环境科学
气候模式
流域
水循环
水文模型
植被(病理学)
水文学(农业)
构造盆地
气候变化
气候学
地质学
地貌学
海洋学
地理
生物
生态学
医学
地图学
病理
岩土工程
作者
Eric F. Wood,Dennis P. Lettenmaier,Xu Liang,Bart Nijssen,Suzanne W. Wetzel
标识
DOI:10.1146/annurev.earth.25.1.279
摘要
▪ Abstract Recent increased interest in the role of the land surface in weather and climate, including impacts due to climate change, has resulted in land surface hydrologic models that incorporate processes which describe the exchange of water and energy at the Earth's surface. The development of a grid-based hydrological model with a full soil-vegetation-atmospheric-transfer (SVAT) land surface parameterization is summarized. The model is suitable both for simulating continental-scale river basins at high temporal and spatial resolutions and as the land surface parameterization in atmospheric general circulation models (AGCMs). Results for the Missouri River basin show the model can successfully simulate hydrological fluxes (e.g. streamflows and evaporation) for large catchments.
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