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Compare Tornado Force Coefficients on Dome and Prism Building Using Three-Dimensional Computational Fluid Dynamics Model

机译:使用三维计算流体动力学模型比较圆顶和棱镜建筑的龙卷风系数

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Wind loads on structures have been investigated for the last five decades. For straight line (SL) wind, the forces on buildings are available from standards and wind tunnel testing. Few studies have been conducted to investigate tornado forces on cubical buildings and to distinguish between tornadic wind loads and SL wind loads. In the tornado-damaged areas, dome buildings seem to have less damage. However, few studies have been investigated to study a tornado interaction with a dome building. In this work, the forces on a dome are computed using computational fluid dynamics (CFD) for tornadic and SL wind. Then, the interaction of a tornado on a dome and a prism building are compared and analyzed. This work describes the results of the tornado wind effect on a dome building. The conclusions drawn from this study are illustrated by various visualizations. The tornado force coefficients on a dome building are larger than force due to SL wind, about 40% more in x-direction and 120% more in z-direction. The tornado maximum pressure coefficients also are higher than SL wind by 130%. The tornado force coefficients on the prism are larger than the forces on the dome, about 150% more in x-direction and about 110% more in z-direction. The tornado maximum pressure coefficients on prism also are greater, by 200%. Hence, a dome building has less tornadic load than a prism because of its aerodynamic shape.
机译:在过去的五十年里,已经调查了结构上的风量。对于直线(SL)风,建筑物上的力量可从标准和风洞测试中获得。已经进行了很少的研究来调查立方体建筑物的龙卷风势力,并区分龙绞车风力荷载和SL风荷载。在龙卷风损坏的地区,圆顶建筑似乎造成的损坏较小。然而,已经调查了很少的研究以研究与圆顶大楼的龙卷风互动。在这项工作中,使用用于龙王和SL风的计算流体动力学(CFD)来计算圆顶上的力。然后,比较和分析了龙卷风对圆顶和棱镜建筑物的相互作用。这项工作描述了龙卷风对圆顶大楼的风力影响的结果。从本研究中得出的结论是通过各种可视化来说明的。圆顶建筑物上的龙卷风系数大于由于SL风引起的力,X方向上的约40%,Z方向上的120%更多。龙卷风最大压力系数也高于SL风130%。棱镜上的龙卷风系数大于圆顶上的力,在X方向上的约150%,Z方向上的约110%更多。棱镜的龙卷风最大压力系数也大于200%。因此,由于其空气动力学形状,圆顶建筑具有比棱镜更少的龙头载荷。

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