首页> 外文期刊>Engineering Structures >Using instrumented small-scale models to study structural load paths in wood-framed buildings
【24h】

Using instrumented small-scale models to study structural load paths in wood-framed buildings

机译:使用仪器化的小型模型研究木结构建筑中的结构荷载路径

获取原文
获取原文并翻译 | 示例
           

摘要

A large 1/3-scale model of a light-framed wood structure was constructed in order to study the structural reactions to wind loads in a three-dimensional model of a residential building. Thirty load cells measuring structural reactions at roof-to-wall and wall-to-foundation connections were used to determine influence functions in response to surface pressures generated by extreme winds. The influence functions are used in a database-assisted design (DAD) methodology to estimate failure loads in structures subjected to spatio-temporally varying wind loads. Current numerical methods based on 2D component models alone can lead to underestimated failure loads and inadequate designs. This paper describes the approach to develop the physical models and to validate their applicability to full-scale houses. Non-dimensional modeling techniques are explained, and scale model material properties for sheathing, wood-framing members, nails and truss-plate connections are provided. The need for a robust experimental method for determining influence functions is critical as load distributions are unpredictable in these structurally indeterminate systems. Further, the 1/3-scale physical models provide an economical approach to generate a large dataset of empirically-based models needed to cover a wide variety of geometrically complex houses and to calibrate non-linear numerical analysis programs for further DAD studies. The approach introduced in this study can be applied to more complex roof geometries and also to study the combined effects of horizontal and vertical wind load distributions in wood buildings.
机译:为了研究住宅建筑的三维模型中对风荷载的结构反应,构造了一个大型1/3比例的轻型木结构模型。使用三十个测力传感器测量屋顶到墙壁和墙壁到地基连接处的结构反应,以确定响应极端风产生的表面压力的影响函数。影响函数用在数据库辅助设计(DAD)方法中,以估计结构在时空变化的风荷载下的破坏荷载。仅基于2D组件模型的当前数值方法可能会导致低估的失效载荷和不足的设计。本文介绍了开发物理模型并验证其在大型房屋中的适用性的方法。解释了无量纲建模技术,并提供了护套,木框架构件,钉子和桁架-板连接的比例模型材料属性。由于在这些结构不确定的系统中负载分布是不可预测的,因此需要一种可靠的实验方法来确定影响函数至关重要。此外,1/3比例的物理模型提供了一种经济的方法,可以生成大型的基于经验的模型数据集,以覆盖各种几何复杂的房屋,并校准非线性数值分析程序以进行进一步的DAD研究。本研究中介绍的方法可以应用于更复杂的屋顶几何形状,还可以研究木结构建筑中水平和垂直风荷载分布的组合影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号