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Shape Effects on Aerodynamic and Pedestrian-level Wind Characteristics and Optimization for Tall and Super-Tall Building Design

机译:形状对气动和行人风特性的影响以及高层和超高层建筑设计的优化

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This paper reviews shape optimization studies for tall and super-tall building design. Firstly, shape effects on aerodynamic and response characteristics are introduced and discussed. Effects of various configurations such as corner modifications, taper, setback, openings, and twists are examined. Comprehensive comparative studies on various configurations including polygon building models, and composite type building models such as corner-cut and taper, corner-cut and taper and helical, and so on, are also discussed under the conditions of the same height and volume. Aerodynamic characteristics are improved by increasing the twist angle of helical buildings and increasing the number of sides of polygon buildings, but a twist angle of 180° and a number of sides of 5 (pentagon) seem to be enough. The majority of examined configurations show better aerodynamic characteristics than straight-square. In particular, composite type buildings and helical polygon buildings show significant improvement. Next, shape effects on pedestrian-level wind characteristics around tall and super-tall buildings are introduced and discussed. Corner modification buildings show significant reductions in speed-up areas. On the other hand, setback and tapered models with wider projected widths near the ground show adverse effects on pedestrian-level wind characteristics.
机译:本文回顾了高层和超高层建筑设计的形状优化研究。首先,介绍并讨论了形状对空气动力和响应特性的影响。检查了各种配置的影响,例如转角修改,锥度,后退,开口和扭曲。在相同高度和体积的条件下,还讨论了对各种构造的综合比较研究,包括多边形建筑模型和复合类型建筑模型,例如角切割和锥度,角切割和锥度和螺旋线等。通过增加螺旋建筑物的扭转角和增加多边形建筑物的边数可以改善空气动力学特性,但是180°的扭转角和5(五边形)的边数似乎已足够。大多数检查的构型都比直角型具有更好的空气动力学特性。特别地,复合型建筑物和螺旋多边形建筑物显示出显着的改善。接下来,将介绍并讨论形状对高层建筑和超高层建筑周围的行人风特征的影响。拐角改造建筑物显示出加速区域的显着减少。另一方面,在地面附近具有较宽的投影宽度的后退和渐缩模型对行人风向特性产生不利影响。

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