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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Structure of conical vortices related with suction fluctuation on a flat roof in oblique smooth and turbulent flows
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Structure of conical vortices related with suction fluctuation on a flat roof in oblique smooth and turbulent flows

机译:倾斜涡流中平屋顶上与吸力波动有关的圆锥形涡旋结构

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A structure of conical vortices on a flat roof in oblique flow is investigated by hot-wire velocity measurements in smooth and turbulent flows. The vortices are stronger in smooth flow than in turbulent flow. The centerlines of the vortices go along the line inclined 13° in the smooth flow and 10° in the turbulent flow relative to the eaves. These lines match the ridge lines of the maximum suction. The lateral component of upstream fluctuating velocity correlates well with the fluctuating suction on the roof both in the smooth and the turbulent flows. The large correlation zones spread toward the downstream along the lines inclined 23–25° to the eaves which are located near the edge of the conical vortices. The distinct feature of the correlation is caused by the alternative growth and decay of each vortex.
机译:通过在光滑和湍流中进行热线速度测量,研究了倾斜流动中平屋顶上圆锥形涡旋的结构。涡流在平稳流动中比在湍流流动中更强。相对于屋檐,涡流的中心线沿着顺流倾斜的角度为13°,而湍流的倾角为10°。这些线与最大吸力的山脊线匹配。上游脉动速度的横向分量在平流和湍流中均与屋顶上的脉动吸力相关。大的相关区域沿着与圆锥形涡流边缘附近的屋檐倾斜23–25°的线向下游扩展。相关性的显着特征是由每个涡流的交替增长和衰减引起的。

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