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Performance and risk to light-framed wood residential buildings subjected to tornadoes

机译:遭受龙卷风袭击的轻型木结构住宅的性能和风险

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Light-framed residential wood buildings constitute the majority of residential construction in the U.S. These buildings seldom are engineered for specific hazards. As a result, they may be inadequate to ensure life safety, let alone continued functionality during and after a severe natural hazard. The aims of this study are twofold: to assess the performance of light-frame wood residential buildings under tornado hazards, and to link performance of individual building components to building system performance so that the effect of implementing improved construction techniques can be quantified. These goals were realized through the development of detailed finite element models to capture individual building component behavior and building system performance under tornado wind pressure loading. Based on the data acquired from the finite element models, tornado wind fragilities (damage state probabilities) were developed for several building archetypes. First, typical construction quality was considered to establish a frame of reference; subsequently various improved construction techniques were considered in an effort to meet community resilience performance targets provided from concurrent research. The study shows that, while current construction practices fail to meet risk-informed building performance criteria needed to achieve community resilience goals, these goals can be achieved by modest improvements to existing construction techniques. (C) 2017 Elsevier Ltd. All rights reserved.
机译:轻型住宅木结构建筑是美国大多数住宅建筑。这些建筑很少针对特定危害而设计。结果,它们可能不足以确保生命安全,更不用说在严重自然灾害期间和之后的持续功能。这项研究的目的是双重的:评估龙卷风危害下的轻型木结构住宅建筑的性能,并将单个建筑构件的性能与建筑系统性能联系起来,以便可以量化实施改进的建筑技术的效果。这些目标是通过开发详细的有限元模型来实现的,以捕获在龙卷风风压作用下的各个建筑构件行为和建筑系统性能。基于从有限元模型中获得的数据,针对几种建筑原型开发了龙卷风风脆弱性(破坏状态概率)。首先,考虑典型的施工质量以建立参考框架。随后考虑了各种改进的施工技术,以期满足并发研究提供的社区适应能力目标。研究表明,尽管当前的施工实践无法满足实现社区抵御力目标所需的风险告知的建筑性能标准,但可以通过对现有施工技术进行适度改进来实现这些目标。 (C)2017 Elsevier Ltd.保留所有权利。

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