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首页> 外文期刊>Journal of hydrometeorology >Estimation of Turbulent Heat Fluxes via Assimilation of Air Temperature and Specific Humidity into an Atmospheric Boundary Layer Model
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Estimation of Turbulent Heat Fluxes via Assimilation of Air Temperature and Specific Humidity into an Atmospheric Boundary Layer Model

机译:空气温度和特定湿度将湍流热通量估计在大气边界层模型中的探测

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摘要

A number of studies have used time series of air temperature and specific humidity observations to estimate turbulent heat fluxes. These studies require the specification of surface roughness lengths for heat and momentum (that are directly related to the neutral bulk heat transfer coefficient C-HN) and/or ground heat flux, which are often unavailable. In this study, sequences of air temperature and specific humidity are assimilated into an atmospheric boundary layer model within a variational data assimilation (VDA) framework to estimate C-HN, evaporative fraction (EF), turbulent heat fluxes, and atmospheric boundary layer (ABL) height, potential temperature, and humidity. The developed VDA approach needs neither the surface roughness parameterization (as it is optimized by the VDA approach) nor ground heat flux measurements. The VDA approach is tested over the First International Satellite Land Surface Climatology Project Field Experiment (FIFE) site in the summers of 1987 and 1988. The results indicate that the estimated sensible and latent heat fluxes agree fairly well with the corresponding measurements. For FIFE 1987 (1988), the daily sensible and latent heat fluxes estimates have a root-mean-square error of 25.72 W m(-2) (27.77 W m(-2)) and 53.63 W m(-2) (48.22 W m(-2)), respectively. In addition, the ABL height, specific humidity, and potential temperature estimates from the VDA system are in good agreement with those inferred from the radiosondes both in terms of magnitude and diurnal trend.
机译:许多研究使用时间序列的空气温度和特定湿度观察来估计湍流热量。这些研究需要用于热和动量的表面粗糙度长度(与中性散装传热系数C-HN直接相关的表面粗糙度长度(直接相关)和/或接地热通量,其通常是不可用的。在该研究中,空气温度和特定湿度的序列被同化在变分数据同化(VDA)框架内的大气边界层模型中,以估计C-HN,蒸发级分(EF),湍流热量和大气边界层(ABL )高度,潜在的温度和湿度。开发的VDA方法既不需要表面粗糙度参数化(因为它由VDA方法优化)也不是地热通量测量。 VDA方法在1987年和1988年的夏季的夏季进行了第一个国际卫星土地表面气息学项目实验领域对于FIFE 1987(1988),日常合理和潜热通量估计具有25.72Wm(-2)(27.77Wm(-2))和53.63WM(-2)(48.22)的根平均方误差分别为W m(-2))。另外,VDA系统的ABL高度,特定湿度和潜在的温度估计与在幅度和昼夜趋势中从无线电设计中推断的那些吻合良好。

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