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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Temporal disparity of the atmospheric systems contributing to interannual variation of wintertime haze pollution in the North China Plain
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Temporal disparity of the atmospheric systems contributing to interannual variation of wintertime haze pollution in the North China Plain

机译:大气系统的时间差异导致北方冬季雾度污染依际变化

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Previous studies indicated that the meridional (northerly or southerly) wind anomalies over East China play an important role in modulating interannual variation of the winter haze pollution in the North China Plain (NCP) mainly via changing surface wind speed and humidity. Here, we report that the factors for the formation of the meridional wind anomalies over East China related to interannual variation of winter haze pollution experienced a significant interdecadal change around the mid-1990s. Before the mid-1990s, two upstream atmospheric wave trains contribute to generation of the meridional wind anomalies over East China via inducing significant geopotential height anomalies over northeast Asia. The first occurred over mid-latitude Eurasia and propagated eastward into East Asia, resembling the East Atlantic-west Russia (EAWR) pattern. The second propagated eastward along the subtropical Asian jet. Furthermore, during this period, the change in the intensity of East Asian trough (EAT) was closely linked with interannual variation of the winter haze variation in the NCP. By contrast, after the mid-1990s, the atmospheric wave train along the Asian subtropical jet was not observed. Furthermore, the connection between the EAT intensity and the winter time NCP haze variation was weak. The mid-latitude EAWR-like pattern and the El Nino-Southern Oscillation-related sea surface temperature anomalies in the tropical Pacific were possible factors that explain the meridional wind anomalies over East China. Understanding the change in the atmospheric anomalies contributing to interannual variation of the haze is essential for the prediction of haze in the NCP.
机译:以前的研究表明,华东地区的经纪(北部或南部或南部)风异常在调节华北平原(NCP)的冬季阴​​霾污染的际变化主要通过改变表面风速和湿度来发挥重要作用。在这里,我们报告说,在20世纪90年代中期,华东地区与华东地区的经络异常形成有关的因素有关差异的跨国内部变化。在20世纪90年代中期之前,两个上游大气波动列车通过在东北亚的大型地球势高度异常诱导东部地区的经济风异常的产生贡献。第一次发生在中纬度欧亚亚洲,以东向东传播到东亚,类似于东大西洋西俄罗斯(EAWR)模式。第二次沿着亚热带亚洲射流向东传播。此外,在此期间,东亚槽强度(吃)的变化与NCP中冬季雾度变化的续变性密切相关。相比之下,在20世纪90年代中期之后,未观察到沿着亚洲亚热带射流的大气波列车。此外,Eat强度与冬季时间NCP雾度变化之间的连接较弱。热带太平洋的中纬eawr样式和埃尔尼诺震荡相关的海表面温度异常是可能的因素,解释了华东地区的子午线异常。了解有助于雾度依地变化的大气异常的变化对于NCP中的雾度预测是必不可少的。

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