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合肥市霾天气变化特征及其影响因子 被引量:60

Long-term variation of haze phenomena in Hefei and its impact factors
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摘要 分别应用费希尔最优分割法和后向轨迹-聚类分析的方法分析了1965~2005年间合肥霾天气的气候变化特征,以及合肥霾天气发生频率与不同高度输送条件的关系.同时应用2001~2005年的资料分析了合肥霾的月、季分布特征及其与地面气象要素的关系.合肥各月平均霾日数呈W型分布,1月最多,8月最少,秋冬两季占全年霾日数的70%以上.41年来霾日数总体呈上升趋势,期间发生了3次跃变,分别在1978、1992和2005年,与我国社会经济发展的各个阶段相一致.霾的发生频率与边界层中上部气团来向关系不大,但与其移动速度关系密切.近地面不同来向的气团对应霾的发生频率明显不同,霾易于出现的气团在春、夏、冬季主要来自偏东方向,秋季主要为本地气团以及来自偏北方向的气团.小风、高湿和偏东风是产生霾的有利条件.随着空气污染加重,霾的出现频率升高,当空气质量为中度污染时,霾的出现频率达到75%;高质量浓度的PM10并不意味着有霾出现,反之亦然. The Fisher optimum separation method was used to analyze the hazy days and associated climate jumps in Hefei during the period from 1965 to 2005 and back-trajectory-cluster analysis was used to determine the effects of transport patterns at different heights on haze frequency. The monthly variation of hazy days and their relationships with surface meteorological parameters are analyzed with data from 2001 to 2005. The monthly variation of the hazy days shows a "W" pattern,with maxima in January,June and November,and minima in April and August. The number of hazy days in autumn and winter accounts for more than 70% of the annual hazy days. During those forty-one years,annual hazy days kept increasing with 3 climate jumps,which occurred in 1978,1992,2005,corresponding to different stages of Chinese economic development. The haze occurrence has little relationship with the direction of the back trajectory in the upper atmospheric boundary layer (ABL) (1000 m); however,it has close relationship with the direction of air mass in the lower ABL and with the length of the trajectory in the upper ABL. The air masses in the lower ABL with the highest haze occurrence are mainly from east in spring,summer and winter,and local,and north in autumn. The light wind,high humidity and easterly wind at the ground level are conducive to occurrence of haze. With the increase of PM10 concentration,the frequency of haze increases. The frequency of haze occurrence reaches 75% when the air quality is medium polluted. However,high PM10 concentration does not always mean haze nor vice versa.
出处 《环境科学学报》 CAS CSCD 北大核心 2010年第4期714-721,共8页 Acta Scientiae Circumstantiae
基金 国家自然科学基金资助项目(No. 40675002 40775010)~~
关键词 费希尔最优分割法 后向轨迹 聚类分析 气候跃变 影响因子 haze Fisher optimum separation method back-trajectory cluster analysis climate jump influencing factors
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  • 1Aditama T Y. 2000. Impact of haze from forest fire to respiratory health : Indonesian experience [ J ]. Respirology, (5) : 169-174. 被引量:1
  • 2Brankov E, Rao S T, Porter P S. 1998. A trajectory-clustering-correlation methodology for examining the long-range transport of air pollutants [ J]. Atmospheric Environment,32 (9) : 1525-1534. 被引量:1
  • 3Dorling S R, Davies T D, Pierce C E. 1992. Cluster-Analysis-A Technique for estimating the synoptic meteorological controls on air and precipitation chemistry-method and applications [ J ].Atmospheric Environment,26A (14) :2575-2581. 被引量:1
  • 4Doyle M, Dorling S. 2002. Visibility trends in the UK 1950-1997 [J]. Atmospheric Environment,36(19) :3161-3172. 被引量:1
  • 5Draxlcr R R. 2003. Evaluation of an ensemble dispersion calculation [J]. Journal of Applied Meteorology, 42(2) : 308-317. 被引量:1
  • 6段菁春,毕新慧,谭吉华,盛国英,傅家谟.广州灰霾期大气颗粒物中多环芳烃粒径的分布[J].中国环境科学,2006,26(1):6-10. 被引量:69
  • 7范引琪,李二杰,范增禄.河北省1960~2002年城市大气能见度的变化趋势[J].大气科学,2005,29(4):526-535. 被引量:121
  • 8胡荣章,刘红年,张美根,蒋维楣,张予燕.南京地区大气灰霾的数值模拟[J].环境科学学报,2009,29(4):808-814. 被引量:59
  • 9黄嘉佑编著..气象统计分析与预报方法[M].北京:气象出版社,2000:302.
  • 10Kerr R A. 1995. Study unveils climate cooling caused by pollutant haze [J]. Science,268(5215) :802. 被引量:1

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