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Summer soil drying exacerbated by earlier spring greening of northern vegetation

机译:夏季土壤干燥加剧了北部植被的早期春季绿化

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Earlier vegetation greening under climate change raises evapotranspiration and thus lowers spring soil moisture, yet the extent and magnitude of this water deficit persistence into the following summer remain elusive. We provide observational evidence that increased foliage cover over the Northern Hemisphere, during 1982–2011, triggers an additional soil moisture deficit that is further carried over into summer. Climate model simulations independently support this and attribute the driving process to be larger increases in evapotranspiration than in precipitation. This extra soil drying is projected to amplify the frequency and intensity of summer heatwaves. Most feedbacks operate locally, except for a notable teleconnection where extra moisture transpired over Europe is transported to central Siberia. Model results illustrate that this teleconnection offsets Siberian soil moisture losses from local spring greening. Our results highlight that climate change adaptation planning must account for the extra summer water and heatwave stress inherited from warming-induced earlier greening.
机译:在气候变化下较早的植被绿化引发了蒸发,从而降低了春天的土壤水分,但这种水缺陷持续存在于以下夏季的程度和程度仍然难以捉摸。我们提供了观察证据,即在1982 - 2011年期间增加了北半球的叶子覆盖,触发了额外的土壤湿度赤字,进入夏季。气候模型模拟独立支持,并将驱动过程较大增加蒸发量大于降水量。突出的这种额外的土壤干燥以放大夏季散热器的频率和强度。大多数反馈都在本地运行,除了一个值得注意的电信连接,其中欧洲越过欧洲的额外水分被运输到西伯利亚。模型结果表明,该遥控器从本地春季绿化中抵消了西伯利亚土壤水分损失。我们的成果强调,气候变化适应计划必须占额外的夏季水和热浪压力,从更初步的更早的绿化中遗传。

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