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CFD validation of wind pressure distribution on a tall building under the influence of upstream terrain

机译:上游地形影响下高层建筑风压分布的CFD验证

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摘要

It is essential to investigate the pressure distribution, aerodynamic coefficients and wind flow fields in-order to predict the wind loads and wind behaviour in building environments. Most of the investigations and international wind load standards haven't highlighted the wind load and wind environment on-and-around buildings under different terrains. The main objective of this investigation is to explore a practical numerical approach for the accurate estimation of wind loads and their impact on buildings under different upstream conditions. In this investigation, simulations are done in IDDES turbulence model along with the formulation of k-ω SST using CFD. Results indicated the influence of ground roughness in pressure distribution on building faces. Furthermore, CFD results over-predicted the experimental values near the edges due to strong shear-flow and expanding wake-vortices. The cross-validation of the mean drag coefficients showed good-agreement. Hence this investigation promotes the practice of IDDES in wind-resistant designs for tall buildings.
机译:必须研究压力分布,空气动力学系数和风力流场,以便在建筑环境中预测风力载荷和风力行为。大多数调查和国际风力负荷标准并没有突出显示不同地形下的建筑物的风力负荷和风环境。本调查的主要目的是探讨一种实用的数值方法,以便在不同上游条件下准确估算风力荷载及其对建筑物的影响。在该研究中,在IDDES湍流模型中进行模拟以及使用CFD的K-ωSST的配方。结果表明,建筑面压力分布中的地面粗糙度的影响。此外,CFD结果通过强剪切流动和扩展唤醒,通过预测边缘附近的实验值。平均阻力系数的交叉验证显示了良好的协议。因此,这项调查促进了高层建筑的防风设计中IDDES的做法。

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