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Probability of afternoon precipitation in eastern United States and Mexico enhanced by high evaporation

机译:高蒸发量增加了美国东部和墨西哥午后降水的可能性

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Moisture and heat fluxes from the land surface to the atmosphere form a critical nexus between surface hydrology and atmospheric processes, particularly those relevant to precipitation. Although current theory suggests that soil moisture generally has a positive impact on subsequent precipitation, individual studies have shown support both for and against this positive feedback. Broad assessment of the coupling between soil moisture and evapotranspiration, and evapotranspiration and precipitation, has been limited by a lack of large-scale observations. Quantification of the influence of evapotranspiration on precipitation remains particularly uncertain. Here, we develop and apply physically based, objective metrics for quantifying the impacts of surface evaporative and sensible heat fluxes on the frequency and intensity of convective rainfall during summer, using North American reanalysis data. We show that high evaporation enhances the probability of afternoon rainfall east of the Mississippi and in Mexico. Indeed, variations in surface fluxes lead to changes in afternoon rainfall probability of between 10 and 25% in these regions. The intensity of rainfall, by contrast, is largely insensitive to surface fluxes. We suggest that local surface fluxes represent an important trigger for convective rainfall in the eastern United States and Mexico during the summer, leading to a positive evaporation??"precipitation feedback.
机译:从陆地表面到大气的水分和热通量形成了地表水文学与大气过程之间的关键联系,特别是与降水有关的过程。尽管目前的理论表明土壤湿度通常对随后的降水有积极影响,但个别研究表明支持和反对这种积极反馈。由于缺乏大规模的观测,对土壤水分与蒸散量,蒸散量与降水之间的耦合关系进行了广泛的评估。蒸散量对降水的影响的量化仍然特别不确定。在这里,我们使用北美的再分析数据,开发并应用基于物理的客观指标,用于量化夏季蒸发和显热通量对对流降水频率和强度的影响。我们表明,高蒸发量增加了密西西比州东部和墨西哥午后降雨的可能性。实际上,在这些地区,地表通量的变化导致下午降雨的概率在10%到25%之间变化。相反,降雨强度对表面通量不敏感。我们建议在夏季,局部表面通量是美国东部和墨西哥对流降水的重要触发因素,从而导致正蒸发-“降水反馈”。

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