[1] 张义军, 周秀骥.雷电研究的回顾和进展.应用气象学报, 2006, 17(6): 829-834. http://qk.cams.cma.gov.cn/jams/ch/reader/view_abstract.aspx?file_no=200606130&flag=1
[2] Gremillion M S, Orville R E.Thunderstorm characteristics of cloud-to-ground lightning at the Kennedy Space Center, Florida :A study of lightning initiation signatures as indicated by the WSR-88D.Wea Forecasting, 1999, 14:640-649. doi:  10.1175/1520-0434(1999)014<0640:TCOCTG>2.0.CO;2
[3] Hondl K D, Eilts M D.Doppler radar signatures of developing thunderstorms and their potential to indicate the onset of cloud-to-ground lightning.Mon Wea Rev, 1994, 122:1818-1836. doi:  10.1175/1520-0493(1994)122<1818:DRSODT>2.0.CO;2
[4] Brandon R Vincent, Lawrence D Carey, Douglas Schneider, et al.Using WS R-88D reflectivity for the prediction of cloudto-ground lightning : A central north Carolina study.National Weather Digest, 2003, 27: 35-44. http://cstar.cestm.albany.edu/nrow/nrow5/NROW5_pres/NROW_lightning_schneider.ppt
[5] Maribel Martinez. The Relationship between Radar Reflectivity and Lightning Activity at Initial Stages of Convective Storms. American Meteorological Society, 82nd Annual Meeting, First Annual Student Conference, Orlando, Florida, 2002.
[6] 王飞, 张义军, 赵均壮, 等.雷达资料在孤立单体雷电预警中的初步应用.应用气象学报, 2008, 19(2) : 153-160. http://qk.cams.cma.gov.cn/jams/ch/reader/view_abstract.aspx?file_no=20080228&flag=1
[7] Chiu Chinshan.Numerical study of cloud electrification in an axisymmetric, time-dependent cloud model.J Geohpys Res, 1978, 83: 5025-5049. doi:  10.1029/JC083iC10p05025
[8] Takahashi T.Tunderstorm electrification-a numerical study.J Atmos Sci, 1984, 41: 2541-2558. doi:  10.1175/1520-0469(1984)041<2541:TENS>2.0.CO;2
[9] Rawlins F.A numerical study of thunderstorm electrification using a three dimensional model incorporating the ice phase.Q J Roy Meteor Soc, 1982, 108:779-800. doi:  10.1002/(ISSN)1477-870X
[10] Helsdon J H, Wu Jr G, Farley R D.An intracloud lightning parameterization scheme for a storm electrification model.J Geophys Res, 1992, 97: 5865-5884. doi:  10.1029/92JD00077
[11] Ziegler C L, Macgorman D R.Observed lightning morphology relative to modeled space charge an electric field distributions in a tornadic storm.J Atmos Sci, 1994, 51:833-851. doi:  10.1175/1520-0469(1994)051<0833:OLMRTM>2.0.CO;2
[12] 孙安平, 言穆弘, 张义军, 等.三维强风暴动力———电耦合数值模拟研究Ⅰ :模式及其电过程参数化方案.气象学报, 2002, 60(6): 722-731. http://www.cnki.com.cn/Article/CJFDTOTAL-QXXB200206009.htm
[13] 孙安平, 言穆弘, 张义军, 等.三维强风暴动力———电耦合数值模拟研究Ⅱ :电结构形成机制.气象学报, 2002, 60(6): 732-739. http://www.cnki.com.cn/Article/CJFDTOTAL-QXXB200206010.htm
[14] 谭永波.闪电放电与雷暴云电荷、电位分布相互关系的数值模拟.合肥:中国科学技术大学, 2006.
[15] Ziegler C L, Macgorman D R, Dye J E, et al. A model evaluation of non-inductive graupel-ice charging in the early electrification of a mountain thunderstorm.J Geophy Res, 1991, 96(D7):12833-12855. doi:  10.1029/91JD01246
[16] Gardiner B, Lamb D, Pitter R L, et al. Measurements of initial potential gradient and particle charges in a Montana summer thunderstorm.J Geophys Res, 1985, 90(D4):6079-6086. doi:  10.1029/JD090iD04p06079
[17] Hallett J, Saunders C P R. Charge separation associated with secondary ice crystal production. J Atmos Sci, 1979, 36(11): 2230-2235. doi:  10.1175/1520-0469(1979)036<2230:CSAWSI>2.0.CO;2