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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Integration of the variable infiltration capacity model soil hydrology scheme into the community land model
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Integration of the variable infiltration capacity model soil hydrology scheme into the community land model

机译:将变量入渗能力模型土壤水文方案整合到社区土地模型中

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摘要

Enhancements to the soil hydrology scheme in the NCAR Community Land Model version 3 (CLM3) are described, which are intended to improve the ability of CLM to represent land surface hydrologic processes. Specifically, the CLM3 soil hydrology scheme has been replaced with the scheme used in the Variable Infiltration Capacity model (VIC). While the modified model incorporates VIC soil hydrology, the original model structure in CLM3 is unchanged in most other respects, such as the representation of vegetation and its controls on surface energy exchanges. The modified version of CLM3 makes direct use of VIC soil parameters that have been developed for off-line regional, continental, and global simulations. The performance of the new model and CLM3 are evaluated through a comparison with observations at three flux tower sites: ABRACOS, a pasture clearing in the Brazilian rain forest, HAPEX-MOBILHY, a midlatitude agricultural site in France, and Valdai, a midlatitude grassland in Russia, as well as two large river basins (Arkansas-Red and Colorado in the United States). Overall, the results show that the merged model better reproduces observed soil hydrological variability, in particular, the seasonal evolution and amplitude of soil moisture, as compared to CLM3. The river basin simulations show that in the merged model, total runoff is generally less than in CLM3 and better agrees with observations. Owing to the interaction of runoff and soil moisture, the simulation of total evapotranspiration (or latent heat) is also improved in the merged model.
机译:描述了NCAR社区土地模型第3版(CLM3)中土壤水文方案的增强,目的是提高CLM代表陆地表面水文过程的能力。具体来说,CLM3土壤水文方案已被可变渗透能力模型(VIC)中使用的方案取代。虽然修改后的模型结合了VIC的土壤水文学,但CLM3中的原始模型结构在大多数其他方面都没有改变,例如植被的表示及其对表面能交换的控制。 CLM3的修改版直接使用为离线区域,大陆和全球模拟开发的VIC土壤参数。通过与以下三个通量塔站点的观测值进行比较,评估了新模型和CLM3的性能:ABRACOS,巴西雨林中的牧场清理场; HAPEX-MOBILHY,法国中纬度农业站点; Valdai,中纬度草原。俄罗斯以及两个大型流域(美国的阿肯色州-红色和科罗拉多州)。总的来说,结果表明,与CLM3相比,合并后的模型更好地再现了观测到的土壤水文变异性,尤其是季节性演变和土壤水分的振幅。流域模拟显示,在合并模型中,总径流量通常小于CLM3,并且与观测值更好地吻合。由于径流和土壤水分的相互作用,合并模型中总蒸散量(或潜热)的模拟也得到了改进。

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