中国激光, 2022, 49 (7): 0710002, 网络出版: 2022-03-02   

太原盆地霾日气溶胶垂直分布及气象要素分析 下载: 714次

Analysis of Aerosol Vertical Distribution Characteristics and Meteorological Elements of Haze Day in the Taiyuan Basin
作者单位
1 山西省气候中心,山西 太原 030002
2 山西省气象台,山西 太原 030002
3 大连市气象装备保障中心,辽宁 大连 116001
引用该论文

杨倩, 郭媛媛, 孙颖姝, 宋秀瑜, 米晓楠, 栾青, 赵永强, 李孟蔚. 太原盆地霾日气溶胶垂直分布及气象要素分析[J]. 中国激光, 2022, 49(7): 0710002.

Qian Yang, Yuanyuan Guo, Yingshu Sun, Xiuyu Song, Xiaonan Mi, Qing Luan, Yongqiang Zhao, Mengwei Li. Analysis of Aerosol Vertical Distribution Characteristics and Meteorological Elements of Haze Day in the Taiyuan Basin[J]. Chinese Journal of Lasers, 2022, 49(7): 0710002.

参考文献

[1] 徐祥德, 施晓晖, 张胜军, 等. 北京及周边城市群落气溶胶影响域及其相关气候效应[J]. 科学通报, 2005, 50(22): 2522-2530.

    Xu X D, Shi X H, Zhang S J, et al. The aerosol influence area of Beijing and surrounding cities and its related climate effects[J]. Chinese Science Bulletin, 2005, 50(22): 2522-2530.

[2] 吴兑, 吴晓京, 李菲, 等. 1951—2005年中国大陆霾的时空变化[J]. 气象学报, 2010, 68(5): 680-688.

    Wu D, Wu X J, Li F, et al. Temporal and spatial variation of haze during 1951—2005 in Chinese mainland[J]. Acta Meteorologica Sinica, 2010, 68(5): 680-688.

[3] Li W J, Zhang D Z, Shao L Y, et al. Individual particle analysis of aerosols collected under haze and non-haze conditions at a high-elevation mountain site in the North China Plain[J]. Atmospheric Chemistry and Physics, 2011, 11(22): 11733-11744.

[4] 孙强. 华北地区大气气溶胶光学特性的垂直分布研究[D]. 南京:南京信息工程大学,2014.

    SunQ. Vertical distribution of atmospheric aerosol optical properties on the North China Plain[D]. Nanjing: Nanjing University of Information Science & Technology, 2014.

[5] 徐俊杰, 卜令兵, 刘继桥, 等. 机载高光谱分辨率激光雷达探测大气气溶胶的研究[J]. 中国激光, 2020, 47(7): 0710003.

    Xu J J, Bu L B, Liu J Q, et al. Airborne high-spectral-resolution lidar for atmospheric aerosol detection[J]. Chinese Journal of Lasers, 2020, 47(7): 0710003.

[6] 张敏. 气溶胶垂直分布及对云相的影响[D]. 兰州:兰州大学,2018.

    ZhangM. Vertical distribution of aerosols and effects on cloud phase[D]. Lanzhou: Lanzhou University, 2018.

[7] 张小曳, 孙俊英, 王亚强, 等. 我国雾-霾成因及其治理的思考[J]. 科学通报, 2013, 58(13): 1178-1187.

    Zhang X Y, Sun J Y, Wang Y Q, et al. Factors contributing to haze and fog in China[J]. Chinese Science Bulletin, 2013, 58(13): 1178-1187.

[8] 冯新宇. 利用单颗粒气溶胶质谱仪(SPAMS)研究太原市冬季一次雾霾天气的污染特征及成因[J]. 环境化学, 2019, 38(1): 177-185.

    Feng X Y. Characteristics and formation mechanism of a haze event in the winter of Taiyuan investigated by single particle aerosol mass spectrometry(SPAMS)[J]. Environmental Chemistry, 2019, 38(1): 177-185.

[9] 李军霞. 山西地区气溶胶物理特性的飞机-地面观测研究[D]. 南京:南京信息工程大学,2015.

    LiJ X. Aircraft and ground-based measurements of aerosol physical properties over Shanxi area in China[D]. Nanjing: Nanjing University of Information Science & Technology, 2015.

