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Wind Tunnel and Uniform Pressure Tests of a Standing Seam Metal Roof Model

机译:直立煤层金属屋盖模型的风洞和均匀压力试验

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摘要

A simplified model of a standing seam metal roof was tested to failure under both uniform and wind tunnel pressures. The model was designed to fail at clips that were calibrated to a scaled strength based on full-scale testing performed at Mississippi State University. The goal of the study was to quantify the relationship between uniform uplift pressure used in standard test procedures and the dynamic pressures that occur during real wind loading that cause failure. An effective external pressure coefficient was formed based on the uniform pressure and mean roof height wind speed that were required to fail the model. This coefficient was compared with GCP values suggested by ASCE 7-02. The model indicated that, for a component designed for the corner zone, the ASCE specified design pressures would overestimate the pressures that would be effective in failing a clip by 30 percent. Comparison between clip load response and the pressures measured on a rigid model demonstrated that the response was closely related to the integrated pressures surrounding the clip using appropriate influence functions.
机译:测试了直立接缝金属屋顶的简化模型在均匀压力和风洞压力下的破坏。该模型被设计为在根据密西西比州立大学进行的全面测试而校准为缩放强度的片段失败。这项研究的目的是量化标准测试程序中使用的均匀提升压力与在实际风荷载作用下引起失效的动态压力之间的关系。基于使模型失效所需的均匀压力和平均屋顶高度风速形成有效的外部压力系数。将该系数与ASCE 7-02建议的GCP值进行了比较。该模型表明,对于为拐角区域设计的组件,ASCE指定的设计压力将高估将使夹子失效的有效压力达30%。夹子载荷响应与在刚性模型上测得的压力之间的比较表明,使用适当的影响函数,该响应与夹子周围的积分压力密切相关。

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