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首页> 外文期刊>Bulletin of earthquake engineering >Seismic behavior of autoclaved aerated concrete low rise buildings with reinforced wall panels
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Seismic behavior of autoclaved aerated concrete low rise buildings with reinforced wall panels

机译:高压灭菌混凝土低层建筑用加强墙板的地震行为

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Reinforced Autoclaved Aerated Concrete (AAC) wall panels are more commonly used to construct load-bearing walls in low-rise prefabricated buildings located in seismic zones. In the scope of this study, the seismic response of buildings constructed with reinforced AAC wall panels was investigated. To this end, an in situ test was conducted on a two-story test building under reversed cyclic displacement excursions. It was determined that the test building could carry a lateral load of 60% more than its weight and has a global displacement ductility of about 3.5. The first story of the building was observed to be critical and the failure of the building was due to overturning response of the whole system. In addition, the proposed numerical models for simulating the behavior of the AAC wall panels were validated. These calibrated numerical models were utilized to conduct nonlinear static analysis of the test building and a reasonably good agreement was observed between the test results and simulations. The results of the incremental dynamic analyses demonstrated that i) the two-story test building could resist strong ground motions with PGA values up to 0.6g without undergoing significant plastic deformations and ii) a reserve of ductility and over strength is available for the AAC panel building to survive earthquakes with PGAs reaching nearly 0.6g. Based on these numerical results, reinforced AAC wall panel buildings appear to be good alternatives for low-rise construction in seismic regions.
机译:增强高压灭菌的混凝土(AAC)壁板更常用于构建位于地震区的低层预制建筑物中的承载壁。在本研究的范围内,研究了用加强AAC壁板构成的建筑物的地震反应进行了研究。为此,在逆转循环位移游览下的两层测试建筑上进行了一个原位测试。确定测试建筑可以携带比其重量更多的60%,并具有约3.5的全球位移延性。观察到建筑的第一个故事是至关重要的,建筑物的失败是由于整个系统的推翻响应。此外,验证了用于模拟AAC壁板行为的提出的数值模型。这些校准数值模型用于对测试建筑进行非线性静态分析,在测试结果和模拟之间观察到合理的协议。增量动态分析的结果证明,i)两层测试建筑可以抵抗具有高达0.6g的PGA值的强大地面运动,而无需经历显着的塑性变形,ii)可用于AAC面板的延展性储备和超强强度建筑物与PGA的地震生存近0.6克。基于这些数值效果,加强AAC墙板建筑似乎是地震区低层建设的良好替代方案。

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