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首页> 外文期刊>Agronomy Journal >An advanced method for deriving latent energy flux from a scanning Raman lidar.
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An advanced method for deriving latent energy flux from a scanning Raman lidar.

机译:一种从扫描拉曼激光雷达获得潜能通量的先进方法。

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摘要

One of the fundamental issues with lidar-derived evapotranspiration estimates is its reliance on tower-based measurements of Monin-Obukhov similarity variables, specifically the Obukhov length (L) and the friction velocity (u*). Our study indicates that L can be derived in the atmospheric surface layer directly from lidar range-height scans by estimating the integral length scale (ILS). Data from both three-dimensional sonic anemometers mounted on towers and lidar data collected during two subsequent field experiments were analyzed using autocorrelation analysis to estimate the ILS. The ILS values were then transformed into L values using a power-law similarity model and were compared to coincident tower-based observations. The comparisons between tower-based eddy covariance sensors and lidar data show that the lidar-derived L values are within the expected uncertainty and variability of standard point sensor measured observations. An additional model for estimating the friction velocity from the Obukhov length was also derived, and both L and u* were used to calculate the latent energy flux from lidar without external measurements. The evaporative fluxes from the standard method and the new advanced method were compared with eddy covariance fluxes, and it was found that the advanced method is superior..
机译:激光雷达的蒸散量估算的基本问题之一是其依赖基于塔的Monin-Obukhov相似性变量的测量,特别是Obukhov长度(L)和摩擦速度(u *)。我们的研究表明,可以通过估计整体长度标度(ILS)直接从激光雷达的范围高度扫描中得出L在大气表层。使用自相关分析来分析ILS,分析了安装在塔上的三维声波风速计的数据以及在随后的两次野外实验中收集的激光雷达数据。然后使用幂律相似性模型将ILS值转换为L值,并将其与基于塔的重合观测值进行比较。基于塔的涡流协方差传感器与激光雷达数据之间的比较表明,激光雷达衍生的L值在标准点传感器测量观测值的预期不确定性和可变性之内。还推导出了一个用于根据Obukhov长度估算摩擦速度的附加模型,并且使用L和u *来计算来自激光雷达的潜能通量,而无需进行外部测量。将标准方法和新改进方法的蒸发通量与涡动协方差通量进行了比较,发现改进方法是优越的。

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