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Case Study on the Seismic Performance of Reinforced Concrete Intermediate Moment Frames using ACI Design Provisions

机译:ACI设计规定钢筋混凝土中间框架抗震性能案例研究

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In reinforced concrete design, seismic provisions outline three types of moment resisting frames for use in high, moderate, and low seismic regions. However, there has been no methodology for assessing the performance of these structures other than through observations from actual seismic events or physical testing. The Applied Technology Counsel (ATC) has developed the ATC-63 Methodology (now FEMA P695) for assessing the seismic performance of structures through mathematical simulation, which may be used to assess the performance of reinforced concrete frames. This study investigates the performance of reinforced-concrete intermediate moment frames (IMF) used in moderate seismic zones. In this study, a four-story and six-story IMF were designed; once using current American Concrete Institute (ACI) seismic provisions and again with the addition of a strong-column weak-beam ratio. The earthquake simulation and dynamic analysis software OpenSees was then used to model the frames and analyze their structural performance. The ATC-63 Methodology as outlined in FEMA P695: Quantification of Building Seismic Performance Factors was used to assess the performance, focusing namely on the IMF's median collapse capacity, in terms of spectral acceleration. Three major findings applicable to IMFs of the type and height modeled were produced from the study. First, the results indicate that the current IMF provisions of ACI-318 2008 do provide acceptable seismic performance. Second, the addition of a strong-column weak-beam ratio did not offer significant improvement over current provisions. Third, the study indicates a potential concern for shear failure occurring that the models would not detect. Further investigation is needed to address this concern. These results add insight into the design provisions for intermediate moment frames and contribute to the technical base for future criteria and study.
机译:在钢筋混凝土设计中,地震规定概述了三种类型的力矩抵抗框架,用于高,中等和低地震区域。然而,除了通过从实际地震事件或物理测试的观察来评估这些结构的性能没有任何方法。应用技术律师(ATC)开发了ATC-63方法(现在FEMA P695),用于评估通过数学模拟的结构的地震性能,可用于评估钢筋混凝土框架的性能。本研究研究了中等地震区使用的增强混凝土中间框架(IMF)的性能。在这项研究中,设计了四层和六层IMF;一旦使用当前美国混凝土研究所(ACI)地震规定,再次添加强柱弱束比。然后使用地震仿真和动态分析软件开放式对框架进行建模并分析其结构性能。在FEMA P695中概述的ATC-63方法:建筑地震性能因素的量化用于评估性能,即在光谱加速度方面对IMF的中位数塌陷能力集中起来。从研究中产生了适用于类型和高度建模的IMF的三个主要发现。首先,结果表明,目前的ACI-318 2008的IMF规定确实提供了可接受的地震性能。其次,添加强柱的弱束比没有提供对电流规定的显着改善。第三,该研究表明模型不会检测到剪切失败的潜在问题。需要进一步调查来解决这一问题。这些结果为中间时刻框架的设计规定提供了深入了解,并为未来标准和研究有助于技术基础。

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