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First passage time as an analysis tool in experimental wind engineering

机译:实验风工程中的第一段时间作为分析工具

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摘要

The first passage time is the time required for a system to evolve from an initial configuration to a certain target state. This concept is of high interest for the study of transient regimes which are widely represented in wind engineering. Although the concept has been widely studied from theoretical and numerical standpoints, there are very few practical or experimental applications where the results are seen from this angle. This work is a first attempt at bringing first passage times of stochastic systems into wind engineering by suggesting the use of a first passage time map as a standard analysis tool in experimental wind engineering. The wind tunnel data related to the spinning dynamics of a rotating square cylinder in turbulent flow is processed under the frame suggested by a theoretical model for a simple linear oscillator. A specific algorithm is developed for the determination of the average first passage time as a function of initial and target conditions based on the experimental measurements. It is shown that the simple theoretical model is able to capture the different regimes of the experimental setup, so that an equivalent linear Mathieu oscillator, presenting the same evolution of energy, from a first passage time point of view, was identified. This experimental investigation provides a first link between an analytical but simplified result and a more complex reality.
机译:第一通过时间是系统从初始配置到某个目标状态所需的时间。这一概念对研究在风工程中广泛代表的瞬态制度的研究具有很高的兴趣。虽然该概念已被广泛研究理论和数值观点,但是很少有实际或实验应用,从该角度看出结果。这项工作是首次尝试通过建议使用第一段通过时间图作为实验风工程中的标准分析工具来使随机系统的第一段通过时代进行进入风工程。与湍流流动的旋转方圆筒的纺丝动力学相关的风洞数据在由简单的线性振荡器的理论模型建议的框架下处理。基于实验测量,开发了一种用于确定作为初始和目标条件的函数的平均第一通道时间的特定算法。结果表明,简单的理论模型能够捕获实验装置的不同制度,使得鉴定了从第一通道时间观点呈现相同的能量演变的等效线性Mathieu振荡器。该实验研究提供了分析但简化的结果与更复杂的现实之间的第一个链接。

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