首页> 外文期刊>Geoscientific Model Development Discussions >Role of vegetation in representing land surface temperature in the CHTESSEL (CY45R1) and SURFEX-ISBA (v8.1) land surface models: a case study over Iberia
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Role of vegetation in representing land surface temperature in the CHTESSEL (CY45R1) and SURFEX-ISBA (v8.1) land surface models: a case study over Iberia

机译:植被在Chtessel(CY45R1)和冲浪isba(V8.1)陆表面模型中代表陆地表面温度的作用:伊比利亚的案例研究

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Earth observations were used to evaluate the representation of land surface temperature (LST) and vegetation coverage over Iberia in two state-of-the-art land surface models (LSMs) – the European Centre for Medium-Range Weather Forecasts (ECMWF) Carbon-Hydrology Tiled ECMWF Scheme for Surface Exchanges over Land (CHTESSEL) and the Météo-France Interaction between Soil Biosphere and Atmosphere model (ISBA) within the SURface EXternalisée modeling platform (SURFEX-ISBA) for the 2004–2015 period. The results showed that the daily maximum LST simulated by CHTESSEL over Iberia was affected by a large cold bias during summer months when compared against the Satellite Application Facility on Land Surface Analysis (LSA-SAF), reaching magnitudes larger than 10°C over wide portions of central and southwestern Iberia. This error was shown to be tightly linked to a misrepresentation of the vegetation cover.? In contrast, SURFEX simulations did not display such a cold bias. We show that this was due to the better representation of vegetation cover in SURFEX, which uses an updated land cover dataset (ECOCLIMAP-II) and an interactive vegetation evolution, representing seasonality. The representation of vegetation over Iberia in CHTESSEL was improved by combining information from the European Space Agency Climate Change Initiative (ESA-CCI) land cover dataset with the Copernicus Global Land Service (CGLS) leaf area index (LAI) and fraction of vegetation coverage (FCOVER). The proposed improvement in vegetation also included a clumping approach that introduces seasonality to the vegetation cover. The results showed significant added value, removing the daily maximum LST summer cold bias completely, without reducing the accuracy of the simulated LST, regardless of season or time of the day. The striking performance differences between SURFEX and CHTESSEL were fundamental to guiding the developments in CHTESSEL highlighting the importance of using different models. This work has important implications: first, it takes advantage of LST, a key variable in surface–atmosphere energy and water exchanges, which is closely related to satellite top-of-atmosphere observations, to improve the model's representation of land surface processes. Second, CHTESSEL is the land surface model employed by ECMWF in the production of their weather forecasts and reanalysis; hence systematic errors in land surface variables and fluxes are then propagated into those products. Indeed, we showed that the summer daily maximum LST cold bias over Iberia in CHTESSEL is present in the widely used ECMWF fifth-generation reanalysis (ERA5). Finally, our results provided hints about the interaction between vegetation land–atmosphere exchanges, highlighting the relevance of the vegetation cover and respective seasonality in representing land surface temperature in both CHTESSEL and SURFEX. As a whole, this work demonstrated the added value of using multiple earth observation products for constraining and improving weather and climate simulations.
机译:地球观测用于评估伊比利亚的土地表面温度(LST)和植被覆盖的代表在两个最先进的土地表面模型(LSM) - 欧洲中距离(ECMWF)碳中的欧洲中际天气预报中心 - 陆地(CHTESSEL)表面交换水中瓷砖ECMWF方案及土壤生物圈与大气模型(ISBA)在2004 - 2015年期间土壤生物圈和大气模型(ISBA)的互动。结果表明,在夏季的卫星应用设施(LSA-SAF)上比较时,Chtessel模拟的每日最大LST受到夏季的大寒冷偏差,达到大于10°C的大于10°C的大于10°C伊比利亚中部和西南部。该错误显示出与植被覆盖的虚假陈述紧密相关。相比之下,冲浪模拟没有显示这种冷偏差。我们表明这是由于Surfex中植被覆盖的更好代表性,它使用更新的土地覆盖数据集(Ecoclimap-II)和代表季节性的交互式植被演变。通过将欧洲航天局气候变化倡议(ESA-CCI)土地覆盖数据集与哥白尼全球土地服务(CGLS)叶面积指数(LAI)和植被覆盖率的分数相结合,改善了CHTESSEL中伊比雷西亚植被植被的代表性得到了改善fcover)。植被的建议改善也包括一种丛生的方法,将季节性引入植被覆盖物。结果显示出显着的附加值,完全消除了每日最大LST夏季冷偏见,而不会降低模拟LST的准确性,无论季节还是当天的时间。冲浪和Chtessel之间的醒目性能差异是指导Chtessel的发展突出了使用不同模型的重要性。这项工作具有重要意义:首先,它利用LST,表面大气能量和水交换中的一个关键变量,这与卫星全部大气观测密切相关,以改善模型的陆地过程的代表。其次,Chtessel是ECMWF在生产天气预报和再分析中的土地表面模型;因此,陆地变量和助熔剂中的系统误差然后繁殖到这些产品中。事实上,我们表明,在Chtessel中伊比利亚的夏季日常最大LST冷偏差在广泛使用的ECMWF第五代Reanalys(ERA5)中存在。最后,我们的结果提供了关于植被土地 - 大气交换之间的相互作用的提示,突出了植被覆盖和各自的季节性在代表Chtessel和Surfex中的陆地表面的相关性。总的来说,这项工作展示了使用多地接地观察产品来限制和改善天气和气候模拟的附加值。

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