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Experimental evaluation of a glass curtain wall of a tall building

机译:高层建筑玻璃幕墙的实验评估

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The seismic demand parameters including the floor acceleration amplification (FAA) factors and the interstory drift ratios (IDRs) were acquired from the floor response in time history analysis of a tall building subjected to selected ground motions. The FAA factors determined in this way are larger than those given in most current code provisions, but the obtained IDRs are close to the values given in some code provisions. Imposing a series of in-plane pre-deformations to two glass curtain wall (CW) specimens mounted on a shaking table, the IDRs were reproduced and the FAA factors were satisfied through applications of computed floor spectra compatible motion time histories, whose peak accelerations corresponded to the FAA factors. The CW specimens performed well during the whole experimental program with almost no change in the fundamental frequencies. No visible damage was observed in the glass panels. The maximum stresses detected in each component of the CW system were smaller than the design strengths. The obtained component acceleration amplification factor approached 3.35, which is larger than the value given in the current code provisions. In conclusion, the performance of the studied CW system is seismically safe. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:地震需求参数包括楼层加速度放大(FAA)因子和层间漂移比(IDR),是从高层建筑经过选定地震动的时程分析中的楼层响应中获得的。以这种方式确定的FAA因子大于大多数当前法规中给出的因素,但获得的IDR接近某些法规中给出的值。通过对安装在振动台上的两个玻璃幕墙(CW)标本施加一系列平面内变形,可以复制IDR,并通过应用计算出的地板光谱兼容运动时间历史来满足FAA因子,其峰值加速度对应到FAA因素。连续波样品在整个实验程序中表现良好,基本频率几乎没有变化。在玻璃面板上没有观察到可见的损坏。在连续波系统的每个组件中检测到的最大应力小于设计强度。所获得的分量加速度放大系数接近3.35,大于当前规范中给出的值。总之,所研究的连续波系统的性能在地震方面是安全的。版权所有(c)2016 John Wiley&Sons,Ltd.

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