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Some Physical and Computational Issues in Land Surface Data Assimilation of Satellite Skin Temperatures

机译:卫星皮肤温度同化地面数据的一些物理和计算问题

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Skin temperatures that reflect the radiating temperature of a surface observed by infrared radiometers are one of the most widely available products from polar orbiting and geostationary satellites and the most commonly used satellite data in land surface assimilation. Past work has indicated that a simple land surface scheme with a few key parameters constrained by observations such as skin temperatures may be preferable to complex land use schemes with many unknown parameters. However, a true radiating skin temperature is sometimes not a prognostic variable in weather forecast models. Additionally, recent research has shown that skin temperatures cannot be directly used in surface similarity forms for inferring fluxes. This paper examines issues encountered in using satellite derived skin temperatures to improve surface flux specifications in weather forecast and air quality models. Attention is given to iterations necessary when attempting to nudge the surface energy budget equation to a desired state. Finally, the issue of mathematical operator splitting is examined in which the surface energy budget calculations are split with the atmospheric vertical diffusion calculations. However, the high level of connectivity between the surface and first atmospheric level means that the operator splitting leads to high frequency oscillations. These oscillations may hinder the assimilation of skin temperature derived moisture fluxes.
机译:反映红外辐射计观测到的表面辐射温度的皮肤温度是极地轨道和对地静止卫星上使用最广泛的产品之一,也是陆地表面同化中最常用的卫星数据。过去的工作表明,具有一些关键参数(受皮肤温度等观测值约束)的简单土地表面方案可能比具有许多未知参数的复杂土地利用方案更为可取。但是,真实的辐射皮肤温度有时不是天气预报模型中的预后变量。此外,最近的研究表明,皮肤温度不能直接以表面相似形式用于推断通量。本文研究了在天气预报和空气质量模型中使用卫星导出的皮肤温度来改善表面通量规范时遇到的问题。尝试将表面能收支方程微调到所需状态时,必须进行必要的迭代。最后,研究了数学算子拆分的问题,其中将表面能预算计算与大气垂直扩散计算进行了拆分。然而,地表与第一大气层之间的高度连通性意味着操作员的分裂会导致高频振荡。这些振荡可能会阻碍皮肤温度衍生的水分通量的吸收。

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