首页> 外文期刊>Journal of structural engineering >Verification of ASCE 7-16 Pressure Coefficients and Database-Assisted Design of Purlins and Girts Accounting for Wind Directionality
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Verification of ASCE 7-16 Pressure Coefficients and Database-Assisted Design of Purlins and Girts Accounting for Wind Directionality

机译:ASCE 7-16压力系数的验证以及Pur条和风洞考虑风向的数据库辅助设计

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For the database-assisted design (DAD) of low-rise building purlins and girts, a method is proposed that explicitly accounts for wind directionality by using directional wind tunnel measurements, directional wind speed data, and publicly available software. The method consists of four steps: (1) assignment of wind loads induced by a unit directional wind speed on purlins and girts from pressure taps and their tributary areas; (2) development of bending moment and shear force influence coefficients for line loads on purlins and girts; (3) multiplication of loads from step 1 by influence coefficients from step 2 and estimation of the peak bending moments and shear forces thus obtained; and (4) use of nonparametric statistics to calculate peak moments and shear forces with a specified mean recurrence interval for various building orientations and accounting for wind directionality. For one example of wind effects on purlins, (1) comparison of the Envelope Method in ASCE 7-16 (taken as 100%) with the most demanding aerodynamic case from wind tunnel tests shows differences ranging between +10% and -25%; and (2) comparison of the ASCE 7-16 method accounting for the wind directionality factor Kd with directional wind loads using nonparametric statistical methods shows differences ranging between +21% and -25%. The unconservatism (+) of ASCE 7-16 is thus worse after Kd is applied. The proposed method is based on the rigorous DAD approach, accounts explicitly for the actual directional wind loading, entails no onerous computational requirements, and typically results in more economical designs while assuring risk-consistent safety. (C) 2020 American Society of Civil Engineers.
机译:对于低层建筑物pur条的数据库辅助设计(DAD),提出了一种方法,该方法通过使用定向风洞测量,定向风速数据和公开可用的软件来明确考虑风向性。该方法包括四个步骤:(1)将单位有向风速引起的风荷载分配给压力水龙头及其支流区域的pur条和环架。 (2)pur条和吊臂上线荷载的弯矩和剪力影响系数的发展; (3)将来自步骤1的载荷乘以来自步骤2的影响系数,并估算由此获得的峰值弯曲力矩和剪切力; (4)使用非参数统计数据来计算峰值弯矩和剪切力,并针对不同的建筑物方向指定指定的平均重复间隔,并考虑风向。对于风对pur条的影响的一个例子,(1)比较ASCE 7-16中的包络法(取值为100%)和风洞试验中对空气动力学要求最高的情况,发现差异在+ 10%到-25%之间; (2)使用非参数统计方法对考虑风向因子Kd和定向风荷载的ASCE 7-16方法进行比较,结果表明差异在+ 21%到-25%之间。因此,施加Kd后,ASCE 7-16的非保守性(+)会更严重。所提出的方法基于严格的DAD方法,明确考虑了实际的定向风荷载,没有繁琐的计算要求,并且通常可以在确保风险一致的安全性的同时,实现更经济的设计。 (C)2020年美国土木工程师学会。

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