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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Inter-annual variation of the spring haze pollution over the North China Plain: Roles of atmospheric circulation and sea surface temperature
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Inter-annual variation of the spring haze pollution over the North China Plain: Roles of atmospheric circulation and sea surface temperature

机译:春季雾霾污染的年度变异污染北方平原:大气循环和海面温度的作用

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Haze pollution is a serious air quality issue in China. Previous studies over the North China Plain (NCP) mainly focused on analysing the haze during boreal winter. However, the variation in haze during spring and the related factors remain unclear. This study investigates inter-annual variation of the spring haze, which is represented by the humidity-corrected dry extinction coefficient (DEC) over the NCP. During high DEC years, pronounced positive DEC anomalies appear over the NCP and its surrounding regions. Correspondingly, a notable anticyclonic anomaly is observed over Northeast Asia, inducing significant southeasterly wind anomalies over the NCP. The anomalous southeasterly winds reduce wind speed and increase relative humidity, which provides favourable meteorological conditions for accumulation and growth of aerosol pollutants. Further analysis shows that the North Atlantic Oscillation (NAO) contributes to the formation of anticyclonic anomalies over Northeast Asia via downstream propagating atmospheric wave trains. Additionally, positive sea surface temperature (SST) anomalies over the subtropical northeastern Atlantic Ocean may also impact the DEC variation. The linear barotropic model experiment further confirms the important role of subtropical northeastern Atlantic SST anomalies in contributing to the anomalous anticyclone over Northeast Asia and southerly wind anomalies over the NCP region, which are triggered via eastwards propagating atmospheric wave trains. This study gives support to the idea that the NAO and the North Atlantic SST may be potential predictors for the frequently observed springtime NCP haze variation.
机译:阴霾污染是中国的严重空气质量问题。以前对华北平原(NCP)的研究主要集中在北冬河冬季期间分析阴霾。然而,春季期间的雾度和相关因素的变化仍然不清楚。本研究调查了弹簧雾霾的年间变化,其由NCP的湿度校正的干燥消光系数(DEC)表示。在十年的高度期间,明显的阳性DED异常出现在NCP及其周边地区。相应地,在东北亚观察到一个值得注意的反气旋异常,在NCP上诱导东南大风异常。异常的东南风减小风速并增加相对湿度,为气溶胶污染物的积累和生长提供了有利的气象条件。进一步的分析表明,北大西洋振荡(NAO)通过下游传播大气波列车促进东北亚的反循环异常的形成。此外,亚热带东北大西洋上的正海表面温度(SST)异常也可能影响DEC变异。线性波波波特模型实验进一步证实了亚热带东北大西洋SST异常在东北亚的异常反周气通物中的重要作用,并通过EASEWARD宣传大气波列触发了NCP地区的南风异常。这项研究提供了支持NAO和北大西洋SST可能是频繁观察到的春天NCP雾度变化的潜在预测因子。

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