Allaart M A F, Kelder H, Heijboer L C.1993.On the relation between ozone and potential vorticity [J].Geophys.Res.Lett., 20 (9): 811-814.
[2]
Carrier M, Zou X, Lapenta M.2007.Identifying cloud-uncontaminated AIRS spectra from cloudy FOV based on cloud-top pressure and weighting functions [J].Mon.Wea.Rev., 135: 2278-2294.
[3]
Danielsen E F.1968.Stratospheric-tropospheric exchange based on radio-activity, ozone, and potential vorticity [J].J.Atmos.Sci., 25: 673-688.
[4]
Davis C, Low N S, Shapiro M A, et al.1999.Direct retrieval of wind from Total Ozone Mapping Spectrometer (TOMS) data: Examples from FASTEX [J].Quart.J.Roy.Meteor.Soc., 125: 3375-3391.
[5]
Folkins I, Appenzeller C.1996.Ozone and potential vorticity at the subtropical tropopause break [J].J.Geophys.Res., 101 (D13): 18787-18792.
[6]
郭栋, 周秀骥, 刘煜, 等.2012.南亚高压对青藏高原臭氧谷的动力作用[J].气象学报, 70 (6): 1302-1311.Guo Dong, Zhou Xiuji, Liu Yu, et al.2012.The dynamic effects of the South Asian high on the ozone valley over the Tibetan Plateau [J].Acta Meteorologica Sinica (in Chinese), 70 (6): 1302-1311.
[7]
郭世昌, 常有礼, 张利娜.2007.北半球中纬度地区大气臭氧的年际和年代际变化研究 [J].大气科学, 31 (3): 418-424.Guo Shichang, Chang Youli, Zhang Li\'na.2007.Research on the interannual and interdecadal variations of the atmospheric ozone in the middle latitude region of the Northern Hemisphere [J].Chinese Journal of Atmospheric Sciences (in Chinese), 31 (3): 418-424.
[8]
Jang K-I, Zou X, De Pondeca M S F V, et al.2003.Incorporating TOMS ozone measurements into the prediction of the Washington, D.C., winter storm during 24-25 January 2000 [J].J.Appl.Meteor., 42: 797-812.
[9]
江芳, 王维和, 王咏梅, 等.2012.FY-3气象卫星紫外臭氧总量探测仪辐亮度在轨定标与反演结果分析.地球物理学报, 55 (3): 760-767.Jiang Fang, Wang Weihe, Wang Yongmei, et al.2012.Calibration in-orbit and retrieval result study of FY-3 Total Ozone Unit (TOU) [J].Chinese Journal of Geophysics (in Chinese), 55 (3): 760-767.
[10]
Jiang X, Steven P, Charles D, et al.2008.Interannual variability and trends of extratropical ozone.Part I: Northern Hemisphere [J].J.Atmos.Sci., 65: 3013-3029.
[11]
Lanzante J R.1996.Resistant, robust and nonparametric techniques for the analysis of climate data: Theory and examples, including applications to historical radiosonde station data [J].Int.J.Climatol., 16: 1197-1226.
[12]
Li J, Zou X.2013.A quality control procedure for FY-3A MWTS measurements with emphasis on cloud detection using VIRR cloud fraction [J].J.Atmos.Oceanic Technol., 30: 1704-1715.
[13]
刘年庆, 黄富祥, 王维和.2011.2011年春季北极地区臭氧低值事件的卫星遥感监测 [J].科学通报, 56 (27): 2315-2318.Liu Nianqing, Huang Fuxiang, Wang Weihe.2011.Monitoring of the 2011 spring low ozone events in the Arctic region [J].Chinese Science Bulletin (in Chinese), 56 (27): 2315-2318.
[14]
Normand C.1953.Atmospheric ozone and the upper-air conditions [J].Quart.J.Roy.Meteor.Soc., 79: 39-50.
[15]
Ohring G, Muench H S.1960.Relationships between ozone and meteorological parameters in the lower stratosphere [J].J.Atmos.Sci., 17: 195-206.
[16]
Qin Z, Zou X, Li G, et al.2010.Quality control of surface station temperature data with non-Gaussian observation minus background distributions [J].J.Geophys.Res., 115: D16312, doi: 10.1029/2009JD013695.
