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Seismic Performance Evaluation of Rehabilitated Reinforced Concrete Columns through Jacketing

机译:外套钢筋混凝土柱的抗震性能评估

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Rehabilitation techniques for seismically deficient reinforced concrete elements were developed more than 20 years ago. At that time, lateral-load response of rehabilitated elements was deemed satisfactory if significant strength degradation did not occur at a target displacement demand (typically large). Large economic losses in recent earthquakes have highlighted the importance of evaluating element response at other performance levels, such as those associated with smaller displacements. In order to accurately estimate the global response of rehabilitated reinforced concrete buildings, a thorough understanding on the response of individual rehabilitated components must be developed.ASCE/SEI Standard 41-06 — Seismic Rehabilitation of Existing Buildings, provides engineers with a much needed resource to incorporate performance-based concepts in seismic rehabilitation projects. Within ASCE/SEI 41-06, guidelines to develop backbone curves for modeling typical reinforced concrete elements, and acceptance criteria of these elements based on their calculated deformation are provided. The document, however, does not explicitly include information that can be used for elements that have been rehabilitated by methods such as jacketing. A need to examine the performance of these elements using a multi-level performance perspective is therefore warranted.In this paper, a comparison of the laboratory performance of jacketed reinforced concrete columns with modeling parameters in ASCE/SEI 41-06 is presented. This information is part of ongoing activities taking place within ACI Committee 369 - Seismic Repair and Rehabilitation, that focus on an evaluation of existing guidelines for the seismic rehabilitation of concrete buildings. Existing laboratory tests found in the literature are used to compare the plastic deformation capacity of jacketed reinforced concrete columns with the corresponding modeling parameters in ASCE 41-06. The three primary types of jacketing materials that have been used to date (concrete, steel, and fiber-reinforced polymers) are included in the study. Particular attention is paid on whether plastic drifts in jacketed columns compare favorably with modeling parameters in ASCE/SEI 41-06.
机译:20多年前开发了用于抗震能力不足的钢筋混凝土构件的修复技术。那时,如果在目标位移需求(通常很大)下没有发生明显的强度下降,则修复后的元件的横向载荷响应被认为是令人满意的。最近地震造成的巨大经济损失凸显了评估其他性能水平(例如与较小位移相关的水平)的单元响应的重要性。为了准确估计修复后的钢筋混凝土建筑的整体响应,必须对各个修复后的组件的响应有透彻的了解。 ASCE / SEI标准41-06-现有建筑物的地震修复为工程师提供了急需的资源,以将基于性能的概念纳入地震修复项目中。在ASCE / SEI 41-06中,提供了开发用于建模典型钢筋混凝土元素的主干曲线的准则,以及基于这些元素的计算变形来接受这些元素的准则。但是,该文档未明确包含可用于通过护套等方法修复的元素的信息。因此,需要使用多级性能视角来检查这些元素的性能。 本文对ASCE / SEI 41-06中带夹套钢筋混凝土柱的实验室性能与建模参数进行了比较。该信息是ACI 369委员会-地震维修和修复项目正在进行的活动的一部分,该活动的重点是对混凝土建筑物的地震修复的现有准则进行评估。现有文献中的实验室测试用于比较夹套钢筋混凝土柱的塑性变形能力和ASCE 41-06中的相应建模参数。迄今为止,已经使用了三种主要的护套材料(混凝土,钢和纤维增强聚合物)。特别要注意的是,夹套柱中的塑料漂移与ASCE / SEI 41-06中的建模参数相比是否令人满意。

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