首页> 外文期刊>SIAM journal on applied dynamical systems >Possible influence of atmospheric circulations on winter haze pollution in the Beijing-Tianjin-Hebei region, northern China
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Possible influence of atmospheric circulations on winter haze pollution in the Beijing-Tianjin-Hebei region, northern China

机译:北方北京 - 河北地区冬季阴霾污染的大气循环可能影响

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摘要

Using the daily records derived from the synoptic weather stations and the NCEP/NCAR and ERA-Interim reanalysis data, the variability of the winter haze pollution (indicated by the mean visibility and number of hazy days) in the Beijing-Tianjin-Hebei (BTH) region during the period 1981 to 2015 and its relationship with the atmospheric circulations at middle-high latitude were analyzed in this study. The winter haze pollution in BTH had distinct inter-annual and inter-decadal variabilities without a significant long-term trend. According to the spatial distribution of correlation coefficients, six atmospheric circulation indices (I-1 to I-6) were defined from the key areas in sea level pressure (SLP), zonal and meridional winds at 850 hPa (U850, V850), geopotential height field at 500 hPa (H500), zonal wind at 200 hPa (U200), and air temperature at 200 hPa (T200), respectively. All of the six indices have significant and stable correlations with the winter visibility and number of hazy days in BTH. In the raw (unfiltered) correlations, the correlation coefficients between the six indices and the winter visibility (number of hazy days) varied from 0.57 (0.47) to 0.76 (0.6) with an average of 0.65 (0.54); in the high-frequency (< 10 years) correlations, the coefficients varied from 0.62 (0.58) to 0.8 (0.69) with an average of 0.69 (0.64). The six circulation indices together can explain 77.7% (78.7 %) and 61.7% (69.1 %) variances of the winter visibility and the number of hazy days in the year-to-year (inter-annual) variability, respectively. The increase in I-c (a comprehensive index derived from the six individual circulation indices) can cause a shallowing of the East Asian trough at the middle troposphere and a weakening of the Siberian high-pressure field at sea level, and is then accompanied by a reduction (increase) of horizontal advection and vertical convection (relative humidity) in the lowest troposphere and a reduced boundary layer height in BTH and its neighboring areas, which are favorable for the formation of haze pollution in BTH winter, and vice versa. The high level of the prediction statistics and the reasonable mechanism suggested that the winter haze pollution in BTH can be forecasted or estimated credibly based on the optimized atmospheric circulation indices. Thus it is helpful for government decision-making departments to take action in advance in dealing with probably severe haze pollution in BTH indicated by the atmospheric circulation conditions.
机译:利用从揭视天气站和NCEP / NCAR和ERA-Instim重新分析数据的日常记录,冬季阴霾污染的可变性(由北京 - 河北(Bth )在1981年至2015年期间,在本研究中分析了与中高纬度的大气循环的关系。 BTH的冬季阴霾污染在没有大量长期趋势的情况下具有明显的年度年度和二等际变量。根据相关系数的空间分布,六个大气循环指数(I-1至I-6)由海平面压力(SLP),Zonal和Periational Winds的关键区域,在850 HPA(U850,V850),地球势500 HPA(H500),Zonal Wind的高度场,200 HPA(U200),以及200 HPA(T200)的空气温度。所有六个指数都具有显着且稳定的相关性与BTH中的冬季可见度和朦胧日的数量。在原始(未过滤的)相关中,六个指数与冬季可见度之间的相关系数(朦胧的日子数)从0.57(0.47)到0.76(0.6)相同,平均为0.65(0.54);在高频(<10年)的相关性中,系数从0.62(0.58)到0.8(0.69)不同,平均为0.69(0.64)。六个流通指数共同解释77.7%(78.7%)和61.7%(69.1%)冬季知名度的差异,分别迄今为止(年间)变异性分别为七大朦胧日。 IC的增加(来自六个个人循环指标的综合指数)可能导致在对流层中间的东亚槽的浅发,海拔西伯利亚高压场的削弱,然后伴随着减少(增加)水平平流和垂直对流(相对湿度)在最低对流层中,BTH及其邻近地区的边界层高度降低,这有利于BTH冬季的雾度污染,反之亦然。预测统计数据和合理机制的高水平表明,可以根据优化的大气流通指数可靠地预测或估算BTH的冬季雾度污染。因此,有助于政府决策部门提前采取行动,以便在大气流通条件表明的BTH中的可能严重的阴霾污染。

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    Chinese Meteorol Adm Environm Meteorol Forecast Ctr Beijing Tianjin He Beijing 100089 Peoples R China;

    Chinese Meteorol Adm Environm Meteorol Forecast Ctr Beijing Tianjin He Beijing 100089 Peoples R China;

    Beijing Normal Univ State Key Lab Earth Surface Proc &

    Resource Ecol Beijing 100875 Peoples R China;

    Korea Polar Res Inst Inchon 406840 South Korea;

    Beijing Normal Univ State Key Lab Earth Surface Proc &

    Resource Ecol Beijing 100875 Peoples R China;

    Chinese Meteorol Adm Environm Meteorol Forecast Ctr Beijing Tianjin He Beijing 100089 Peoples R China;

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  • 正文语种 eng
  • 中图分类 动力系统理论;
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