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PERFORMANCE OF WOOD-FRAMED RESIDENTIAL STRUCTURES UNDER EXTREME WIND LOADS

机译:极端风荷载作用下木结构住宅结构的性能

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Failures of wood-framed residential structures are among the most common and expensive types of wind damage in densely populated regions. Numerous recent studies have focused on mitigating residential damage during tornadoes and hurricanes. Past work has identified weak links in the vertical load path of wood-framed homes under uplift, focusing primarily on the roofs since their failure is common. In recent work, structural details such as connections and fasteners have been determined to have a large impact on the resilience of wood-framed homes. In this paper, common residential failure modes are reviewed, ongoing work to prevent expensive residential damage is presented, and failure wind speed estimates currently used in tornado assessment are revisited. The results of preliminary structural analyses verify the common understanding that toe-nailed roof-to-wall connections are likely to be among the most vulnerable elements in the structure of a wood-framed house. However, it is also found that certain framing members and connections display significant vulnerability under the same wind uplift, and the possibility of framing failure is not to be discounted. The analysis results and damage survey observations are used to expand the understanding of wood-framed residential roof failures, as they relate to the Enhanced Fujita scale, and address potential gaps in current residential construction practice.
机译:木结构住宅结构的破坏是人口稠密地区最常见,最昂贵的风灾类型。最近的许多研究都集中在减轻龙卷风和飓风期间的住宅破坏上。过去的工作已经确定了在隆起下的木结构房屋的垂直荷载路径中的薄弱环节,主要集中在屋顶上,因为它们的损坏很常见。在最近的工作中,已确定诸如连接和紧固件之类的结构细节对木结构房屋的弹性有很大影响。在本文中,回顾了常见的住宅故障模式,介绍了为防止昂贵的住宅破坏而正在进行的工作,并重新审视了当前在龙卷风评估中使用的故障风速估计值。初步结构分析的结果证实了人们的普遍理解,即脚趾钉屋顶到墙壁的连接很可能是木结构房屋结构中最脆弱的部分。但是,还发现某些框架成员和连接在相同的风向抬升下显示出显着的脆弱性,并且框架失效的可能性不可小视。分析结果和损坏调查观察结果用于扩大对木结构住宅屋顶破坏的理解,因为它们与增强的藤田规模有关,并解决了当前住宅建筑实践中的潜在差距。

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