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The development and validation of a new land surface model for regional and global climate modeling.

机译:开发和验证用于区域和全球气候模拟的新地表模型。

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A new land-surface scheme intended for use in mesoscale and global climate models has been developed and validated. The ground scheme consists of 6 soil layers. Diffusion and a modified tipping bucket model govern heat and water flow respectively. A 3 layer snow model has been incorporated into a modified BEST vegetation scheme. TOPMODEL equations and Digital Elevation Model data are used to generate baseflow which supports lowland saturated zones. Soil moisture heterogeneity represented by saturated lowlands subsequently impacts watershed evapotranspiration, the partitioning of surface fluxes, and the development of the storm hydrograph. Five years of meteorological and hydrological data from the Sleepers river watershed located in the eastern highlands of Vermont where winter snow cover is significant were then used to drive and validate the new scheme. Site validation data were sufficient to evaluate model performance with regard to various aspects of the watershed water balance, including snowpack growth/ablation, the spring snowmelt hydrograph, storm hydrographs, and the seasonal development of watershed evapotranspiration and soil moisture. By including topographic effects, not only are the main spring hydrographs and individual storm hydrographs adequately resolved, but the mechanisms generating runoff are consistent with current views of hydrologic processes. The seasonal movement of the mean water table depth and the saturated area of the watershed are consistent with site data and the overall model hydroclimatology, including the surface fluxes, seems reasonable.
机译:已经开发并验证了一种旨在用于中尺度和全球气候模型的新陆表方案。地面方案包括6个土层。扩散和改进的翻斗模型分别控制热量和水的流量。 3层积雪模型已纳入修改的BEST植被方案中。 TOPMODEL方程和数字高程模型数据用于生成支持低地饱和区的基流。以饱和低地为代表的土壤水分异质性随后影响到流域的蒸散量,地表通量的分配以及风暴水文图的发展。来自佛蒙特州东部高地睡眠者河流域的五年气象和水文数据随后被用来驱动和验证新方案。现场验证数据足以评估流域水平衡各个方面的模型性能,包括积雪生长/消融,春季融雪水文图,暴雨水文图以及流域蒸散量和土壤湿度的季节性变化。通过包括地形影响,不仅可以充分解析主要的春季水文图和单个风暴水文图,而且产生径流的机制也与当前的水文过程观点相一致。平均地下水位深度和流域饱和区域的季节性运动与现场数据一致,并且包括地表通量在内的总体模型水文气候学似乎是合理的。

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