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Land water storage variability over West Africa estimated by Gravity Recovery and Climate Experiment (GRACE) and land surface models

机译:利用重力恢复和气候实验(GRACE)和地表模型估算的西非土地储水量

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摘要

Land water storage plays a fundamental role in the West African water cycle and has an important impact on climate and on the natural resources of this region. However, measurements of land water storage are scarce at regional and global scales and especially in poorly instrumented endorheic regions, such as most of the Sahel, where little useful information can be derived from river flow measurements and basin water budgets. The Gravity Recovery and Climate Experiment (GRACE) satellite mission provides an accurate measurement of the terrestrial gravity field variations from which land water storage variations can be derived. However, their retrieval is not straightforward, and different methods are employed, which results in different water storage GRACE products. On the other hand, water storage can be estimated by land surface modeling forced with observed or satellite-based boundary conditions, but such estimates can be highly model dependent. In this study, land water storage by six GRACE products and soil moisture estimations by nine land surface models (run within the framework of the African Monsoon Multidisciplinary Analysis Land Surface Intercomparison Project (ALMIP)) are evaluated over West Africa, with a particular focus on the Sahelian area. The water storage spatial distribution, including zonal transects, its seasonal cycle, and its and interannual variability, are analyzed for the years 2003-2007. Despite the nonnegligible differences among the various GRACE products and among the different models, a generally good agreement between satellite and model estimates is found over the West Africa study region. In particular, GRACE data are shown to reproduce well the water storage interannual variability over the Sahel for the 5 year study period. The comparison between satellite estimates and ALMIP results leads to the identification of processes needing improvement in the land surface models. In particular, our results point out the importance of correctly simulating slow water reservoirs as well as evapotranspiration during the dry season for accurate soil moisture modeling over West Africa.
机译:土地蓄水在西非水循环中起着根本性的作用,并且对该地区的气候和自然资源产生重要影响。但是,在区域和全球范围内,尤其是在萨赫勒地区大部分地区等仪器仪表不完善的背胶地区,对土地蓄水量的测量都很少,在这些地方,很少有有用的信息可以从河流流量测量和流域水预算中获得。重力恢复和气候实验(GRACE)卫星任务提供了对地面重力场变化的精确测量,可以从中得出地下水的储量变化。然而,它们的检索不是直接的,并且采用了不同的方法,这导致了不同的储水GRACE产品。另一方面,可以通过在观测到的或基于卫星的边界条件的作用下通过陆地表面建模来估计水的存储量,但是这种估计可能与模型高度相关。在这项研究中,评估了西非的六种GRACE产品的土地储水量和九种土地表面模型(在非洲季风多学科分析土地表面比对项目(ALMIP)的框架内运行)下的土壤水分估计,重点是西非萨赫勒地区。分析了2003-2007年的储水空间分布,包括地带断面,季节周期及其年际变化。尽管GRACE的各种产品之间以及模型之间的差异不可忽略,但在西非研究地区,卫星和模型估算值之间的总体一致性很好。特别是,显示出GRACE数据可以很好地再现萨赫勒地区在5年研究期内的储水量年际变化。卫星估算值与ALMIP结果之间的比较可确定需要改进的地表模型过程。特别是,我们的研究结果指出了正确模拟干旱季节的慢水库和蒸散对建立西非准确的土壤湿度模型的重要性。

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  • 来源
    《Water resources research 》 |2011年第5期| p.W05549.1-W05549.18| 共18页
  • 作者单位

    Geosciences Environnement Toulouse, UMR 5563, CNRS-Universite Toulouse III-IRD, Toulouse, France;

    Geosciences Environnement Toulouse, UMR 5563, CNRS-Universite Toulouse III-IRD, Toulouse, France;

    Geosciences Environnement Toulouse, UMR 5563, CNRS-Universite Toulouse III-IRD, Toulouse, France;

    Geosciences Environnement Toulouse, UMR 5563, CNRS-Universite Toulouse III-IRD, Toulouse, France;

    Centre National de Recherches Meteorologiques, Toulouse, France;

    European Centre for Medium-Range Weather Forecasts, Reading,UK;

    Dynamique Terrestre et Planetaire, UMR 5562, CNRS-UPS Toulouse III, Toulouse, France;

    Centro de Estudios Avanzados en Zonas Aridas, La Serena, Chile;

    European Centre for Medium-Range Weather Forecasts, Reading,UK;

    Laboratoire des Sciences du Climat et de l'Environnement, LSCE/IPSL/CEA-CNRS-UVSQ, Centre d'Etudes de Saclay, Gif-sur-Yvette,France;

    Centre National de Recherches Meteorologiques, Toulouse, France;

    Plymouth Marine Laboratory, Plymouth, UK;

    Geosciences Environnement Toulouse, UMR 5563, CNRS-Universite Toulouse III-IRD, Toulouse, France;

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