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Experimental Investigation of Wind Loads on Fish-shaped Roof Structures

机译:鱼形屋顶结构风荷载的实验研究

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Wind tunnel tests of 1:100 rigid model of fish-shaped roof structures were carried out. The mean, fluctuating (RMS) and peak pressure coefficients, the local shape coefficient distributions on fish-shaped roofs were presented and discussed. It was found that negative pressures (suctions) occurred on the most areas on the roofs, and high negative pressure coefficients occurred on the eaves and cantilevered roof parts. When wind flows blew along the corridors under the roofs, the flows enhanced suctions on the surfaces of the roofs, and the suctions on the lower surface were greater than those on the upper surfaces, positive pressures occurred on that area after superposition of wind actions on the two sides. The roof eaves and regions above the corridors experienced the worst RMS pressure coefficients and the worst minimum pressure coefficients. The distribution characteristics of the worst RMS and minimum pressure coefficients were found to be quite similar to those of the mean pressure coefficients. The results obtained from the experimental investigation are expected to be useful in the wind-resistant design of complex roof structures in typhoon-prone regions.
机译:进行1:100刚性鱼形屋顶结构模型的风洞试验。呈现和讨论了鱼形屋顶上的局部形状系数分布的平均值,波动(RMS)和峰值压力系数。发现在屋顶上的大部分区域发生负压(上流液),并且在屋檐和悬臂屋顶部件上发生高负压系数。当风流动沿屋顶下的走廊吹动时,流动增强了屋顶表面上的吸盘,下表面上的吸盘大于上表面上的吸盘,在风动作叠加后的该区域上发生正压力双方。走廊上方的屋顶和区域经历了最差的RMS压力系数和最坏的最小压力系数。发现最差RMS和最小压力系数的分布特性与平均压力系数的分布特性非常相似。预计从实验研究中获得的结果将在台风俯卧区中复杂屋顶结构的防风设计。

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