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Observing Mesospheric Turbulence With Specular Meteor Radars: A Novel Method for Estimating Second‐Order Statistics of Wind Velocity

机译:用镜面雷达观察Mesompheric湍流:一种估算风速二阶统计的新方法

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There are few observational techniques for measuring the distribution of kinetic energy within the mesosphere with a wide range of spatial and temporal scales. This study describes a method for estimating the three‐dimensional mesospheric wind field correlation function from specular meteor trail echoes. Each radar echo provides a measurement of a one‐dimensional projection of the wind velocity vector at a randomly sampled point in space and time. The method relies on using pairs of such measurements to estimate the correlation function of the wind with different spatial and temporal lags. The method is demonstrated using a multistatic meteor radar data set that includes ≈10 5 meteor echoes observed during a 24‐hr time period. The new method is found to be in good agreement with the well‐established technique for estimating horizontal mean winds. High‐resolution correlation functions with temporal, horizontal, and vertical lags are also estimated from the data. The temporal correlation function is used to retrieve the kinetic energy spectrum, which includes the semidiurnal mode and a 3‐hr period wave. The horizontal and vertical correlation functions of the wind are then used to derive second‐order structure functions, which are found to be compatible with the Kolmogorov prediction for spectral distribution of kinetic energy in the turbulent inertial range. The presented method can be used to extend the capabilities of specular meteor radars. It is relatively flexible and has a multitude of applications beyond what has been shown in this study.
机译:有很少的观察技术,用于测量叶片内动能的分布,包括各种空间和时间尺度。该研究描述了一种用于估计来自镜面流动回波的三维Mesompheric风场相关函数的方法。每个雷达回波都提供了在空间和时间的随机采样点处的风速载体的一维投影的测量。该方法依赖于使用这种测量对来估计具有不同空间和时间滞后的风的相关函数。使用包括在24小时时间段期间观察到的多晶的流星雷达数据集来说明该方法。发现新方法与估计水平平均风的良好技术吻合良好。还从数据估算了具有时间,水平和垂直滞后的高分辨率相关函数。时间相关函数用于检索动能谱,其包括半峰模式和3小时周期波。然后使用风的水平和垂直相关函数来导出二阶结构功能,该功能与湍流惯性范围中的动能的频谱分布的Kolmogorov预测相兼容。所提出的方法可用于延长镜面雷达的能力。它相对灵活,并且具有超出本研究中所示的众多应用程序。

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