[17]
Shapiro M A, Krueger A J, Kennedy P J.1982.Nowcasting the position and intensity of jet streams using a satellite-borne total ozone mapping spectrometer [M]//Nowcasting.San Diego: Academic Press, 137-145.
[18]
Tian B, Yung Y L, Waliser D E, et al.2007.Intr?浳敥瑡敳潯牮潡汬漠杶楡捲慩污?獩慯瑮敳氠汯楦琠整?潥映??桯楰湩慣?孬?嵴??捡瑬愠??敯瑮敥漠牡潮汤漠杴楨捥慩?匠楣湯楮据慥??楩湯??桴楯渠整獨敥????????????ち???び???扬牡?婩潯畮?塛??圮畇?奯??べび??佥湳?瑌桥整?爮攬氠愳琴椺漠湌猰核椷瀰?戬攠瑤睯敩攺渠?吰漮琱愰氲?伯稲漰渰攷??愰瀲瀹椴渵朱?匼灢敲挾瑖牡潵浧敨瑡敮爠??吠佐?卩??漠穊漠湄攮?愹渹搱?桏畮爠牴楨捥愠湲敥獬?孴?嵯????数漠灢桥祴獷?剥敮猠?????????の?ㄠち???摭潥楴???は??で????そ????ひぴ?お????戮牍?婴潥畯?堮??婣攮測朠?娱?呼??????焱甲愹永椮琼祢?挾澋溚環爬漠汔?烃爬漠捈攪擨甮爲攰‰昶漮爗€?债叹?牂慶擘椖濊?濹挊揹畁求琯愋瑳楁潂渺?擭愧瓘愖?孱?崠????攧演烑桦礬猠?到攠猨???ㄠ??????特?????搠潇楥???と???㈠???で????へど?????en Hongbin.2006.Variation of the tropopause height and its influence on ozone variation in upper troposphere/lower stratosphere over Beijing [J].Chinese Journal of Atmospheric Sciences (in Chinese), 30 (4): 587-595.
[19]
王维和, 张兴赢, 安兴琴, 等.2010.风云三号气象卫星全球臭氧总量反演和真实性检验结果分析 [J].科学通报, 55 (17): 1726-1733.Wang Weihe, Zhang Xingying, An Xingqin, et al.2010.Analysis for retrieval and validation results of FY-3 total ozone unit (TOU) [J].Chinese Science Bulletin (in Chinese), 55 (17): 1726-1733.
[20]
王维和, 张艳, 李晓静, 等.2011.2011年春季北极臭氧异常低值监测和特征分析 [J].极地研究, 23 (4): 310-317.Wang Weihe, Zhang Yan, Li Xiaojing, et al.2011.Monitoring results and analysis of anomalously low ozone in the 2011 Arctic spring [J].Chinese Journal of Polar Research (in Chinese), 23 (4): 310-317.
[21]
王咏梅, 王英鉴, 王维和, 等.2009.FY-3卫星紫外臭氧总量探测仪 [J].科学通报, 54 (23): 3778-3783.Wang Yongmei, Wang Yingjian, Wang Weihe, et al.2009.FY-3 satellite ultraviolet total ozone unit [J].Chinese Science Bulletin (in Chinese), 54 (23): 3778-3783.
[22]
Wang H, Zou X, Li G.2012.An improved quality control for AIRS total column ozone observations within and around hurricanes [J].J.Atmos.Oceanic Technol., 29: 417-432.
[23]
Wu Y, Zou X.2008.Numerical test of a simple approach for using TOMS total ozone data in hurricane environment [J].Quart.J.Roy.Meteor.Soc., 134: 1397-1408.
[24]
Xu Z, Wang Y, Fan G.2013.A two-stage quality control method for 2-m temperature observations using biweight means and a progressive EOF analysis [J].Mon.Wea.Rev., 141: 798-808.
[25]
杨军, 董超华, 卢乃锰, 等.2009.中国新一代极轨气象卫星——风云三号 [J].气象学报, 67 (4): 501-509.Yang Jun, Dong Chaohua, Lu Naimeng, et al.2009.FY-3A: the new generation polar-orbiting