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Role of clouds and land-atmosphere coupling inmidlatitude continental summer warm biases and climate change amplification in CMIP5 simulations

机译:CMIP5模拟中云和陆-气耦合在中纬度大陆夏季温暖偏向和气候变化放大中的作用

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摘要

Over land, most state-of-the-art climate models contributing to Coupled Model Intercomparison Project Phase 5 (CMIP5) share a strong summertime warm bias in midlatitude areas, especially in regions where the coupling between soil moisture and atmosphere is effective. The most biased models overestimate solar incoming radiation, because of cloud deficit and have difficulty to sustain evaporation. These deficiencies are also involved in the spread of the summer temperature projections among models in the midlatitude; the models which simulate a higher-than-average warming overestimate the present climate net shortwave radiation which increases more-than-average in the future, in link with a decrease of cloudiness. They also show a higher-than-average reduction of evaporative fraction in areas with soil moisture-limited evaporation regimes. Over these areas, the most biased models in the present climate simulate a larger warming in response to climate change which is likely to be overestimated.
机译:在陆地上,促成耦合模式比对项目第5阶段(CMIP5)的大多数最新气候模式在中纬度地区,特别是在土壤水分与大气耦合有效的地区,都具有强烈的夏季温暖偏见。由于云量不足,最偏向的模型高估了太阳的入射辐射,并且难以维持蒸发。这些不足还与中纬度地区夏季气温预测的分布有关。模拟高于平均水平的变暖的模型高估了当前的气候净短波辐射,该辐射在未来增加了超过平均水平,并降低了云量。它们还显示出在土壤水分受限的蒸发方式下,蒸发分数的降低幅度高于平均水平。在这些地区,当前气候中最偏向的模型模拟了响应气候变化的较大变暖,这可能被高估了。

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