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Tall Building Response Parameters: Sensitivity Study Based on Orthogonal Factorial Experiment Design Technique

机译:高层建筑响应参数:基于正交因子实验设计技术的灵敏度研究

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摘要

This work has two objectives. The first objective is to introduce structural engineers to the experiment design technique, whose future applications may include, for example, the total response of tall buildings, the strength reserve of statically indeterminate structures with nonlinear behavior, for which the duration of each run is large, and the aerodynamic response of a structure under a flow with a variety of simulated flow parameters. The second objective is to show, by using the experiment design technique, that wind load factors for tall buildings depend significantly upon uncertainties with respect to the natural frequencies of vibration and the damping ratios. Because this dependence is disregarded in the ASCE 7-05 Standard, wind load factors specified therein can lead to safety levels that are significantly lower for flexible buildings than for rigid buildings. An unexpected result of the study is that estimates of wind effects based on peak gust speeds entail nonnegligible errors. Consideration should therefore be given to replacing peak gust speeds by sustained wind speeds.
机译:这项工作有两个目标。第一个目标是向结构工程师介绍实验设计技术,其未来应用可能包括,例如高层建筑的总响应,具有非线性行为的超静定结构的强度储备,因此每次运行的持续时间都较长,以及具有各种模拟流动参数的流动下结构的气动响应。第二个目标是通过使用实验设计技术来表明,高层建筑的风荷载因子在很大程度上取决于振动固有频率和阻尼比的不确定性。由于在ASCE 7-05标准中忽略了这种依赖性,因此,其中指定的风荷载系数会导致柔性建筑的安全等级明显低于刚性建筑的安全等级。该研究出乎意料的结果是,基于阵风峰值速度的风效应估计会带来不可忽略的误差。因此,应考虑用持续风速代替峰值阵风速度。

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