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Shake Table Test for the Collapse Investigation of a Typical Multi-Story Reinforced Concrete Frame Structure in the Meizoseismal Area

机译:隔震区典型多层钢筋混凝土框架结构倒塌调查的振动台试验

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According to statistics from past earthquakes, it is observed that multi-story reinforced concrete (RC) frames represent a large proportion of the structural failures or collapses in seismic events. Hence, research on seismic collapse mechanisms and risks of RC frame structures subjected to extreme earthquakes is of foremost importance. Both experimental and numerical studies have been substantially carried out in this field. In order to represent an actual process of structural damage in an actual seismic event and provide a calibration test for numerical studies, a shake table collapse test of a typical multi-story RC frame structural model, which is scaled from a nearly collapsed building in the 2010 Ms 7.1 Yushu earthquake in China, was performed. Both the test and earthquake field investigation indicate that severe damage mainly occurred at the column ends. As dual structural systems, i.e., systems combining frames and additional members that mainly carry seismic loading, could be a better way to solve the unexpected damage mechanism of RC frames, a practical stiffness iteration design method based on the nonlinear static analysis to obtain the optimal stiffness demanding of the lateral load-resisting members in each story is proposed. This approach aims to control the structural deformation pattern along the height. The outcome of this study provides some intrinsic understanding of the inherent collapse mechanisms of similar RC frames during strong earthquakes. It also offers a practical design method to improve the seismic collapse resistance of RC frames.
机译:根据过去地震的统计数据,可以看到多层钢筋混凝土(RC)框架代表了地震事件中结构破坏或倒塌的很大一部分。因此,研究钢筋混凝土框架结构遭受地震的倒塌机理和风险至关重要。在该领域中已经进行了大量的实验和数值研究。为了表示实际地震事件中结构破坏的实际过程并提供用于数值研究的校准测试,对典型的多层RC框架结构模型进行了振动台倒塌测试,该测试是从建筑物中几乎倒塌的建筑物中缩放而来的2010年,中国进行了7.1玉树地震。测试和地震现场调查均表明,严重损坏主要发生在立柱末端。由于双重结构系统,即将框架和主要承受地震荷载的附加构件组合而成的系统,可能是解决RC框架意外破坏机理的更好方法,因此,一种基于非线性静力分析的实用刚度迭代设计方法可以获取最优值。提出了每个层中侧向抗力构件的刚度要求。该方法旨在控制沿高度的结构变形模式。这项研究的结果为强地震期间类似RC框架的固有坍塌机制提供了一些内在的理解。它还提供了一种实用的设计方法来提高RC框架的抗地震倒塌能力。

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