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Improving the Seismic Performance of Existing Reinforced Concrete Buildings using Advanced Rocking Wall Solutions

机译:使用先进的摇摆墙解决方案改善现有钢筋混凝土建筑的抗震性能

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摘要

Recent major earthquakes such as Northridge 1994 and Izmit Kocaeli 1999 highlighted the poor performance of existing buildings constructed prior to the early 1970’s. Low lateral seismic design coefficients and the adopted “working stress design” methodology (essentially an elastic design) lacked any inelastic design considerations, thus leading to inadequate detailing. Insufficient development lengths, lapping within potential plastic hinge regions, lack, or total absence of joint transverse reinforcement, and the use of plain round reinforcement and hooked end anchorages were common throughout the structure. The behaviour is generally dominated by brittle local failure mechanisms (e.g. joint or element shear failures) as well as possible soft-storey mechanisms at a global level. Amongst several possible retrofit interventions, a typical solution is to provide the structure with additional structural walls i.e. external buttressingor column in-fills. Extensive developments on precast, post-tensioned, dissipative systems have shown promise for the use of rocking wall systems to retrofit existing poorly detailed frame structures. In this contribution, the feasibility of such a retrofit intervention is investigated. A displacement-based retrofit procedure is developed and proposed, basedon targeting pre-defined performance criteria, such as joint shear and/or column curvature deformation limits. A design example, using the proposed retrofit strategy on a prototype frame is presented. A brief overview on experimental work ongoing at the University of Canterbury investigating the dynamic response of advanced rocking walls for retrofit purposes will be provided.
机译:最近的重大地震,例如1994年的Northridge和1999年的Izmit Kocaeli,凸显了1970年代初期之前建造的现有建筑物的不良性能。低的横向抗震设计系数和采用的“工作应力设计”方法(本质上是弹性设计)缺乏任何非弹性的设计考虑,因此导致细节不足。在整个结构中,开发长度不足,在潜在的塑料铰链区域内搭接,缺少或完全没有关节横向加强件以及使用普通圆形加强件和带钩端锚固的现象很普遍。该行为通常由脆性的局部破坏机制(例如节理或单元剪切破坏)以及可能在全球范围内的软层机制决定。在几种可能的改造措施中,一种典型的解决方案是为结构提供附加的结构壁,即外部支撑或柱内填充物。预制,后张拉,耗散系统的广泛发展已显示出使用摇摆墙系统来改造现有的,细节不佳的框架结构的希望。在此贡献中,研究了这种改造干预措施的可行性。基于目标的预定性能标准(例如,接头剪切和/或柱曲率变形极限),开发并提出了基于位移的改造程序。提出了一个设计示例,在原型框架上使用建议的改装策略。坎特伯雷大学正在进行的实验工作的简要概述,将对高级摇摆墙的动态响应进行研究,以进行改造。

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