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Application of Wind Fairings for Building Aerodynamic Optimization

机译:风罩在建筑空气动力学优化中的应用

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摘要

Based on principles of wind-adaptable design (WAD), wind fairings can be used as operable flow control devices to optimize building's aerodynamic properties during severe wind storms. With this approach, the common design conflicts between architectural concepts and aerodynamic requirements can be avoided, and wind effects on buildings can therefore be dealt with more smoothly and efficiently during design. This paper lays out the criteria for wind fairing design that meet the requirements for WAD. Two types of fairing, named Scheme A and Scheme B, were studied. Detailed parameter studies using high-frequency force-balance (HFFB) technique are introduced, aiming at optimizing size of the wind fairings to further enhance their effectiveness. It was found that for Scheme A fairings, the optimal configuration has a relative width of about 1/10, a relative height of 1/5 or more and a fairing angle of about 45°. For Scheme B fairings, the optimal configuration has a relative width of about 1/10 and a relative gap of about 1/10. While further optimization is still possible, the current study has validated that a reduction of about 20% on design wind loads is reachable with properly designed wind fairings.
机译:基于风适应设计(WAD)的原理,整流罩可以用作可操作的流量控制设备,以在严重暴风雨期间优化建筑物的空气动力学特性。通过这种方法,可以避免建筑概念和空气动力学要求之间的常见设计冲突,因此可以在设计过程中更平稳有效地应对风对建筑物的影响。本文提出了满足WAD要求的风罩设计标准。研究了两种整流罩,分别为Scheme A和SchemeB。介绍了使用高频力平衡(HFFB)技术进行的详细参数研究,旨在优化风罩的尺寸,以进一步提高其效率。已经发现,对于方案A整流罩,最佳构型具有约1/10的相对宽度,1/5或更大的相对高度和约45°的整流角。对于方案B整流罩,最佳配置的相对宽度约为1/10,相对间隙约为1/10。尽管仍然有可能进行进一步的优化,但当前的研究已经证实,通过适当设计风罩,可以将设计风荷载降低约20%。

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