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A generic gust definition and detection method based on wavelet-analysis

机译:基于小波分析的通用阵风定义与检测方法

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Wind gusts can have destructive effects on many structures and objects deemed valuable to humans. The aviation industry, for example, views gusts as a major hazard. Their destructive effect is proportional to the momentum that a specific gust imposes onto an object. The actual definition of a gust has a strong influence on how its impact can be quantified. Existing gust definitions, however, are largely based on fixed parameters describing shape requirements and thresholds and are often developed only for specific use cases. These gust definitions do not provide a direct link to the physical impact a particular gust has on a structure or object. The overall goal of this study is to provide such a direct link. The application of a wavelet-analysis to a turbulence-resolving wind velocity signal allows for the localization of signal amplitudes in the period as well as in the time domain. In this paper, we use wavelet-analysis in order to develop a straight-forward method of deriving information about gusts from a wind velocity signal. In order to define what a particular gust might be, we suggest the specification of a characteristic period and amplitude in the time-domain. We define a generic gust as a section of a wind velocity signal, where the wavelet-analysis detects that characteristic amplitude to be matched or exceeded within that characteristic period. The characteristic amplitudes and periods are generic and span a two-dimensional space of generic gust definitions. The method can be applied to turbulence resolving simulation data as well as high-resolution wind velocity measurement data. It can detect gusts of any shape, it is unbiased regarding any specific use case and invariant to changes of the mean wind. We provide a detailed description of the method, its capabilities and demonstrate its application to high resolution wind velocity measurement data.
机译:风阵容可能对许多结构和对人类有价值的物体具有破坏性影响。例如,航空业认为阵风作为一个重大危害。它们的破坏性效果与特定阵风施加到物体上的动量成正比。阵风的实际定义对如何量化其影响有很大的影响。然而,现有的阵风定义在很大程度上基于描述形状要求和阈值的固定参数,并且通常仅用于特定用例。这些阵风定义不能提供特定阵风在结构或物体上的物理影响的直接链接。本研究的总体目标是提供这种直接链接。将小波分析应用于湍流 - 解析风速信号允许在时段和时域中的信号幅度的定位。在本文中,我们使用小波分析,以便从风速信号产生关于阵风的信息的直接方法。为了定义特定阵风可能的内容,我们建议在时域中的特征周期和幅度的规范。我们将通用阵风定义为风速信号的一部分,其中小波分析检测到该特征周期内的特征幅度匹配或超过。特征幅度和周期是通用的并且跨越通用阵风定义的二维空间。该方法可以应用于湍流解析模拟数据以及高分辨率风速测量数据。它可以检测任何形状的阵风,关于任何特定用例和不变地对平均风的变化是不偏见的。我们提供了对方法的详细描述,其能力,并证明其应用于高分辨率风速测量数据。

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