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首页> 外文期刊>Climate dynamics >Climate change evolution of the hydrological balance of the Mediterranean, Black and Caspian Seas: impact of climate model resolution
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Climate change evolution of the hydrological balance of the Mediterranean, Black and Caspian Seas: impact of climate model resolution

机译:地中海,黑海和里海水文平衡的气候变化演变:气候模型解析的影响

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摘要

In this study we have evaluated the ability of the CNRM-ARPEGE CLIMATE V4 general circulation model (GCM) to estimate the present-day hydrological budget components [precipitation minus evaporation over the sea (P - E) and fresh water runoff (R)] over the Mediterranean, Black and Caspian sea basins. Three simulations were performed which were exactly identical except for horizontal resolution, allowing for a unique opportunity to isolate and study the effects of resolution on simulating the hydrological components. Model calculated values of runoff and P - E were compared to a variety of data sources and show that the model's performance improves significantly with increased resolution, especially in regions with mountainous terrain. Corresponding future climate simulations (following the IPCC A2 scenario) were also performed and indicate that while resolution does not seem to have a significant effect on the qualitative impacts of future climate change on the hydrologic balance, quantitatively the results vary significantly among the models. These results suggests that high resolution global models, or downscaling models such as RCMs, are necessary in order to assess the magnitude of future changes in the hydrological components of these basins.
机译:在这项研究中,我们评估了CNRM-ARPEGE CLIMATE V4一般循环模型(GCM)估算当前水文预算组成部分的能力[降水减去海上蒸发量(P-E)和淡水径流(R)]。在地中海,黑海和里海海域上空。进行了三个模拟,除了水平分辨率外,它们完全相同,这为分离和研究分辨率对模拟水文分量的影响提供了独特的机会。将模型的径流量和PE值与各种数据源进行了比较,结果表明,随着分辨率的提高,模型的性能将显着提高,尤其是在山区地形区域。还进行了相应的未来气候模拟(遵循IPCC A2情景),并表明尽管分辨率似乎对未来气候变化对水文平衡的定性影响没有显着影响,但在不同模型之间,结果在数量上差异很大。这些结果表明,为了评估这些流域水文要素未来变化的幅度,必须使用高分辨率的全球模型或缩小规模的模型(例如RCM)。

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