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The Wind Characteristics of Tall Cylinder Buildings with Vertical-Grooves

机译:具有垂直槽的高筒座的风特性

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The Reynolds number of flow field around circular cylinders is usually high under strong wind for most full-scale tall buildings, which is difficult to achieve in most wind tunnel tests. To explore the wind characteristics of tall cylindrical buildings with vertical-equidirectional grooves from subcritical to transcritical flow, wind tunnel tests and full-scale large eddy simulations were carried out. The results showed that the rectangular-grooves narrow the wake width due to the downstream movement of the separation point and the deeper grooves cause smaller mean pressure. Furthermore, larger groove roughness leads to lower frequency of vortex shedding and the Strouhal number remains at the range from 0.15 to 0.35. The drag coefficient of rough cylinders is 2~3 times as large as that of smooth cylinders under the trend of decrease.
机译:圆柱圆柱周围的雷诺流场数量在强风中的强风通常高,对于大多数风洞测试难以实现。为了探讨具有从亚临界流量的垂直环临界凹槽的高圆柱形建筑的风特性,进行风洞测试和全规模的大涡模拟。结果表明,由于分离点的下游运动,矩形槽缩小了唤醒宽度,并且较深的槽引起较小的平均压力。此外,较大的凹槽粗糙度导致涡流脱落的较低频率,并且Strouhal数保持在0.15至0.35的范围内。粗糙圆柱体的拖曳系数是在减少趋势下的平滑圆筒的2〜3倍。

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