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Influence of the design approach on the behaviour of timber-frame panel buildings under horizontal forces

机译:设计方法对水平作用下木结构板式建筑性能的影响

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Behaviour of the timber-frame panel buildings under the horizontal forces is largely dependent on the type of the chosen design approach. The distribution of the horizontal forces along the timber-framed wall elements is thus influenced by the stiffness of the diaphragm, the stiffness of the wall elements and their connection with one another. However, there is a dilemma whether all the contributions that have an effect on the stiffness of the timber-framed walls are taken into account or not. The factors that influence the stiffness of the wall are the hold-down anchoring, the influence of the walls with openings and the timber-glass wall elements and the influence of the vertical loads. This paper numerically analyses the behaviour of the three-storey timber-frame panel building under the horizontal forces, using different design approaches. The basic approaches are upgraded by including different contributions to the stiffness of the timber-framed walls. Using different design approaches, a comparison of the horizontal force distribution among the walls, vibration periods and horizontal deformations of the building is being made. The results show that the design approach used has a great influence on the distribution of horizontal forces along the walls and the horizontal deformation of the building itself. Taking into account full-height timber-framed walls only, the horizontal deformations of the building could be underestimated.
机译:木构面板建筑物在水平力作用下的行为在很大程度上取决于所选设计方法的类型。因此,沿着木框壁元件的水平力的分布受到隔膜的刚度,壁元件的刚度以及它们彼此的连接的影响。但是,是否考虑到所有对木结构墙的刚度有影响的因素都存在一个难题。影响墙体刚度的因素包括压紧锚固,具有开口的墙体和木玻璃墙元素的影响以及垂直载荷的影响。本文采用不同的设计方法,对三层木框面板建筑在水平力作用下的行为进行了数值分析。通过对木框墙的刚度做出不同的贡献来升级基本方法。使用不同的设计方法,对墙之间的水平力分布,振动周期和建筑物的水平变形进行了比较。结果表明,所采用的设计方法对沿墙的水平力分布和建筑物本身的水平变形有很大影响。仅考虑全高木结构墙,可能会低估建筑物的水平变形。

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