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Evaluation of the Met Office global forecast model using Geostationary Earth Radiation Budget (GERB) data

机译:利用地球静止地球辐射预算(GERB)数据评估大都会办公室全球预报模型

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摘要

Simulations of the top-of-atmosphere radiative-energy budget from the Met Office global numerical weather-prediction model are evaluated using new data from the Geostationary Earth Radiation Budget (GERB) instrument on board the Meteosat-8 satellite. Systematic discrepancies between the model simulations and GERB measurements greater than 20 Wm-2 in outgoing long-wave radiation (OLR) and greater than 60 Wm-2 in reflected short-wave radiation (RSR) are identified over the period April-September 2006 using 12 UTC data. Convective cloud over equatorial Africa is spatially less organized and less reflective than in the GERB data. This bias depends strongly on convective-cloud cover, which is highly sensitive to changes in the model convective parametrization. Underestimates in model OLR over the Gulf of Guinea coincide with unrealistic southerly cloud outflow from convective centres to the north. Large overestimates in model RSR over the subtropical ocean, greater than 50 Wm-2 at 12 UTC, are explained by unrealistic radiative properties of low-level cloud relating to overestimation of cloud liquid water compared with independent satellite measurements. The results of this analysis contribute to the development and improvement of parametrizations in the global forecast model.
机译:使用来自Meteosat-8卫星上对地静止地球辐射预算(GERB)仪器的新数据,对来自Met Office全球数值天气预报模型的大气层顶部辐射能量预算进行了仿真。在2006年4月至9月期间,使用以下方法确定了模型仿真与GERB测量之间的系统差异,即出射长波辐射(OLR)大于20 Wm-2,而反射短波辐射(RSR)大于60 Wm-2。 12 UTC数据。与GERB数据相比,赤道非洲上空的对流云在空间上的组织性和反射性较低。该偏差主要取决于对流云量,它对模型对流参数化的变化高度敏感。几内亚湾上空的OLR模型中的低估与对流中心向北部的不切实际的南风云流出相吻合。亚热带海洋模型RSR中的高估过高,在12 UTC时大于50 Wm-2,这是由于与独立卫星测量相比,低估了云水的不切实际的辐射特性,与高估了云状液态水有关。该分析的结果有助于全球预测模型中参数化的发展和改善。

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