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首页> 外文期刊>Advances in Meteorology >A New Land Surface Hydrology within the Noah-WRF Land-Atmosphere Mesoscale Model Applied to Semiarid Environment: Evaluation over the Dantiandou Kori (Niger)
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A New Land Surface Hydrology within the Noah-WRF Land-Atmosphere Mesoscale Model Applied to Semiarid Environment: Evaluation over the Dantiandou Kori (Niger)

机译:适用于半干旱环境的Noah-WRF陆-气中尺度模型中的新陆面水文学:对Dantiandou Kori(尼日尔)的评估

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摘要

Land-atmosphere feedbacks, which are particularly important over the Sahel during the West African Monsoon (WAM), partly depend on a large range of processes linked to the land surface hydrology and the vegetation heterogeneities. This study focuses on the evaluation of a new land surface hydrology within the Noah-WRF land-atmosphere-coupled mesoscale model over the Sahel. This new hydrology explicitly takes account for the Dunne runoff using topographic information, the Horton runoff using a Green-Ampt approximation, and land surface heterogeneities. The previous and new versions of Noah-WRF are compared against a unique observation dataset located over the Dantiandou Kori (Niger). This dataset includes dense rain gauge network, surfaces temperatures estimated from MSG/SEVIRI data, surface soil moisture mapping based on ASAR/ENVISAT C-band radar data and in situ observations of surface atmospheric and land surface energy budget variables. Generally, the WAM is reasonably reproduced by Noah-WRF even if some limitations appear throughout the comparison between simulations and observations. An appreciable improvement of the model results is also found when the new hydrology is used. This fact seems to emphasize the relative importance of the representation of the land surface hydrological processes on the WAM simulated by Noah-WRF over the Sahel.
机译:陆地大气反馈在西非季风(WAM)期间对萨赫勒地区尤为重要,部分取决于与陆地表面水文学和植被异质性相关的大量过程。这项研究的重点是在萨赫勒地区Noah-WRF陆-气耦合中尺度模型内评估新的陆面水文学。这种新的水文学明确地考虑了使用地形信息的邓恩径流,使用格林-安培近似值的霍顿径流以及土地表面的非均质性。将Noah-WRF的先前版本和新版本与位于Dantiandou Kori(尼日尔)上的唯一观测数据集进行比较。该数据集包括密集的雨量计网络,根据MSG / SEVIRI数据估算的地表温度,基于ASAR / ENVISAT C波段雷达数据的地表土壤湿度制图以及对地表大气和陆地地表能量收支变量的现场观测。通常,即使在模拟和观测之间的比较中出现一些限制,Wah还是可以由Noah-WRF合理地复制。当使用新的水文学时,还发现了模型结果的明显改善。这一事实似乎强调了在Noah-WRF对萨赫勒地区进行模拟的WAM上,地表水文过程表示的相对重要性。

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