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A more accurate scheme for calculating Earth's skin temperature

机译:a more accurate scheme for calculating Earth's skin temperature

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摘要

The theoretical framework of the vertical discretization of a ground column for calculating Earth's skin temperature is presented. The suggested discretization is derived from the evenly heat-content discretization with the optimal effective thickness for layer-temperature simulation. For the same level number, the suggested discretization is more accurate in skin temperature as well as surface ground heat flux simulations than those used in some state-of-the-art models. A proposed scheme ("op(3,2,0)") can reduce the normalized root-mean-square error (or RMSE/STD ratio) of the calculated surface ground heat flux of a cropland site significantly to 2% (or 0.9 W m(-2)), from 11% (or 5 W m(-2)) by a 5-layer scheme used in ECMWF, from 19% (or 8 W m(-2)) by a 5-layer scheme used in ECHAM, and from 74% (or 32 W m(-2)) by a single-layer scheme used in the UCLA GCM. Better accuracy can be achieved by including more layers to the vertical discretization. Similar improvements are expected for other locations with different land types since the numerical error is inherited into the models for all the land types. The proposed scheme can be easily implemented into state-of-the-art climate models for the temperature simulation of snow, ice and soil.
机译:提出了用于计算地球皮肤温度的地柱垂直离散化的理论框架。建议的离散化是从均匀的热含量离散化中得出的,该平均化具有针对层温度模拟的最佳有效厚度。对于相同级别的数字,建议的离散化在皮肤温度以及地面地面热通量模拟中比在某些最新模型中使用的离散度更为准确。提出的方案(“ op(3,2,0)”)可以将计算出的农田站点的地面热通量的归一化均方根误差(或RMSE / STD比)显着降低至2%(或0.9) W m(-2)),通过ECMWF中使用的5层方案从11%(或5 W m(-2)),通过5层方案从19%(或8 W m(-2)),在ECHAM中使用,并通过UCLA GCM中使用的单层方案从74%(或32 W m(-2))获得。通过在垂直离散化中包括更多层,可以实现更好的精度。由于数值误差已继承到所有土地类型的模型中,因此对于其他土地类型不同的位置,也有望实现类似的改进。所提出的方案可以很容易地实现为用于雪,冰和土壤温度模拟的最新气候模型。

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