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Numerical Retrofit Study of Light-Frame Wood Buildings Using Shape Memory Alloy Devices as Seismic Response Modification Devices

机译:使用形状记忆合金装置作为地震响应修正装置的轻木结构房屋的数值改造研究

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Woodframe buildings have historically performed well during earthquakes primarily because of their high strength/stiffness to weight ratio. Even still, these structures possess the potential for significant damage and even collapse when exposed to very large earthquakes. New design techniques and advanced technologies can provide an alternative for improved building performance. The use of dampers and other seismic response modification devices is one such method being explored in earthquake engineering. In this paper, shape memory alloy (SMA) devices are investigated for the response modification of light-frame wood buildings during strong earthquakes. A numerical model for a suite of SMA wood shearwalls is developed based on existing data. The numerical models of the shearwalls are examined using incremental dynamic analysis at the single wall level. Design charts are developed for the shearwall models for a range of seismic weights and targeted performance levels. The wall database is then used to demonstrate retrofit of a four-story apartment building. The interstory drift was reduced by over 55% when SMA devices are used for response modification of the four-story apartment building.
机译:从历史上看,木结构建筑在地震期间表现良好,主要是因为它们的高强度/刚度与重量比。即便如此,当暴露于非常大的地震中时,这些结构也具有潜在的严重破坏甚至崩溃的潜力。新的设计技术和先进技术可以为提高建筑性能提供替代方案。减震器和其他地震响应修正装置的使用是地震工程中正在探索的一种这样的方法。本文研究了形状记忆合金(SMA)装置在轻型地震期间对轻型木结构建筑的响应修正。基于现有数据,开发了一套SMA木剪力墙的数值模型。剪力墙的数值模型使用单壁水平的增量动力分析进行检查。针对剪力墙模型开发了设计图,以用于一系列地震权重和目标性能水平。然后使用墙数据库来演示四层公寓楼的改造。当SMA设备用于四层公寓楼的响应修改时,层间漂移减少了55%以上。

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