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首页> 外文期刊>Journal of hydrometeorology >Surface Water and Energy Budgets for the Mississippi River Basin in Three NCEP Reanalyses
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Surface Water and Energy Budgets for the Mississippi River Basin in Three NCEP Reanalyses

机译:三项NCEP再分析中的密西西比河流域地表水和能源预算

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Surface water and energy budgets from the National Centers for Environmental Prediction-U.S. Department of Energy (NCEP-DOE) Atmospheric Model Intercomparison Project (AMIP-II) Global Reanalysis 2 (GR2), the North American Regional Reanalysis (NARR), and the NCEP Climate Forecast System Reanalysis (CFSR) are compared here with each other and with available observations over the Mississippi River basin. The comparisons in seasonal cycle, interannual variation, and annual mean over a 31-yr period show that there are a number of noticeable differences and similarities in the large-scale basin averages. Warm season precipitation and runoff in the GR2 are too large compared to the observations, and seasonal surface water variation is small. By contrast, the precipitation in both NARR and CFSR is more reasonable and in better agreement with the observation, although the corresponding seasonal runoff is very small. The main causes of the differences in both surface parameterization and approach used in assimilating the observed precipitation datasets and snow analyses are then discussed. Despite the discrepancies in seasonal water budget components, seasonal energy budget terms in the three reanalyses are close to each other and to available observations. The interannual variations in both water and energy budgets are comparable. This study shows that the CFSR achieves a large improvement over the GR2, indicating that the CFSR dataset can be used in climate variability studies. Nonetheless, improved land surface parameterization schemes and data assimilation techniques are needed to depict the surface water and energy climates better, in particular, the variation in seasonal runoff.
机译:美国国家环境预测中心的地表水和能源预算此处将能源部(NCEP-DOE)大气模型比对项目(AMIP-II)全球再分析2(GR2),北美区域再分析(NARR)和NCEP气候预测系统再分析(CFSR)进行了比较,并密西西比河流域的观测资料。在31年期间的季节周期,年际变化和年均值的比较表明,大型流域平均数存在许多明显的相似之处。与观测值相比,GR2的暖季降水和径流太大,并且季节性地表水变化很小。相比之下,尽管相应的季节径流非常小,但NARR和CFSR的降水都更合理,并且与观测值更吻合。然后讨论了表面参数化和用于同化观测的降水数据集和降雪分析的方法不同的主要原因。尽管季节性水预算组成部分存在差异,但三个再分析中的季节性能源预算术语彼此接近且与可用观测值相近。水和能源预算的年度变化是可比较的。这项研究表明,CFSR比GR2有了很大的改进,这表明CFSR数据集可用于气候变异性研究。尽管如此,仍需要改进的地表参数化方案和数据同化技术来更好地描述地表水和能源的气候,尤其是季节性径流的变化。

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