首页> 外文OA文献 >Coupling between the JULES land-surface scheme and the CCATT-BRAMS atmospheric chemistry model (JULES-CCATT-BRAMS1.0): applications to numerical weather forecasting and the CO2 budget in South America
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Coupling between the JULES land-surface scheme and the CCATT-BRAMS atmospheric chemistry model (JULES-CCATT-BRAMS1.0): applications to numerical weather forecasting and the CO2 budget in South America

机译:JULES地表方案与CCATT-BRAMS大气化学模型(JULES-CCATT-BRAMS1.0)之间的耦合:在南美洲数值天气预报和CO 2 预算中的应用

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摘要

This article presents the development of a new numerical system denominated JULES-CCATT-BRAMS, which resulted from the coupling of the JULES surface model to the CCATT-BRAMS atmospheric chemistry model. The performance of this system in re- lation to several meteorological variables (wind speed at 10m, air temperature at 2m, dew point temperature at 2m, pressure reduced to mean sea level and 6h accumulated precipitation) and the CO2 concentration above an extensive area of South America is also presented, focusing on the Amazon basin. The evaluations were conducted for two periods, the wet (March) and dry (September) seasons of 2010. The statistics used to perform the evaluation included bias (BIAS) and root mean squared error (RMSE). The errors were calculated in relation to observations at conventional stations in airports and automatic stations. In addition, CO2 concentrations in the first model level were compared with meteorological tower measurements and vertical CO 2 profiles were compared with aircraft data. The results of this study show that the JULES model coupled to CCATT-BRAMS provided a significant gain in performance in the evaluated atmospheric fields relative to those simulated by the LEAF (version 3) surface model originally utilized by CCATT-BRAMS. Simulations of CO2 concentrations in Amazonia and a comparison with observations are also discussed and show that the system presents a gain in performance relative to previous studies. Finally, we discuss a wide range of numerical studies integrating coupled atmospheric, land surface and chemistry processes that could be produced with the system described here. Therefore, this work presents to the scientific community a free tool, with good performance in relation to the observed data and re-analyses, able to produce atmospheric simulations/forecasts at different resolutions, for any period of time and in any region of the globe.
机译:本文介绍了一个新的数值系统,命名为JULES-CCATT-BRAMS,这是由于JULES表面模型与CCATT-BRAMS大气化学模型的耦合所致。该系统的性能与多个气象变量(风速10m,气温2m,露点温度2m,压力降低至平均海平面和6h累积降水)以及大范围区域的CO2浓度有关。还介绍了南美,重点是亚马逊盆地。评估进行了两个时期,2010年的湿季(3月)和干燥季(9月)。用于进行评估的统计数据包括偏差(BIAS)和均方根误差(RMSE)。相对于机场和自动站常规站的观测值计算了误差。此外,将第一个模型级别的CO2浓度与气象塔测量值进行了比较,并将垂直CO 2曲线与飞机数据进行了比较。这项研究的结果表明,与CCATT-BRAMS最初使用的LEAF(第3版)表面模型所模拟的那些相比,耦合到CCATT-BRAMS的JULES模型在所评估的大气场中提供了显着的性能提升。还讨论了亚马逊地区CO2浓度的模拟以及与观测值的比较,结果表明该系统相对于以前的研究表现出了一定的性能提升。最后,我们讨论了结合了大气,陆地表面和化学过程的大量数值研究,这些过程可以使用此处描述的系统进行。因此,这项工作向科学界提供了一种免费工具,相对于观察到的数据和重新分析而言,该工具具有良好的性能,能够在任何时间段和全球范围内以不同的分辨率进行大气模拟/预报。 。

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