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Experimental study of wind-induced pressures on tall buildings of different shapes

机译:不同形状高层建筑风力诱导压力的实验研究

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The modern tall buildings are often constructed as an unconventional plan and as twin buildings. Wind load on the tall building is significantly influenced by the presence of another building in the near vicinity. So, it is imperative to study wind forces on an unconventional plan shaped tall building. Mean wind pressure coefficients of a square and 'H' plan shape tall buildings are investigated using wind tunnel experiments. The experiments were carried out for various wind directions from 00 to 900 at an interval of 300 and various locations of the identical interfering building. The experimental results are presented at the windward face from the viewpoint of effects on cladding design. To quantify the interference effects, interference factors (I.F) are calculated. Mean pressure coefficients of both models are compared for isolated and interference conditions. The results show that pressure reduces with an increase in wind angle till 600 wind direction. The interfering building at full blockage interference condition generates more suction than the other two conditions. The interference factor for both models is less than unity. H-plan building model is subjected to a higher pressure than the square model.
机译:现代高层建筑往往作为一个非传统计划和双层建筑构建。高层建筑的风力负荷受到近附近的另一个建筑物的影响受到显着影响。因此,必须在一个非常规计划形状的高层建筑上研究风力。使用风洞实验研究了正方形和'H'平面形状高层建筑的平均风压系数。在300的间隔和相同干扰建筑物的各个位置的间隔下,对各种风向进行实验。从熔覆设计的影响的观点来看,实验结果在迎风面上呈现。为了量化干扰效应,计算干扰因子(I.F)。将两种模型的平均压力系数进行比较,用于隔离和干扰条件。结果表明,压力随着风角的增加而减小,直到600风向。完全堵塞干扰条件下的干扰建筑物比其他两个条件更有吸力。两种模型的干扰因素小于Unity。 H-Plan Building模型的压力比方形模型更高。

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