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Determining the optimal soil temperature scheme for atmospheric modelling applications.

机译:为大气模拟应用确定最佳土壤温度方案。

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摘要

The treatment of the land surface can have a significant impact on the performance of atmospheric models, influencing the surface energy balance and near surface atmospheric variables. In numerical weather prediction models it is especially important to reproduce the observed diurnal cycle in screen-level temperature, which requires an accurate representation of the surface temperature, and therefore an accurate and computationally efficient representation of soil heat storage and transfer. We present a technique for analysing the accuracy of numerical soil temperature schemes, and a methodology for choosing the optimal layer thicknesses for schemes with a given number of layers. Furthermore, the analysis suggests that first generation land surface schemes, which typically used a layer-average surface temperature, may be more accurate in this respect than the latest land surface schemes, which tend to use a 'skin' surface temperature boundary condition.
机译:陆地表面的处理可能会对大气模型的性能产生重大影响,从而影响地表能量平衡和近地表大气变量。在数值天气预报模型中,在屏幕水平温度下再现观察到的昼夜循环尤为重要,这需要精确表示表面温度,因此需要精确和有效计算的土壤热量存储和传递。我们提出了一种分析数值土壤温度方案准确性的技术,以及一种为给定层数方案选择最佳层厚度的方法。此外,分析表明,通常使用层平均表面温度的第一代陆地表面方案在这方面可能比最新的陆地表面方案更精确,后者倾向于使用“皮肤”表面温度边界条件。

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