Effect of Height Variation of Closely Located Interfering Buildings on Wind Loads on Tall Buildings

B. S. Chauhan, A. Ahuja
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引用次数: 2

Abstract

: This research paper investigates the modification of wind loads on a tall building (principal building) having rectangular cross-sectional shape due to the variation in height of two closely located interfering buildings having a similar plan shape. The models of the three buildings (principal and interfering buildings) are placed in a U shape plan for the study. The heights of interfering building models are varied in two different manners: (1). Height of both the interfering building models is reduced simultaneously (2). Height of only one of the interfering building model is reduced. Wind tunnel experiments are undertaken using five component force balance load cell and the results are reported in the form of X-Y plots. The interference effect causes increase in the torsional moment as height difference of the two interfering buildings increase, also shielding effect causes reduction in the along wind force as height of the interfering buildings increases. Value of torsion on the principal building is observed to be as high as 33 times of that in the isolated case. However, a reduction is high as 69 percent is observed in the force in along wind direction due to shielding.
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相邻干扰建筑高度变化对高层建筑风荷载的影响
本文研究了两个平面形状相近的相邻干扰建筑的高度变化对矩形截面高层建筑(主建筑)风荷载的影响。三个建筑(主建筑和干扰建筑)的模型被放置在一个U形平面上进行研究。干扰建筑模型的高度变化有两种不同的方式:(1)同时降低两个干扰建筑模型的高度(2)只降低其中一个干扰建筑模型的高度。采用五分量力平衡传感器进行了风洞试验,并以X-Y图的形式报告了试验结果。干扰效应导致扭矩随两干扰建筑高度差的增大而增大,屏蔽效应导致沿风力随干扰建筑高度的增大而减小。主建筑物的扭转值高达孤立情况下的33倍。然而,由于屏蔽,沿风向的力降低了69%。
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