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Performance based design of masonry infilled reinforced concrete frames for near-field earthquakes

机译:基于性能的砖石填充钢筋混凝土框架的近场地震设计

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Performance Based Design (PBD) is an iterative exercise in which a preliminary trial design of the building structure is selected and if the selected trial design of the building structure does not conform to the desired performance objective, the trial design is revised. In this context, development of a fundamental approach for performance based seismic design of masonry infilled frames with minimum number of trials is an important objective. The paper presents a plastic design procedure based on the energy balance concept for PBD design of multi-story multi-bay masonry infilled reinforced concrete (R/C) frames subjected to near-field earthquakes. The proposed energy based plastic design procedure was implemented for trial performance based seismic design of representative masonry infilled reinforced concrete frames with various practically relevant distributions of masonry infill panels over the frame elevation. Non-linear dynamic analyses of the trial PBD of masonry infilled R/C frames was performed under the action of near-field earthquake ground motions. The results of non-linear dynamic analyses demonstrate that the proposed energy method is effective for performance based design of masonry infilled R/C frames under near-field as well as far-field earthquakes.
机译:基于性能的设计(PBD)是一项反复的练习,其中选择了建筑结构的初步试验设计,如果所选的建筑结构试验设计不符合所需的性能目标,则将修改试验设计。在这种情况下,开发具有最低性能的砌石填充框架基于性能的抗震设计的基本方法是一个重要的目标。本文提出了一种基于能量平衡概念的塑料设计程序,用于多层多层砖砌体填充钢筋混凝土(R / C)框架在近场地震中的PBD设计。提出的基于能量的塑料设计程序是针对具有代表性的砌体填充钢筋混凝土框架的抗震设计进行试验设计的,该砌体在框架高度上具有各种实际相关的砌体填充面板分布。在近场地震地震动的作用下,对砌体填充的R / C框架的试验PBD进行了非线性动力分析。非线性动力分析的结果表明,所提出的能量方法对于基于砌体填充的R / C框架在近场和远场地震下的基于性能的设计都是有效的。

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