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Numerical study on the elastic buckling of cross-laminated timber walls subject to compression

机译:交叉层压木墙受压弹性屈曲的数值研究

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摘要

The recent trend towards the use of Cross-Laminated Timber (CLT) as a novel construction material in mid- and high-rise buildings has steered the research efforts into this subject over the last few years. Despite the considerable progress made on the structural response of CLT, there are still several unresolved issues related to the analysis and design of CLT. This is of great interest for engineers and designers working on the mass timber construction sector. In particular, the buckling behaviour of CLT walls is a problem not fully understood to date. Therefore, in this paper we investigate the buckling capacity of CLT subject to compressive loads. In order to capture the heterogeneities present in wood, a multi scale modelling strategy is adopted. To improve the numerical predictions, an optimisation-based parameter identification procedure is performed to calibrate the micromechanical parameters of wood. The numerical predictions are compared with experimental results and are validated successfully. The numerical model is then used to study the influence of the number of layers and wall openings on the buckling capacity of CLT walls. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在最近的中高层建筑中,使用交叉层压木材(CLT)作为新型建筑材料的最新趋势已将研究工作引向了这一领域。尽管在CLT的结构响应方面取得了相当大的进步,但是仍然存在一些与CLT的分析和设计有关的未解决问题。这对于从事大规模木材建筑行业的工程师和设计师非常感兴趣。特别地,CLT壁的弯曲行为是迄今为止尚未完全理解的问题。因此,在本文中,我们研究了压缩载荷作用下CLT的屈曲能力。为了捕获木材中存在的异质性,采用了多尺度建模策略。为了改善数值预测,执行了基于优化的参数识别程序以校准木材的微机械参数。将数值预测与实验结果进行了比较,并成功地进行了验证。然后使用数值模型研究层数和壁孔数对CLT壁屈曲能力的影响。 (C)2018 Elsevier Ltd.保留所有权利。

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