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Shear Performance Assessment of Timber Log-House Walls under In-Plane Lateral Loads via Numerical and Analytical Modelling

机译:平面和横向荷载作用下木材木屋墙抗剪性能评估的数值和解析模型

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Log-house is an ancient construction technology based on the superposition of linear timber logs, connected to the orthogonal walls by a system of carvings, notches and corner joints. Due to the fact that this solution is widely used in constructions located in seismic or windy areas, the in-plane behaviour of walls represents an attractive research topic. In this paper, major outcomes of a Finite-Element (FE) numerical investigation carried out on single corner joints currently in use for log-house buildings are discussed under different loading conditions (i.e., in-plane lateral and vertical compressive loads), including parametric analyses to capture the key aspects of their typical structural response. Careful consideration is paid for the elastic stiffness of such joints, being of primary interest for design purposed. At the same time, a linear analytical formulation is presented, with the aim of providing a simple but useful tool in support of design, and especially to estimate the maximum lateral displacement/resistance for a given log-house wall when subjected to in-plane lateral forces. There, the intrinsic mechanical features of corner joints and related aspects are properly considered (i.e., static friction phenomena, as well as the presence of small gaps, etc.). The analytical model, in addition, takes advantage of the numerically predicted joint stiffness values, being dependent on several parameters. As shown, rather good agreement is obtained between the FE model output, the analytical predictions and past reference experimentalumerical results available in the literature for full-scale log-house walls under in-plane lateral loads, hence suggesting the potential of the proposed approach. In conclusion, possible Force-Preload-Displacement (FPD) charts are presented, to act as simplified tools for preliminary design considerations.
机译:原木房是一种古老的建筑技术,其基础是线性木原木的叠加,并通过雕刻,缺口和角接系统将其连接到正交墙。由于该解决方案广泛用于地震或多风地区的建筑,因此,墙的面内行为代表了一个有吸引力的研究主题。在本文中,讨论了当前在木屋建筑中使用的单角接缝上进行的有限元(FE)数值研究的主要成果,这些结果在不同的载荷条件下(即平面内横向和垂直压缩载荷)进行了讨论,包括参数分析以捕获其典型结构响应的关键方面。对于此类接头的弹性刚度,要进行仔细考虑,这对于设计目的而言是最重要的。同时,提出了一种线性分析公式,其目的是提供一种简单而有用的工具来支持设计,尤其是在平面内承受给定木屋壁的情况下,估算最大横向位移/阻力横向力。在那里,适当考虑了角接缝和相关方面的固有机械特征(即静摩擦现象以及存在小间隙等)。此外,该分析模型利用了数值预测的接头刚度值,该值取决于几个参数。如图所示,有限元模型输出,分析预测和文献中可获得的以往参考实验/数值结果在平面侧向荷载作用下的全尺寸木屋墙之间取得了很好的一致性,因此表明了该方法的潜力方法。最后,给出了可能的“力-预载荷-位移”(FPD)图,以用作简化设计的初步设计考虑因素。

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