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Trends in seasonal warm anomalies across the contiguous United States: Contributions from natural climate variability

机译:连续美国各地季节性暖异常的趋势:自然气候变化的贡献

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摘要

Many studies have shown the importance of anthropogenic greenhouse gas emissions in contributing to observed upward trends in the occurrences of temperature extremes over the U.S. However, few studies have investigated the contributions of internal variability in the climate system to these observed trends. Here we use daily maximum temperature time series from the North American Land Data Assimilation System Phase 2 (NLDAS-2) dataset to identify trends in seasonal warm anomalies over the contiguous U.S. in the three most recent decades and explore their relationships to low-frequency modes of internal climate variability. The results reveal substantial upward trends in the frequency of warm anomalies in all seasons and in all regions of the U.S., except for portions of the Intermountain West in winter where significant downward trends occur. The strengths and regional coverage of the trends, however, differ considerably by season. These trends can be explained, in part, by the large-scale anomalous atmospheric circulations associated with low-frequency sea-surface temperature oscillations characterized by the Pacific Decadal Oscillation (PDO) and the Atlantic Multidecadal Oscillation (AMO). The association between the upward trends in the seasonal warm anomalies and PDO and AMO is further confirmed by the century-long (1871–2012) Twentieth Century Reanalysis dataset.
机译:许多研究表明,人为排放的温室气体对于促进美国极端温度事件的上升趋势具有重要意义。然而,很少有研究调查气候系统内部变化对这些观测趋势的影响。在这里,我们使用来自北美土地数据同化系统第2阶段(NLDAS-2)数据集的每日最高温度时间序列,来确定最近三个十年来美国连续性地区季节性暖异常的趋势,并探讨它们与低频模式的关系。内部气候多变性。结果揭示了美国所有季节和所有地区暖异常频率的显着上升趋势,除了冬季冬季山间西部的部分发生明显的下降趋势外。但是,趋势的优势和区域覆盖范围因季节而异。这些趋势可以部分地由与低频海面温度振荡有关的大规模异常大气环流来解释,其特征是太平洋年代际振荡(PDO)和大西洋多年代际振荡(AMO)。长达一个世纪(1871-2012年)的二十世纪再分析数据集进一步证实了季节性暖异常的上升趋势与PDO和AMO之间的关联。

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