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Global Regional and Megacity Trends in the Highest Temperature of the Year: Diagnostics and Evidence for Accelerating Trends

机译:年度最高温度的全球区域和特大城市趋势:趋势加速的诊断和证据

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摘要

Trends in short‐lived high‐temperature extremes record a different dimension of change than the extensively studied annual and seasonal mean daily temperatures. They also have important socioeconomic, environmental, and human health implications. Here, we present analysis of the highest temperature of the year for approximately 9000 stations globally, focusing on quantifying spatially explicit exceedance probabilities during the recent 50‐ and 30‐year periods. A global increase of 0.19°C per decade during the past 50 years (through 2015) accelerated to 0.25°C per decade during the last 30 years, a faster increase than in the mean annual temperature. Strong positive 30‐year trends are detected in large regions of Eurasia and Australia with rates higher than 0.60°C per decade. In cities with more than 5 million inhabitants, where most heat‐related fatalities occur, the average change is 0.33°C per decade, while some east Asia cities, Paris, Moscow, and Houston have experienced changes higher than 0.60°C per decade.
机译:短期高温极端的趋势记录的变化幅度与广泛研究的年度和季节性平均每日温度不同。它们还具有重要的社会经济,环境和人类健康影响。在这里,我们介绍了全球约9000个站点的年度最高温度分析,重点是量化最近50年和30年期间的空间显式超标概率。在过去的50年(到2015年)中,全球每十年增加0.19°C,在最近30年中,全球每十年增加0.25°C,比年平均温度的增长速度更快。在欧亚大陆和澳大利亚的大部分地区发现了强劲的30年正趋势,其速率每十年高于0.60°C。在人口超过500万的城市中,大多数与热有关的死亡事故都发生在这里,平均变化为每十年0.33°C,而一些东亚城市,巴黎,莫斯科和休斯敦的变化则高于每十年0.60°C。

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