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A study of the meteorological causes of a prolonged and severe haze episode in January 2013 over central-eastern China

机译:2013年1月中东部地区长期严重雾霾天气的气象原因研究

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摘要

This paper employs meteorological observation data from surface and high-balloon stations, China Meteorological Administration (CMA) model T639 output data, NCEP reanalysis data, PM_(2.5) observations and modeled HYSPLIT4 trajectory results to study the meteorological causes, including large-scale circulation and planetary boundary layer features, which led to the extended haze episode on January 6-16, 2013 in central-eastern China. It discusses the possible impact of pollutants transported from southern Hebei Province on Beijing. The study's results show that: (1) the re-adjustment of atmospheric circulation from a longitudinal to a latitudinal model provides a valuable interpretation of the large-scale circulation background to the haze episode experienced in the metropolitan regions of Beijing, Tianjin, Hebei and their surrounding regions; (2) the regional atmospheric stratification of the planetary boundary layer is stable and the mixing height is low, suppressing air turbulence in the planetary boundary layer and providing favorable meteorological conditions for the formation of haze; and (3) the southwesterly jet stream with wind speeds of 6-11 m/s at a height of 850-950 hPa and the below-700 m air mass trajectory tracking established using the HYSPLIT4 model interdependently suggest a transport of pollutants from southern Hebei Province to Beijing at 850-950 hPa.
机译:本文利用地表和高气球站的气象观测数据,中国气象局(CMA)T639模型输出数据,NCEP再分析数据,PM_(2.5)观测结果和模拟的HYSPLIT4轨迹结果来研究包括大范围环流在内的气象原因和行星边界层特征,导致了2013年1月6日至16日在中国中东部地区的霾霾期延长。它讨论了从河北省南部运来的污染物对北京的可能影响。研究结果表明:(1)将大气环流从纵向模型重新调整为纬向模型,为北京,天津,河北和北京等大都市地区发生的霾事件的大规模环流背景提供了有价值的解释。他们的周边地区; (2)行星边界层的区域大气分层稳定,混合高度低,抑制了行星边界层的湍流,为雾霾的形成提供了有利的气象条件; (3)使用HYSPLIT4模型建立的西南风急流,风速为6-11 m / s,高度为850-950 hPa,空气质量轨迹跟踪为700 m以下,相互关联地表明了河北南部的污染物迁移在850-950 hPa到北京省。

著录项

  • 来源
    《Atmospheric environment》 |2014年第12期|146-157|共12页
  • 作者单位

    Institute of Atmospheric Composition, Key Laboratory of Atmospheric Chemistry of China Meteorological Administration (CMA), Chinese Academy of Meteorological Sciences (CAMS), Beijing 100081, China, Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters, Nanjing University of Information Science & Technology, Nanjing 210044, China;

    School of Environment, Tsinghua University, Beijing 100084, China, State Environmental Protection Key Laboratory of Sources and Control of Air Pollution Complex, Beijing 100084, China;

    Beijing Meteorological Bureau, Beijing 100089, China;

    Institute of Atmospheric Composition, Key Laboratory of Atmospheric Chemistry of China Meteorological Administration (CMA), Chinese Academy of Meteorological Sciences (CAMS), Beijing 100081, China;

    Institute of Atmospheric Composition, Key Laboratory of Atmospheric Chemistry of China Meteorological Administration (CMA), Chinese Academy of Meteorological Sciences (CAMS), Beijing 100081, China;

    Institute of Atmospheric Composition, Key Laboratory of Atmospheric Chemistry of China Meteorological Administration (CMA), Chinese Academy of Meteorological Sciences (CAMS), Beijing 100081, China;

    Chinese Academy of Meteorological Sciences, CMA, Beijing 100081, China;

    Institute of Atmospheric Composition, Key Laboratory of Atmospheric Chemistry of China Meteorological Administration (CMA), Chinese Academy of Meteorological Sciences (CAMS), Beijing 100081, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Haze episode; PM_(2.5); Atmospheric circulation; Meteorological causes; Planetary boundary layer; Pollutant transport;

    机译:阴霾发作;PM_(2.5);大气环流;气象原因;行星边界层;污染物运输;

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