首页> 外文会议>Applied Technology Council Structural Engineering Institute conference on improving the seismic performance of buildings and other structures >INFILL WALLS AS A SPINE TO ENHANCE THE SEISMIC PERFORMANCE OF NON-DUCTILE REINFORCED CONCRETE FRAMES
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INFILL WALLS AS A SPINE TO ENHANCE THE SEISMIC PERFORMANCE OF NON-DUCTILE REINFORCED CONCRETE FRAMES

机译:填充墙作为脊柱,以提高非延展性钢筋混凝土框架的地震性能

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This paper reports the results of an investigation on the efficacy of using rocking spines of strengthened infill walls as a retrofit measure for non-ductile reinforced concrete (RC) frames with unreinforced masonry (URM) infill walls. The study examines the effects of spines of strengthened URM infill walls on the behavior of the RC frame, with particular emphasis on whether spines could reduce the tendency to form a soft story mechanism. For this purpose, a nine story frame with five bays is selected to represent complex multi-story behavior, where the collapse of stiff infill walls may lead to the formation of a soft story mechanism. The effect of the proposed retrofit is investigated through nonlinear static and dynamic analyses. Fragility relationships are obtained for the frames using pseudo-acceleration corresponding to the first mode as the intensity measure and maximum interstory drift ratio as the response variable. For the analyses, a progressive collapse algorithm, previously developed and implemented into the object-oriented open system for earthquake engineering simulation (OpenSees) is utilized and the interaction between the inplane strength of the infill wall and its out-of-plane strength is taken into consideration. Analyses show that infill retrofit with rocking spines provides significant improvement in the seismic performance of non-ductile RC frames.
机译:本文报告了使用加强填充壁的摇摆脊柱的疗效研究结果作为非延展性钢筋混凝土(RC)框架的改造措施,其具有未原始的砌体(URM)填充壁。该研究探讨了加强URM填充墙体对RC帧行为的影响,特别强调刺可以降低形成软故事机制的趋势。为此目的,选择了九个故事框架,其中包含五个托架,代表复杂的多层行为,其中抗填充壁的坍塌可能导致形成软故事机制。通过非线性静态和动态分析研究了所提出的改造的效果。使用与第一模式对应的伪加速度的帧是帧的帧关系,作为强度测量和最大惰性漂移比作为响应变量。对于分析,利用先前开发和实施到面向地震工程模拟(Opensees)的面向对象的开放系统的渐进崩溃算法(开放式),并采取了填充壁的平面强度与其外平面强度之间的相互作用考虑。分析表明,具有摇摆脊柱的填充改造在非延展性RC框架的地震性能下提供了显着的改善。

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