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Increasing persistent haze in Beijing: potential impacts of weakening East Asian winter monsoons associated with northwestern Pacific sea surface temperature trends

机译:增加北京持久雾霾:弱化东亚冬季季风与西北太平洋海洋表面温度趋势的潜在影响

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Over the past decades, Beijing, the capital city of China, has encountered increasingly frequent persistent haze events?(PHE). While the increased pollutant emissions are considered as the most important reason, changes in regional atmospheric circulations associated with large-scale climate warming also play a role. In this study, we find a significant positive trend of PHE in Beijing for the winters from 1980 to 2016 based on updated daily observations. This trend is closely related to an increasing frequency of extreme anomalous southerly episodes in North China, a weakened East Asian trough in the mid-troposphere and a northward shift of the East Asian jet stream in the upper troposphere. These conditions together depict a weakened East Asian winter monsoon (EAWM) system, which is then found to be associated with an anomalous warm, high-pressure system in the middle–lower troposphere over the northwestern Pacific. A practical EAWM index is defined as the seasonal meridional wind anomaly at 850hPa in winter over North China. Over the period 1900–2016, this EAWM index is positively correlated with the sea surface temperature anomalies over the northwestern Pacific, which indicates a wavy positive trend, with an enhanced positive phase since the mid-1980s. Our results suggest an observation-based mechanism linking the increase in PHE in Beijing with large-scale climatic warming through changes in the typical regional atmospheric circulation.
机译:在过去几十年中,中国首都中国北京遇到了越来越频繁的持久性阴霾事件?(PHE)。虽然增加的污染物排放被视为最重要的原因,但与大规模气候变暖有关的区域大气循环的变化也起到了作用。在这项研究中,根据最新的日常观察,我们从1980年到2016年北京北京北京的Phe积极趋势。这种趋势与华北地区极端异常南部剧集的频率增加密切相关,在对流层中层的弱化东亚槽中,东亚喷射流在上层对流层的北方。这些条件一起描绘了弱化的东亚冬季季风(EAWM)系统,然后发现与西北太平洋西北地区中下层对流层中下层对流层中的异常温暖的高压系统相关。实际的EAWM指数被定义为850HPA在华北地区的季节性化学风异常。在1900-2016期间,该eAWM指数与西北太平洋的海面温度异常正相关,这表明波浪正趋势,自20世纪80年代中期以来的阳性阶段增强。我们的研究结果表明,一种基于观察机制,这些机制与北京的PHE增加,通过典型的区域大气循环的变化进行了大规模的气候变暖。

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