期刊文献+

北京市2013年1月一次空气重污染过程分析 被引量:6

Analysis about the Characteristics and Formation Mechanism of a Serious Pollution Event in January 2013 in Beijing
下载PDF
导出
摘要 采用数值模式与观测资料相结合的方式,对北京市2013年1月9~15日一次空气重污染过程的大气环境背景、气象条件和形成原因进行了初步分析。结果表明,此次重污染过程北京市空气质量从9日的二级跳至10日五级重度污染,11日一13日空气质量维持连续3d严重污染,14日降为重度污染,15日转为轻度污染;重污染过程期间10—14日P(PM2.5)平均值为323μg/m。,平均风速为1.47m/s,平均相对湿度为73.6%,24h变温基本为一2.72~2.68℃,24h平均变压为一3.65~2.63hPa。指出,此次重污染过程与当地气象条件密切相关,稳定的大气环流形势为污染的持续提供了大气环流背景,风速较小、湿度较大、边界层较低、持续逆温是造成重污染的主要原因,地面风场辐合及边界层下沉运动是造成重污染的重要原因。 In this paper, the meteorology of a typical air pollution episode in Beijing City was investigated by combining observed data and the WRF meteorology model from January 9 th to 15 th ,2013. The weather conditions, atmospheric environmental back- ground and mechanism of formation about this heavy air pollution were all analyzed. The results showed that during this serious air pollution incident, the air quality index in Beijing jumped to the level five from 9th to l Oth,maintained level six from 1 lth to 13th, reduced to level five in 14th and ended in 15th with level three. The average concentration of PM2.5 was 323μg/m^3 from January 10th to 14th ; the ground meteorological elements characterized mainly as average wind (1.47m/s) , average humidity(73.6% ) , 24 h average temperature transformer( - 2.72 - 2.68℃ ) and 24 h average pressure transformer( - 3.65 - 2.63 hPa). The situation was closely related to the local meteorological conditions; the stable atmospheric circulation continuously provided favorable environmental field for this heavy air pollution. Small wind speed, high humidity, low PBL, lasting inversion layer were the main reasons for this heavy air pollution incident and ground wind convergence, sinking motion in the boundary layer were the important causes of this heavy air pollution incident.
出处 《环境监控与预警》 2014年第5期36-40,共5页 Environmental Monitoring and Forewarning
关键词 重污染 可人肺颗粒物 天气预报模式 逆温 北京市 Serious pollution WRF Inversion Beijing
  • 相关文献

参考文献19

二级参考文献164

共引文献852

同被引文献70

  • 1马雁军,刘宁微,王扬锋.辽宁中部城市群大气污染分布及与气象因子的相关分析[J].气象科技,2005,33(6):527-532. 被引量:35
  • 2白晓平,李红,方栋,胡非,Francesca Costabile,王芬娟.资料同化在空气质量预报中的应用[J].地球科学进展,2007,22(1):66-73. 被引量:9
  • 3马雁军,刘宁微,王扬锋.辽宁冬季城市空气质量分布状况综合研究[J].气象与环境学报,2007,23(3):15-18. 被引量:21
  • 4中华人民共和国环境保护部.2013年中国环境状况公报[EB/OL].http://jcs.mep.gov.cn/hjzL/zkgb/,2014-06-07.
  • 5StraifK,CohenA,SametJ.AirPollutionandCancer.(IARCScientificPublicationNo.161) [EB/OL].[2014-03-07].http: //www. iarc. fr/en/ publications/books/sp161/index.php.
  • 6SametJM,GruskinS.Airpollution,health,andhumanrights[J].LancetRespirMed,2015,3(2):98-100.
  • 7MangiaC, CervinoM, GianicoloEA.SecondaryParticulateMatterOriginatingfrom anIndustrialSourceandItsImpactonPopulationHealth[J].IntJEnvironResPublicHealth,2015,12(7):7667-7681.
  • 8中华人民共和国环境保护部.HJ633-2012环境空气质量指数(AQI) 技术规定(试行) [S].2012.
  • 9MohanM,KandyaA.AnanalysisoftheannualandseasonaltrendsofairqualityindexofDelhi[J].EnvironMonitAssess,2007,131(1-3):267-277.
  • 10JenniferBurney,VRamanathan.RecentclimateandairpollutionimpactsonIndianagriculture[J].ProcNatlAcadSciUSA,2014,111(46):16319-16324.

引证文献6

二级引证文献41

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部