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Detection of Flow Distortions and Systematic Errors in Sonic Anemometry Using the Planar Fit Method

机译:使用平面拟合方法检测声速风速仪中的流量畸变和系统误差

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We describe the coordinate transformations that can be used to convert the velocity components measured by a set of sonic anemometers with time-dependent tilt fluctuations into a single, time-independent coordinate system. By applying the planar fit method (PFM) to each anemometer dataset, it is possible, for planar flows, to locate the flow plane at each measurement point and compare its orientation with the topography. Installation on a ship is also considered. An application of this method to intercomparison data has led to the detection of an instrument error due to a misalignment between the assembly of the sonic transducers and the anemometer pedestal. If this error occurs, pedestal levelling does not guarantee that measurements are unbiased. A correction method is proposed and the results of two experiments are shown. Flow planarity at different levels and flow distortion caused by the mast are highlighted. The influence of the error on the evaluation of the Reynolds stresses using PFM or the double rotation method and the triple rotation method is discussed and the tilt corrected stresses calculated using the three methods compared.
机译:我们描述了可用于将由具有时间相关的倾斜波动的一组声速计测量的速度分量转换为单个,时间独立的坐标系的坐标转换。通过将平面拟合方法(PFM)应用于每个风速仪数据集,对于平面流,可以将流平面定位在每个测量点,并将其方向与地形进行比较。还考虑在船上安装。这种方法用于比对数据的应用已经导致了由于声换能器的组件和风速计基座之间的未对准而导致的仪器误差的检测。如果发生此错误,则基座调平不能保证测量结果无偏。提出了一种校正方法,并给出了两个实验的结果。突出显示了不同水平的流动平面度和由桅杆引起的流动变形。讨论了误差对使用PFM或双旋转方法和三旋转方法评估雷诺应力的影响,并比较了使用三种方法计算的倾斜校正应力。

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