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A critical revision of the estimation of the latent heat flux from two-wavelength scintillometry

机译:从两波长闪烁法估算潜热通量的重要修订

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摘要

Simultaneous scintillometer measurements at multiple wavelengths (pairing visible or infrared with millimetre or radio waves) have the potential to provide estimates of path-averaged surface fluxes of sensible and latent heat. Traditionally, the equations to deduce fluxes from measurements of the refractive index structure parameter at the two wavelengths have been formulated in terms of absolute humidity. Here, it is shown that formulation in terms of specific humidity has several advantages. Specific humidity satisfies the requirement for a conserved variable in similarity theory and inherently accounts for density effects misapportioned through the use of absolute humidity. The validity and interpretation of both formulations are assessed and the analogy with open-path infrared gas analyser density corrections is discussed. Original derivations using absolute humidity to represent the influence of water vapour are shown to misrepresent the latent heat flux. The errors in the flux, which depend on the Bowen ratio (larger for drier conditions), may be of the order of 10%. The sensible heat flux is shown to remain unchanged. It is also verified that use of a single scintillometer at optical wavelengths is essentially unaffected by these new formulations. Where it may not be possible to reprocess two-wavelength results, a density correction to the latent heat flux is proposed for scintillometry, which can be applied retrospectively to reduce the error. Copyright © 2013 Royal Meteorological Society
机译:在多个波长(闪烁的可见光或红外光与毫米波或无线电波成对)下同时进行闪烁体测量有可能提供显热和潜热的路径平均表面通量的估计值。传统上,已经根据绝对湿度公式化了从两个波长下的折射率结构参数的测量值推导出通量的方程式。在此表明,就比湿度而言制剂具有多个优点。比湿度满足相似性理论中对保守变量的要求,并固有地解释了由于使用绝对湿度而导致的密度效应失衡。评估了两种配方的有效性和解释性,并讨论了与开放路径红外气体分析仪密度校正的类比。用绝对湿度代表水蒸气影响的原始推导显示出了不正确的潜热通量。取决于鲍文比(干燥条件下较大)的通量误差可能约为10%。显热通量保持不变。还证实了在这些波长下使用单个闪烁仪基本上不受这些新配方的影响。在可能无法重新处理两个波长的结果的地方,建议对闪烁法进行潜热通量的密度校正,该方法可追溯应用以减少误差。版权所有©2013皇家气象学会

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