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q-factor estimation for 3D log-house timber buildings via Finite Element analyses

机译:通过有限元分析估算3D木屋木材建筑的q因子

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The paper numerically investigates the structural response of log-house (or log-haus, Blockhaus, etc.) timber buildings under seismic loads. The typical log-house system consists of a series of timber members, stacked horizontally one upon another. There, the mechanical interaction is given by traditional timber joints with carvings, multiple contact surfaces, friction phenomena. Even though log-house systems are widely used for the construction of wooden houses or commercial buildings in earthquake-prone regions, no design provisions are currently given in design standards. In this paper, a Finite Element (FE) numerical investigation is performed in ABAQUS on full three-dimensional (3D) log-house buildings subjected to seismic loads, as an extension of past studies focused on single components and walls only. In the typical FE model, the cyclic behaviour of carpentry joints at the interception between multiple logs and walls is properly accounted, including frictional effects and possible tolerance gaps due to the construction process. Nonlinear dynamic analyses are carried out on a set of selected building configurations of technical interest for design, giving evidence of their structural performance. Based on the so collected parametric FE results, estimations of the q-behaviour factor are hence discussed. As shown, the FE data suggests that - compared to other timber structures - a larger inter-storey drift should be considered for the seismic design of log-house buildings. In addition, the same FE results show that a q-behaviour factor up to 2.8 can be accounted.
机译:本文对地震作用下木屋(或原木房,Blockhaus等)的木结构进行了数值研究。典型的木屋系统由一系列木材构件组成,彼此水平堆叠。在那里,机械相互作用是由带有雕刻,多个接触面,摩擦现象的传统木材接头赋予的。尽管在地震多发地区,木屋系统已广泛用于建造木结构房屋或商业建筑,但设计标准目前未提供任何设计规定。在本文中,在ABAQUS上对承受地震荷载的完整三维(3D)木屋房屋进行了有限元(FE)数值研究,作为对过去仅集中于单个构件和墙壁的研究的扩展。在典型的有限元模型中,适当考虑了木工节在多根原木和墙之间的截距处的循环行为,包括摩擦效应和施工过程中可能出现的公差间隙。非线性动力学分析是在一组选定的对技术感兴趣的建筑结构上进行的,以进行设计,并提供其结构性能的证据。基于如此收集的参数有限元结果,因此讨论了q行为因子的估计。如图所示,有限元数据表明-与其他木材结构相比-木屋建筑的抗震设计应考虑较大的层间漂移。此外,相同的有限元结果表明,可以考虑高达2.8的q行为因子。

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