[10] 李艳红, 赵彩萍, 荆肖军, 等. 太原地区灰霾天气特征及影响因子分析[J]. 气候与环境研究, 2014, 19(2): 200-208.

    Li Y H, Zhao C P, Jing X J, et al. Characteristics of dust haze in Taiyuan and its causative factors[J]. Climatic and Environmental Research, 2014, 19(2): 200-208.

[11] 张祚荣. 基于MODIS数据研究山西地区PM2.5浓度及其变化趋势[D]. 太原:山西大学,2019.

    ZhangZ R. Study of PM2.5 concentration and its change trend in Shanxi Province based on MODIS data[D]. Taiyuan: Shanxi University, 2019.

[12] 王天河, 孙梦仙, 黄建平. 中国利用星载激光雷达开展沙尘和污染研究的综述[J]. 大气科学学报, 2020, 43(1): 144-158.

    Wang T H, Sun M X, Huang J P. Research review on dust and pollution using spaceborne lidar in China[J]. Transactions of Atmospheric Sciences, 2020, 43(1): 144-158.

[13] Huang J P, Minnis P, Yi Y H, et al. Summer dust aerosols detected from CALIPSO over the Tibetan Plateau[J]. Geophysical Research Letters, 2007, 34(18): L18805.

[14] 罗卉卉, 陈臻懿, 张天舒, 等. 基于CALIPSO卫星和地面观测资料的气溶胶垂直分布对比[J]. 中国激光, 2019, 46(12): 1201003.

    Luo H H, Chen Z Y, Zhang T S, et al. Comparison of aerosol vertical distribution based on CALIPSO satellite and ground observation data[J]. Chinese Journal of Lasers, 2019, 46(12): 1201003.

[15] 于彩霞, 邓学良, 石春娥, 等. 基于CALIOP的安徽沿淮地区霾天气溶胶类型及垂直分布特征[J]. 环境科学学报, 2018, 38(4): 1317-1326.

    Yu C X, Deng X L, Shi C E, et al. The analysis of aerosol type and vertical distribution characteristics along Huaihe River based on CALIOP satellite measuring[J]. Acta Scientiae Circumstantiae, 2018, 38(4): 1317-1326.

[16] 杨昊, 谢晨波, 方志远, 等. 星-地激光雷达联合观测合肥地区的气溶胶垂直分布[J]. 中国激光, 2021, 48(1): 0110001.

    Yang H, Xie C B, Fang Z Y, et al. Joint observations of vertical distribution of aerosols in Hefei area by spaceborne and ground-based lidars[J]. Chinese Journal of Lasers, 2021, 48(1): 0110001.

[17] Omar A H, Winker D M, Vaughan M A, et al. The CALIPSO automated aerosol classification and lidar ratio selection algorithm[J]. Journal of Atmospheric and Oceanic Technology, 2009, 26(10): 1994-2014.

[18] 孙强, 范学花, 李艳伟. 2013年1月华北灰霾气溶胶光学特性的垂直分布[J]. 遥感学报, 2015, 19(3): 520-529.

    Sun Q, Fan X H, Li Y W. Vertical distribution of aerosol optical properties during hazy days in North China Plain in January 2013[J]. Journal of Remote Sensing, 2015, 19(3): 520-529.

[19] 高元官, 张凯, 王体健, 等. 广西北海涠洲岛春季大气颗粒物浓度特征及影响因素[J]. 环境科学, 2017, 38(5): 1753-1759.

    Gao Y G, Zhang K, Wang T J, et al. Concentration characteristics and influencing factors of atmospheric particulate matters in spring on Weizhou Island, Beihai, Guangxi Province[J]. Environmental Science, 2017, 38(5): 1753-1759.

杨倩, 郭媛媛, 孙颖姝, 宋秀瑜, 米晓楠, 栾青, 赵永强, 李孟蔚. 太原盆地霾日气溶胶垂直分布及气象要素分析[J]. 中国激光, 2022, 49(7): 0710002. Qian Yang, Yuanyuan Guo, Yingshu Sun, Xiuyu Song, Xiaonan Mi, Qing Luan, Yongqiang Zhao, Mengwei Li. Analysis of Aerosol Vertical Distribution Characteristics and Meteorological Elements of Haze Day in the Taiyuan Basin[J]. Chinese Journal of Lasers, 2022, 49(7): 0710002.

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