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Effect of wind-induced internal pressure on local frame forces of low-rise buildings

机译:风致内压对低层建筑局部框架力的影响

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Given the significant role of internal pressures in the wind-induced loading of low-rise buildings, their correct estimation is critical for the accurate determination of the net (external plus internal) wind effects. This paper presents results of an investigation conducted to study the effect of wind-induced internal pressures on structural frame forces on low-rise buildings with single or multiple dominant openings. Models from the National Institute of Standards and Technology (NIST) aerodynamic database with internal pressure measurements were used. Large-scale experiments were also conducted in the Wall of Wind (WOW) facility at Florida International University (FIU) using a model with multiple openings. Calculations of frame forces were performed using the Database-Assisted Design (DAD) methodology. It was found that internal pressure significantly increases the forces induced by wind with the most unfavorable direction on the frames located close to the openings. However, its effect on the frames located away from the openings was smaller. Effects of internal pressure also varied between different cross-sectional locations of the same frame, depending upon the correlation between forces induced by external and internal pressures. For the highest net frame forces, the reduction factor applied to the response induced by internal pressures, that accounts for the imperfect correlation between the external and internal pressures, was found to be approximately 0.85. Comparison between frame forces calculated using experimentally measured internal pressures and their counterparts evaluated by using ASCE 7-10 provisions for internal pressures showed that the latter result in unconservative estimates of frame forces in both enclosed and partially enclosed buildings. An additional significant result is that the ASCE 7 classification of buildings with equally sized windward and leeward openings as enclosed buildings can lead to the underestimation of net frame responses. It is therefore proposed that this classification be changed to reflect the appropriate internal pressure effects. (C) 2017 Elsevier Ltd. All rights reserved.
机译:考虑到内部压力在低层建筑的风荷载中的重要作用,正确估算其值对于准确确定净(外部和内部)风影响至关重要。本文提出了一项调查结果,以研究风致内部压力对具有单个或多个主要开口的低层建筑的结构框架力的影响。使用来自美国国家标准技术研究院(NIST)空气动力学数据库的模型以及内部压力测量值。还在佛罗里达国际大学(FIU)的风墙(WOW)设施中使用具有多个开口的模型进行了大规模实验。框架力的计算是使用数据库辅助设计(DAD)方法进行的。已经发现,内部压力显着增加了在最靠近开口的框架上由风以最不利的方向引起的力。但是,它对远离开口的框架的影响较小。内部压力的影响在同一框架的不同横截面位置之间也有所不同,这取决于外部压力和内部压力引起的力之间的相关性。对于最高的净框架力,发现由内部压力引起的响应的减小因子约为0.85,这是外部和内部压力之间不完美相关的原因。使用实验测量的内部压力计算的框架力与使用ASCE 7-10规定的内部压力进行评估的框架力之间的比较表明,后者导致封闭式和部分封闭式建筑物的框架力的保守估计。另一个重要的结果是,ASCE 7对具有与封闭式建筑物相同大小的迎风和背风开口的建筑物的分类会导致对净框架响应的低估。因此,建议更改此分类以反映适当的内部压力影响。 (C)2017 Elsevier Ltd.保留所有权利。

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