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Seismic Damage Investigation and Seismic Performance Study of Lushan Middle School Gymnasium

机译:庐山中学体育馆的地震损伤调查与地震性能研究

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摘要

The seismic behavior of Lushan Middle School gymnasium, whose grid structure was heavily damaged during the Mw7.0 Lushan earthquake in 2013, is simulated by three finite-element models. In field observations, 72 buckled members were found, but no tensile failure or obvious tensile yield was found. The results of each model are analyzed by comparing the simulated damage with field observations. The results suggest that Model A shows the best analysis results, followed by Model C, and finally Model B. Causes of seismic damage not only the uneven stiffness of the structure's support columns caused by ring beams leads to redistribution of the internal forces, but the dynamic amplification effect of the lower frames also intensified the damage to the grid structure. Therefore, the authors recommend that the code should distinguish between pure grid structures and grid structures supported by RC frames and introduce design models that integrate the two structures and include a coupling effect between them. In addition, the integrated model should be used in a seismic check of grid structures with concrete supporting structures. (c) 2020 American Society of Civil Engineers.
机译:庐山中学体育馆的地震行为,其网格结构在2013年MW7.0庐山地震期间受到严重损坏的影响,采用三种有限元模型模拟。在现场观察中,发现了72个屈曲的成员,但没有发现拉伸失效或明显的拉伸产率。通过将模拟损伤与现场观测进行比较来分析每个模型的结果。结果表明,模型A显示了最佳的分析结果,其次是C型,最终模型B.地震损伤的原因不仅是由环形梁引起的结构支撑柱的不均匀刚度导致内部力的再分配,但是下框架的动态放大效果还强化了对网格结构的损坏。因此,作者建议代码应区分RC帧支持的纯网格结构和网格结构,并引入集成两个结构的设计模型,并包括它们之间的耦合效果。此外,集成模型应用于具有混凝土支撑结构的栅格结构的地震检查。 (c)2020年美国土木工程师协会。

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