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The influence of connection stiffness on the dynamic properties and seismic performance of tall cross-laminated timber buildings

机译:连接刚度对高层层压木材建筑物动态性能和地震性能的影响

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It has become common practise to use Cross-laminated Timber (CLT) panels in shear wall applications in buildings around the world. Herein, the influence of the hold-downs, vertical and horizontal shear connections between the CLT panels on the period and stiffness of buildings was investigated. Two prototypes, 12-storey and 18-storey tall, of balloon-type construction were designed. To address the local seismicity of the chosen site in Vancouver, Canada, a range of crustal, subcrustal and subduction ground motions was selected for assessment as per the 2015 National Building Code of Canada. A total of 22 three-dimensional finite element building models with different combinations of connection properties were developed. Modal and time history analyses showed that the horizontal connections have the most significant impact on the overall building stiffness, resulting in up to 47% lager drifts when compared to the baseline model with an assumed rigid connection. The hold-down and vertical connection stiffnesses have lower impact on the dynamic properties and seismic performance of tall CLT buildings. The influence of connection stiffness was found to decrease with the increase of building height for this particular CLT tall building system with the connections designed as in this research.
机译:它已经成为在世界各地建筑物中使用交叉层压木材(CLT)面板进行剪切墙应用。这里,研究了CLT板之间的压紧,垂直和水平剪切连接在建筑物周期和刚度之间的影响。设计了两个原型,12层和18层高的气球型结构。为应对温哥华所选地区的当地地震性,根据加拿大的2015年国家建筑码,选择了一系列地壳,亚错误和俯冲地面动作。开发了具有不同组合的22种三维有限元建筑模型。模态和时间历史分析表明,与具有假定刚性连接的基线模型相比,水平连接对整体建筑刚度的影响最大,导致最多47%的储存。压紧和垂直的连接刚度对高层电池建筑的动态性质和地震性能影响较低。发现连接刚度的影响随着这种特殊CLT高层建筑系统的建筑高度的增加而降低,具有如本研究中的连接。

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