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Intensification of hot Eurasian summers by climate change and land–atmosphere interactions

机译:气候变化和陆地-大气相互作用加剧了欧亚夏季炎热

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摘要

Persistent abnormal hot weather can cause considerable damage to human society and natural environments. In northern Eurasia, the recent change in summer surface air temperature exhibits a heterogeneous pattern with accelerated warming around the Eastern European Plain and Central Siberia, forming a wave train-like structure. However, the key factors that determine the magnitude and spatial distribution of this summer temperature trend remain unclear. Here, a huge ensemble of general circulation model (GCM) simulations show that the recent summer temperature trend has been intensified by two factors: steady warming induced by external forcing and inhomogeneous warming induced by internal atmosphere–land interactions that amplify quasi-stationary waves. The latter is sensitive to both snow cover and soil moisture anomalies in the spring, suggesting the potential of land surface monitoring for better seasonal prediction of summer temperatures. Dramatic changes in the circumpolar environment, characterised by Eurasian snow variation and Arctic Ocean warming, collectively affect summertime climate via memory effects of the land surface.
机译:持续的异常炎热天气会严重损害人类社会和自然环境。在欧亚大陆北部,最近的夏季地表气温变化呈现出一种异质性模式,在东欧平原和西伯利亚中部附近加速变暖,形成了波浪状的结构。但是,决定这个夏季温度趋势的大小和空间分布的关键因素仍然不清楚。在这里,巨大的总体循环模型(GCM)模拟表明,最近的夏季温度趋势受到两个因素的加剧:外强迫引起的稳定变暖和内部大气-陆地相互作用引起的准平稳波放大引起的不均匀变暖。后者对春季的积雪和土壤湿度异常都很敏感,这表明为了更好地对夏季温度进行季节性预测,监测土地表面的潜力。以欧亚积雪变化和北冰洋变暖为特征的绕极环境的剧烈变化通过陆地表面的记忆效应共同影响夏季气候。

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