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Regional Contrasts of the Warming Rate over Land Significantly Depend on the Calculation Methods of Mean Air Temperature

机译:陆地升温速率的区域差异明显取决于平均气温的计算方法

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摘要

Global analyses of surface mean air temperature (Tm) are key datasets for climate change studies and provide fundamental evidences for global warming. However, the causes of regional contrasts in the warming rate revealed by such datasets, i.e., enhanced warming rates over the northern high latitudes and the “warming hole” over the central U.S., are still under debate. Here we show these regional contrasts depend on the calculation methods of Tm. Existing global analyses calculate Tm from daily minimum and maximum temperatures (T2). We found that T2 has a significant standard deviation error of 0.23 °C/decade in depicting the regional warming rate from 2000 to 2013 but can be reduced by two-thirds using Tm calculated from observations at four specific times (T4), which samples diurnal cycle of land surface air temperature more often. From 1973 to 1997, compared with T4, T2 significantly underestimated the warming rate over the central U.S. and overestimated the warming rate over the northern high latitudes. The ratio of the warming rate over China to that over the U.S. reduces from 2.3 by T2 to 1.4 by T4. This study shows that the studies of regional warming can be substantially improved by T4 instead of T2.
机译:地表平均气温(Tm)的全球分析是气候变化研究的关键数据集,并为全球变暖提供了基础证据。然而,由此类数据集揭示的升温速率存在区域差异的原因,即北部高纬度地区的升温速率增加和美国中部地区的“升温洞”仍在争论中。在这里,我们显示这些区域差异取决于Tm的计算方法。现有的全局分析根据每日的最低和最高温度(T2)计算Tm。我们发现,T2在描绘2000年至2013年的区域升温速率时具有0.23°C /十年的显着标准偏差,但使用根据四个特定时间(T4)的观测值计算的Tm可以将T2降低三分之二。陆地表面空气温度循环更频繁。从1973年到1997年,与T4相比, T 2 大大低估了美国中部的升温速率,而高估了北部高纬度地区的升温速率。中国对美国的升温速度比例从 T 2 的2.3降低到 T 4的1.4的比例。 em>。这项研究表明,使用 T 4 代替 T 2 可以大大改善区域变暖的研究。

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