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首页> 外文期刊>Journal of the Chinese Institute of Engineers >Wind loads on flat roofs of low-rise buildings with rounded leading edge
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Wind loads on flat roofs of low-rise buildings with rounded leading edge

机译:风荷载在低层建筑物的平顶屋顶上,圆形领先的领先地位

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摘要

Using wind tunnel experiments, wind loads on the flat roofs of low-rise buildings with rounded leading edges were investigated under the effects of separation bubbles and conical vortices. First, pressure distributions on the flat roofs were presented. Second, total uplift forces and overturning moments were calculated by the introduction of area-averaged pressures. Third, eigenvalues and eigenvectors of fluctuating pressure were obtained by proper orthogonal decomposition. Finally, wind pressure characteristics at the rounded edges were examined. The results indicate that after the use of a rounded leading edge, suctions induced by separation bubble and conical vortices increase near the chamfer, decrease beneath the vortices, and stay invariant far from the leading edge. The area involved and the energy of pressure fluctuation decrease, with the largest decrease occurring on a flat roof with a larger fillet radius under conical vortices. In addition, the maximum decreases in peak total uplift forces and overturning moments reach 11% and 62%, respectively, and appear at skewed flows. The maximum suction and low-frequency spectral peak of pressure fluctuations at the rounded leading edge may exceed those at the neighboring region. As the fillet radius increases, the maximum suction and low-frequency pressure fluctuation energy at the chamfer decrease.
机译:使用风洞实验,在分离气泡和锥形涡流的影响下,研究了低层建筑物的平坦屋顶上的风力载荷。首先,提出了平顶屋顶上的压力分布。其次,通过引入面积平均压力来计算总隆起力和推翻的矩。第三,通过适当的正交分解获得波动压力的特征值和特征向量。最后,检查了圆形边缘的风压特性。结果表明,在使用圆形前缘之后,通过分离气泡和锥形涡流引起的混合物在倒角附近增加,涡流下降,并且远离前缘的不变性。所涉及的地区和压力波动的能量减小,在锥形涡流下的扁平屋顶上发生最大的减小,具有较大的圆角半径。此外,峰值总升压力的最大降低分别达到11%和62%,并且出现在偏斜流动下。圆形前缘处的压力波动的最大抽吸和低频光谱峰可能超过相邻区域的压力波动。随着圆角半径的增加,倒角下的最大抽吸和低频压力波动能量减小。

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