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Modeling wind load paths and sharing in a wood-frame building

机译:建模风力负荷路径和在木制框架建筑中共享

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While establishing adequate load paths in the light-frame wood structures is critical to maintain the overall structural integrity and avoid significant damage under extreme wind events, the understanding of the load paths is limited by the high redundant nature of this building type. The objective of the current study is to evaluate the system effects and investigate the load paths in the wood structures especially the older buildings for a better performance assessment of the existing building stock under high winds, which will provide guidance for building constructions in the future. This is done by developing building models with configurations that are suspicious to induce failure per post damage reconnaissance. The effect of each configuration to the structural integrity is evaluated by the first failure wind speed, a major indicator beyond the linear to the nonlinear range. A 3D finite-element (FE) building model is adopted as a control case that is modeled using a validated methodology in a highly-detailed fashion where the nonlinearity of connections is explicitly simulated. This model is then altered systematically to analyze the effects of configuration variations in the model such as the gable end sheathing continuity and the gable end truss stiffness, etc. The resolution of the wind loads from scaled wind tunnel tests is also discussed by comparing the effects to wind loads derived from large-scale wind tests.
机译:在灯具木结构中建立足够的负载路径,关键是保持整体结构完整性并避免在极端风赛中的重大损害,但对负载路径的理解受到该建筑类型的高冗余性质的限制。目前研究的目的是评估系统效应,并调查木结构中的负荷路径,尤其是旧建筑,以更好地评估现有的高风中的建筑物库存,这将为未来建筑结构提供指导。这是通过开发建筑模型的建筑模型来完成,这些配置可以怀疑每次损坏损伤侦察的故障诱导。通过第一故障风速评估每种配置对结构完整性的影响,该故障风速,超出线性到非线性范围的主要指示器。采用3D有限元(FE)构建模型作为使用验证方法以高度详细的方式建模的控制箱,其中明确地模拟了连接的非线性。然后系统地改变该模型以分析模型中的构造变化的效果,例如山墙端护套连续性和山末端桁架刚度等。还通过比较效果来讨论来自缩放风洞测试的风荷载的分辨率源于大规模风测试的风力载荷。

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