支撑框架的地震性能

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Recent earthquakes in New Zealand and Japan showed that structures designed according to modern building codes might suffer significant damages with hefty financial and social losses. The primary reason lies in the seismic design approach, where most seismic force resisting systems (SFRS) were designed to prevent structures from collapse during strong earthquake shaking, without considering the damage and the usability of the structure after an earthquake. In this paper, a controlled rocking-concentrically braced frame (CR-CBF) is proposed. CR-CBF is a fused structural system that uses a combination of post-tensioned tendons (PTs) and energy dissipation devices (EDs) to create a controlled-rocking mechanism to minimize structural repair costs and down time after a strong earthquake. PTs are placed in the structure to provide the restoring forces and to minimize any residual deformation in the structure, while EDs are placed at the base of a structure to dissipate the earthquake energy. To ensure the CR-CBF can achieve high performance, two (CR-CBF) prototypes with different heights are designed using the novel equivalent energy design procedure (EEDP). The EEDP procedure allows designers to select different performance objectives at different shaking intensities. The results of nonlinear dynamic analyses of the CR-CBFs show that CR-CBFs have superior seismic performances as intended and can be efficiently designed using EEDP. Finally, the seismic performance of CR-CBF against collapse is assessed using incremental dynamic analysis (IDA) outlined in the FEMA-P695 methodology. The results show that the CR-CBFs designed by EEDP have sufficient safety against collapse, hence it can be used as an efficient seismic force resisting system.
机译:新西兰和日本最近的地震表明,根据现代建筑规范设计的结构可能会遭受严重的财务和社会损失损害。主要原因在于地震设计方法,其中大多数地震力抵抗系统(SFR)旨在防止在强烈地震摇动期间塌陷的结构,而不考虑地震后结构的损坏和可用性。本文提出了一种受控摇摆 - 同心支撑框架(CR-CBF)。 CR-CBF是一种融合的结构系统,其使用后张紧的肌腱(PTS)和能量耗散装置(EDS)的组合来产生控制摇摆机构,以最大限度地减少强烈地震后的结构修复成本和停机时间。将PTS放置在结构中以提供恢复力并最小化结构中的任何残余变形,而EDS放置在结构的基部以消散地震能量。为了确保CR-CBF可以实现高性能,使用新的等效能量设计程序(EEDP)设计具有不同高度的两种(CR-CBF)原型。 EEDP程序允许设计人员以不同的摇动强度选择不同的性能目标。 CR-CBFS的非线性动态分析结果表明,CR-CBFS具有优异的地震性能,可以使用EEDP有效设计。最后,使用FEMA-P695方法中概述的增量动态分析(IDA)评估CR-CBF对崩溃的地震性能。结果表明,由EEDP设计的CR-CBFS对崩溃具有足够的安全性,因此它可以用作有效的地震力抵抗系统。

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