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Velocity Spectra and Coherence Estimates in the Marine Atmospheric Boundary Layer

机译:海洋大气边界层中的速度光谱和相干估计

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摘要

Two years of continuous sonic anemometer measurements conducted in 2007 and 2008 at the FINO1 platform are used to investigate the characteristics of the single- and two-point velocity spectra in relation to the atmospheric stability in the marine atmospheric boundary layer. The goals are to reveal the limits of current turbulence models for the estimation of wind loads on offshore structures, and to propose a refined description of turbulence at altitudes where Monin-Obukhov similarity theory may be limited. Using local similarity theory, a composite spectrum model, combining a pointed and a blunt model, is proposed to describe the turbulence spectrum for unstable, neutral and stable conditions. Such a model captures the , the Davenport coherence model captures the vertical coherence of the horizontal velocity components well. A two-parameter exponential decay function is found more appropriate for modelling the coherence of the vertical velocity component. Under increasingly stable conditions, the size of the eddies in the vertical coordinate reduces, such that smaller separation distances than that covered in the present dataset may be required to study the coherence with sufficient accuracy.
机译:在Fino1平台上2007年和2008年进行的两年连续声速计测量,用于研究与海洋大气边界层的大气稳定性有关的单点和两点速度光谱的特性。目标是揭示用于在海上结构上估计风荷载的电流湍流模型的限制,并提出了在莫纳 - 奥布洛夫相似性理论的高度下的湍流的精制描述。使用局部相似理论,提出了一种复合频谱模型,结合指向的模型和钝模型来描述用于不稳定,中性和稳定条件的湍流谱。这样的模型捕获,达维口相干模型井的垂直相干井。找到一个双参数指数衰减功能,更适合于建模垂直速度分量的相干性。在越来越稳定的条件下,垂直坐标中的漩涡的尺寸减小,使得可能需要比在当前数据集中覆盖的较小的分离距离来研究充分精度。

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