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Correction of a Non-orthogonal, Three-Component Sonic Anemometer for Flow Distortion by Transducer Shadowing

机译:换能器遮蔽对流量畸变的非正交三分量声速风速计的校正

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We propose that flow distortion within a non-orthogonal CSAT3 sonic anemometer is primarily due to transducer shadowing, which is caused by wakes in the lee of the acoustic transducers impinging on their measurement paths. The dependence of transducer shadowing on sonic path geometry, wind direction and atmospheric stability is investigated with simulations that use surface-layer data from the Horizontal Array Turbulence Study (HATS) field program and canopy roughness-sublayer data from the CHATS (Canopy HATS) field program. We demonstrate the efficacy of correcting the CSAT3 for transducer shadowing with measurements of its flow distortion in the NCAR wind tunnel, combined with 6 months of data collected in the atmospheric surface layer with adjacent CSAT3 and orthogonal ATI-K sonic anemometers at the NCAR Marshall field site. CSAT3 and ATI-K measurements of the variance of vertical velocity and the vertical flux of sonic temperature agree within 1 % after correction of both sonics for transducer shadowing. Both the simulations of transducer shadowing and the comparison of CSAT3 and ATI-K field data suggest a simple, approximate correction of CSAT3 surface-layer scalar fluxes with an increase on the order of 4-5 %, independent of wind direction and atmospheric stability. We also find that (where is the friction velocity) and (the correlation coefficient) calculated with corrected CSAT3 data are insensitive to wind direction and agree closely with known values of these dimensionless variables for neutral stratification, which is evidence for the efficacy of the correction of the horizontal wind components for transducer shadowing as well.
机译:我们提出,非正交CSAT3声波风速计内的流动畸变主要是由于换能器阴影引起的,这是由于声换能器的风罩撞击测量路径而引起的。通过使用水平阵列湍流研究(HATS)场程序的表层数据和CHATS(Canopy HATS)场的冠层粗糙度子层数据的模拟,研究了换能器阴影对声波路径几何形状,风向和大气稳定性的依赖性。程序。我们通过测量其在NCAR风洞中的流动畸变并结合在NCAR Marshall场与相邻CSAT3和正交ATI-K声波风速计在大气表层收集的6个月数据,证明了校正CSAT3换能器阴影的功效现场。在校正了两个传感器的声波阴影后,垂直速度和声波温度的垂直通量的CSAT3和ATI-K测量值在1%之内。换能器阴影的模拟以及CSAT3和ATI-K现场数据的比较都表明,对CSAT3表面层标量通量进行了简单,近似的校正,其增加幅度为4-5%,与风向和大气稳定性无关。我们还发现,使用校正后的CSAT3数据计算的(摩擦速度)和(相关系数)对风向不敏感,并且与这些无量纲变量的中性分层的已知值非常一致,这是校正效果的证据。以及用于传感器阴影的水平风分量。

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