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Statistical and analytical models for roof components in existing light-framed wood structures

机译:现有轻框架木结构中屋顶组件的统计和分析模型

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Residential wood-framed construction failures account for the majority of economic losses following hurricanes. A common failure in these constructions during high wind events is loss of roof sheathing, especially in corner areas. Less common perhaps, but usually catastrophic, is the failure of the roof-to-wall connections in these structures. The main objective of the current research project is to evaluate the in-situ capacity of roof-to-wall connections and sheathing to rafter fasteners in light-framed wood constructions. The unique opportunity provided by Clemson University to access four residential structures located within a residential complex enabled the collection of perishable yet statistically significant data on the strengths of existing residential structures. The uplift capacities of 100 roof-to-wall toenail connections and 34 plank sheathing units were evaluated from field and laboratory tests. Realizing the key role of probability distributions in developing fragility estimates and loss prediction models, distribution fits and parameters for these structural components are postulated. One conclusion drawn is that the uplift capacities of two and three nail connections are best described by a lognormal distribution. The initial stiffness and the vertical displacement at peak load of both two nail and three nail connections follow a normal and Weibull distribution respectively. The uplift capacity of plank sheathing follows a lognormal distribution. An analytical model designed to approximate the uplift behavior of toenail connections is developed to facilitate modeling of roof systems. These probabilistic and analytical models developed by this study allow for the performance of detailed reliability based studies on light-framed wood roof structures.
机译:飓风过后,住宅木结构建筑失事造成了大部分经济损失。这些结构在大风天气期间的常见故障是屋顶护套的丢失,尤其是在拐角区域。这些结构中的屋顶到墙壁的连接故障可能较不常见,但通常是灾难性的。当前研究项目的主要目的是评估轻型木结构建筑中屋顶到墙壁的连接和sheath子紧固件的护套的现场承载能力。克莱姆森大学提供的独特机会可以访问位于住宅区内的四个住宅结构,从而可以收集有关现有住宅结构强度的易腐但具有统计意义的数据。通过现场和实验室测试评估了100个屋顶到墙壁的脚趾甲连接和34个木板护套单元的提升能力。认识到概率分布在开发脆弱性估计和损失预测模型中的关键作用,假定了这些结构组件的分布拟合和参数。得出的一个结论是,用对数正态分布可以最好地描述两个和三个钉子连接的提升能力。两个钉子和三个钉子连接的峰值刚度时的初始刚度和垂直位移分别服从正态分布和威布尔分布。木板护套的提升能力遵循对数正态分布。开发了一种分析模型,该模型设计用于近似趾甲连接的提升行为,以简化屋顶系统的建模。本研究开发的这些概率模型和分析模型可对轻型木屋顶结构进行详细的可靠性研究。

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