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Interference effects on wind pressure distribution between two high-rise buildings

机译:干扰对两座高层建筑之间风压分布的影响

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摘要

Interference effects on wind pressure distributions between two buildings with various configurations in tandem, oblique, and parallel arrangements were studied in detail by applying the synchronous pressure measurement technique. Configurations included six kinds of breadth ratios (B-r = B-interfering/B-principal) and four kinds of height ratios (H-r = H-interfering/(Hprincipal)). The characteristics of wind pressure distribution were further investigated in the most unfavorable parallel arrangements. Results showed that the mean pressure was often beneficial because of shielding, whereas the peak pressure of the lateral facade adjacent to the interfering building was mainly amplified. With increased B-r and H-r, the corresponding shielding and amplification effects became more remarkable. When H-r <= 1 in tandem arrangement, the local mean and peak pressures on the lateral facade increased by 56% and 53%, respectively, because of the three-dimensional flow effects. The channeling effect in parallel arrangement should be given sufficient attention for the observed maximum interference factors (IFmax) of the mean and peak pressures reach up to 2.6 and 1.91, respectively. Finally, high precision regression equations were proposed to present the relationship between the maximum block interference factor (BIFmax) and building spacing in parallel arrangement. (C) 2015 Elsevier Ltd. All rights reserved.
机译:运用同步压力测量技术,详细研究了两座建筑物的串联,倾斜和平行布置对风压分布的干扰影响。配置包括六种宽度比(B-r = B干扰/ B原理)和四种高度比(H-r = H干扰/(Hprincipal))。在最不利的平行布置中进一步研究了风压分布的特性。结果表明,平均压力通常是有益的,因为它具有屏蔽作用,而与干扰建筑物相邻的侧面立面的峰值压力则主要被放大了。随着B-r和H-r的增加,相应的屏蔽和放大效果变得更加明显。当H-r <= 1串联时,由于三维流动效应,外侧立面上的局部平​​均压力和峰值压力分别增加了56%和53%。对于观察到的平均压力和峰值压力的最大干扰因子(IFmax),分别达到2.6和1.91时,应给予足够的重视。最后,提出了高精度回归方程,以表示最大块干扰因子(BIFmax)与平行布置的建筑物间距之间的关系。 (C)2015 Elsevier Ltd.保留所有权利。

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