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An Analysis of Sonic Anemometer Observations In Low Wind Speed Conditions

机译:低风速条件下声速风速计观测结果分析

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When the wind speed decreases below a certain value (1–2 m s-1) meandering (low frequency horizontal wind oscillations) starts to prevail. In these conditions it becomes difficult to define a precise mean wind direction and to estimate the airborne dispersion. To study the wind and turbulence characteristics during meandering, two sonic anemometer datasets, containing hourly wind observations, were analysed: the first one, lasting 1 year, was recorded in complex terrain (Graz, Austria) and the second one, lasting about 1month, was recorded in a rather flat area (Tisby, Sweden). It was found that meandering seems to exist under all meteorological conditions regardless of the stability or wind speed and it was confirmed that meandering sets a lower limit for the horizontal wind component variances. Further, it was found that the autocorrelation functions of the horizontal wind components, computed for the low wind cases, show an oscillating behaviour with the presence of large negative lobes. Two different relationships from the literature, and relevant to these oscillatory aspects, were fitted to the data. They contain two parameters: one associated and relevant to the classical integral time scale and the second with meandering occurrence. Based on these relationships, expressions for the mean square displacement of particles σy 2(t) were also derived.
机译:当风速降低到某个值(1-2 m s-1 )以下时,蜿蜒(低频水平风振荡)开始盛行。在这些条件下,很难定义精确的平均风向并估算空气传播。为了研究蜿蜒过程中的风和湍流特征,分析了两个包含每小时风速观测值的声速风速仪数据集:第一个持续1年,记录在复杂的地形(奥地利格拉茨),第二个持续约1个月,被记录在一个相当平坦的区域(瑞典的蒂斯比)。结果发现,在所有气象条件下,蜿蜒似乎都存在,而与稳定性或风速无关,并且可以确定,蜿蜒为水平风分量变化设定了下限。此外,还发现针对低风情况计算的水平风分量的自相关函数在存在较大的负波瓣的情况下显示出振荡行为。来自文献的两个不同的关系,与这些振荡方面有关,被拟合到数据。它们包含两个参数:一个与经典积分时间标度相关并相关,另一个与曲折出现相关。基于这些关系,还推导了粒子σy 2 (t)的均方位移表达式。

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