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Wind-induced torsional loads on low-rise buildings

机译:低层建筑上的风致扭转载荷

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This paper presents a set of wind tunnel tests that are carried out to examine wind-induced torsional loads on low-rise buildings. Three low-rise buildings were tested in the Building Aerodynamics Laboratory located in the Engineering Complex at Concordia University, Montreal, Canada. Two low-rise buildings (scale 1:400) with a flat and 4:12 gabled roof slope (having the same dimensions) were examined in open and urban terrain exposures for a half wind direction cycle (every 15°). In addition, a model (scale 1:200) of an actual low-rise building in Fredericton, New Brunswick, Canada and its surroundings has been tested in three wind tunnel tests. Two of latter set of tests were conducted for the building model with a complete simulation of its surroundings in open and urban terrain exposures for a complete cycle by 10° increments. The building was also tested in an open terrain exposure without any surroundings. Peak, mean, and minimum base torsion and shear force for each azimuth were evaluated for all tests. In general, the measured results indicated that the maximum torsional moment on low-rise buildings could be simulated by applying 75% of the full wind loads (maximum shear) with additional 15% equivalent eccentricity of the facing building dimension.
机译:本文介绍了一组风洞测试,旨在检查低层建筑上的风致扭转载荷。在加拿大蒙特利尔康科迪亚大学工程大楼的建筑空气动力学实验室对三座低层建筑进行了测试。在露天和城市地形暴露下,以风向周期的一半(每15°)检查了两座低屋顶建筑物(比例为1:400),它们的屋顶坡度为4:12(具有相同的尺寸)。此外,还通过三个风洞测试对加拿大新不伦瑞克省弗雷德里克顿及其周围地区的一栋实际低层建筑的模型(比例为1:200)进行了测试。后两个测试是针对建筑模型进行的,其中以开放度和城市地形暴露为条件,以10°为增量的完整周期对周围环境进行了完整的模拟。该建筑还在没有任何周围环境的开放地形中进行了测试。在所有测试中,均评估了每个方位角的峰值,平均和最小基础扭力和剪切力。通常,测量结果表明,可以通过施加75%的全风载荷(最大剪切力)以及面向建筑尺寸的额外15%等效偏心距来模拟低层建筑上的最大扭转力矩。

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