Structural Design and Modelling Method for the Post-tensioned CLT Shear Wall Structures

Minjuan He, Xiaofeng Sun, Zheng Li
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Abstract

This paper presents the direct displacement-based design (DDD) procedure, structural modelling method, and structural performance calibration for post-tensioned CLT shear wall structures (PT-CLTstrs). Numerical models of the post-tensioned (PT) CLT shear walls were developed and calibrated with the experimental results. Based on the developed shear wall models, parametric analysis were conducted to investigate the lateral performance influencing factors. Then, a DDD procedure was developed and demonstrated by the design examples of a set of 8-, 12-, and 16-storey PT-CLTStrs. The corresponding simplified structural models were developed, and then a series of pushover and time-history dynamic analysis were conducted to calibrate the calculated structural performance objectives with the design targets of the DDD procedure. Finally, the empirical cumulative distribution functions (CDFs) of the maximum inter-storey drift (MaxISDR) were constructed. It is found that when the width of the PT CLT shear walls increases from 1.8 m to 3.0 m, the base shear at the drift of 2.0 % increases by twice accordingly. When the diameter of the PT strand increases from 15.2 mm to 34.6 mm, the base shear at the drift of 2.0 % increases by up to five times. Additionally, the MaxISDR limitation of the PT-CLTStrs is recommended as 2.2 % under the collapse prevention (CP) hazard level. The study results can serve as guidelines for the development of engineering design methods for the PT-CLTStrs.
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后张拉CLT剪力墙结构设计与建模方法
本文介绍了后张CLT剪力墙结构的直接基于位移的设计(DDD)程序、结构建模方法和结构性能标定。建立了后张式CLT剪力墙的数值模型,并根据试验结果进行了校正。在建立剪力墙模型的基础上,对影响剪力墙横向性能的因素进行了参数化分析。然后,开发了DDD程序,并通过一组8层、12层和16层PT-CLTStrs的设计实例进行了演示。建立了相应的简化结构模型,并进行了一系列的推覆和时程动力分析,将计算的结构性能目标与DDD程序的设计目标进行了校准。最后,构造了最大层间位移(MaxISDR)的经验累积分布函数。结果表明,当PT CLT剪力墙的宽度从1.8 m增加到3.0 m时,在2.0%的位移处,基底剪力相应增加2倍。当PT股径从15.2 mm增加到34.6 mm时,漂移2.0%时的基剪增加了5倍。此外,PT-CLTStrs的最大isdr限制在防止倒塌(CP)危险级别下建议为2.2%。研究结果可为PT-CLTStrs工程设计方法的发展提供指导。
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