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Effects of precipitation on sonic anemometer measurements of turbulent fluxes in the atmospheric surface layer

机译:降水对声波风速仪测量大气表层湍流通量的影响

摘要

Effects caused by precipitation on the measurements of three-dimensional sonic anemometer are analyzed based on a field observational experiment conducted in Maoming, Guangdong Province, China. Obvious fluctuations induced by precipitation are observed for the outputs of sonic anemometer-derived temperature and wind velocity components. A technique of turbulence spectra and cospectra normalized in the framework of similarity theory is utilized to validate the measured variables and calculated fluxes. It is found that the sensitivity of sonic anemometer-derived temperature to precipitation is significant, compared with that of the wind velocity components. The spectra of wind velocity and cospectra of momentum flux resemble the standard universal shape with the slopes of the spectra and cospectra at the inertial subrange, following the -2/3 and -4/3 power law, respectively, even under the condition of heavy rain. Contaminated by precipitation, however, the spectra of temperature and cospectra of sensible heat flux do not exhibit a universal shape and have obvious frequency loss at the inertial subrange. From the physical structure and working principle of sonic anemometer, a possible explanation is proposed to describe this difference, which is found to be related to the variations of precipitation particles. Corrections for errors of sonic anemometer-derived temperature under precipitation is needed, which is still under exploration.
机译:基于在广东省茂名市进行的实地观察实验,分析了降水对三维声速计测量的影响。对于由风速计得出的温度和风速分量的输出,观察到了降水引起的明显波动。利用在相似理论框架内归一化的湍流光谱和共谱技术来验证测量变量和计算通量。发现与风速分量相比,声速计的温度对降水的敏感性显着。即使在重的条件下,风速和动量通量谱也与惯性子范围的谱和共谱斜率相似,符合标准的通用形状,分别遵循-2/3和-4/3幂定律。雨。然而,受降水污染,显热通量的温度和共谱的光谱没有表现出普遍的形状,并且在惯性子范围内具有明显的频率损失。从声速计的物理结构和工作原理,提出了一种可能的解释来描述这种差异,该差异与降水颗粒的变化有关。需要校正在降水条件下由声速计得出的温度的误差,该误差仍在探索中。

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