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Estimation of Extreme Wind Load on Structures and Claddings

机译:估计结构与包层的极端风重

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摘要

A modified Cook-Mayne method is proposed for extreme wind load estimation. A technique that can simulate true r-order extreme values of a correlated random process is adopted in this method to estimate the annual multiorder maximum 10-min mean wind speeds. These estimated extreme wind speeds are then used for extreme wind load estimation on structures. Results show that the autocorrelation of the macrometeorological fluctuating wind can have significant effects on the estimated extreme wind load. A big difference is found when comparing the design fractile of the extreme wind load coefficients obtained from the modified method by considering the autocorrelation of wind speeds and the existing full-order method in which only independent wind speeds are adopted. The order of annual maximum wind speeds required for wind load estimation is also examined. The number of orders that is needed for 50-year return period wind load design varies greatly-from 2 to 50- and depends on the application conditions. The design fractile of extreme wind load coefficient distribution for a 50-year return period can be increased to 93% from the 79% recommended in the existing method. (C) 2017 American Society of Civil Engineers.
机译:提出了一种改进的Cook-Mayne方法用于极端风荷载估算。该方法采用了一种能够模拟相关随机过程真实r阶极值的技术来估计年多阶最大10min平均风速。然后将这些估计的极端风速用于结构的极端风荷载估计。结果表明,宏观气象脉动风的自相关性对估计的极端风荷载有显著影响。将考虑风速自相关的修正方法所得的极限风荷载系数的设计分位数与仅采用独立风速的现有全阶方法所得的设计分位数进行比较时,发现存在很大差异。还研究了风荷载估算所需的年最大风速的顺序。50年重现期风荷载设计所需的订单数量在2到50之间变化很大,这取决于应用条件。50年一遇极端风荷载系数分布的设计分位数可以从现有方法中建议的79%增加到93%。(C) 2017年美国土木工程师学会。

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