Browning K A. 1999. Mesoscale aspects of extratropical cyclones: An observational perspective. // Shapiro MA, Grns S eds. The Lifecycles of Extratropical Cyclones. Amer. Meteor. Soc., 265-283.
[2]
Chen L Q, Chen S J, Zhou X S, et al. 2005. A numerical study of the MCS in a cold vortex over northeastern China. Acta Meteorologica Sinica (in Chinese), 63(2): 173-183.
[3]
Chen W X, Wang J, Liu W. 1999. Analysis of the microphysical precipitation mechanism for a cold vortex process. Quarterly Journal of Applied Meteorology (in Chinese), 10(2): 190-198.
[4]
Ding Z Y, Liu C H, Shen X Y. 2011. Statistical analysis of the relationship among warm sector heavy rainfall, upper and lower tropospheric jet stream and South Asia high in may and June from 2005 to 2008. Journal of Tropical Meteorology (in Chinese), 27(3): 307-316.
[5]
He J H, Wu Z W, Jiang Z H, et al. 2007. "Climate effect" of the northeast cold vortex and its influences on Meiyu. Chinese Science Bulletin, 51(5): 671-679.
[6]
Holton J R, Haynes P H, McIntyre M E, et al. 1995. Stratosphere-troposphere exchange. Rev. Geophys., 33(4): 403-439.
[7]
Holton J R. 2004. An Introduction to Dynamic Meteorology (Fourth Edition). Burlington, MA: Elsevier Academic Press.
[8]
Homeyer C R, Bowman K P, Pan L L, et al. 2011. Convective injection into stratospheric intrusions. J. Geophys. Res., 116, D23304, doi: 10.1029/2011JD016724.
[9]
Livesey N J, Read W G, Froidevaux L. 2011. Earth Observing System (EOS) Aura Microwave Limb Sounder (MLS) Version 3. 3 Level 2 data quality and description document, Tech. Rep. D-33509, NASA Jet Propulsion Laboratory California Institute of Technology, Pasadena, California.
[10]
Zhang L X. 2008. A study on MCS in cold vortex over Northeast China [Ph. D. thesis] (in Chinese). Nanjing: Nanjing University of Information Science and Technology.
[11]
Zheng X Y, Zhang Y Z, Bai R H. 1992. The Rainstorm in Northeast China (in Chinese). Beijing: China Meteorological Press.
[12]
Bai R H, Sun Y G. 1997. The background analysis study of meso scale weather of the cold vortex in northeast China. Heilongjiang Meteorology (in Chinese), (3): 6-8.
[13]
Bjerknes J, Solberg H. 1922. Life cycle of cyclones and the polar front theory of atmospheric circulation. Geophys. Publ., 3(1): 1-18.
[14]
Martin J E. 1998. The structure and evolution of a continental winter cyclone. Part I: Frontal structure and the occlusion process. Mon. Wea. Rev., 126: 303-328.
[15]
Miao C S, Wu Z W, He J H, et al. 2006. The anomalous features of the Northeast cold vortex during the first flood period in the last 50 years and its correlation with rainfall in South China. Chinese Journal of Atmospheric Sciences (in Chinese), 30(6): 1249-1256.
[16]
Neiman P J, Shapiro M A. 1993a. The life cycle of an extratropical marine cyclone. Part I: Frontal-cyclone evolution and thermodynamic air-sea interaction. Mon. Wea. Rev.,121(8): 2153-2176.
[17]
Neiman P J, Shapiro M A, Fedor L S. 1993b. The life cycle of an extratropical marine cyclone. Part II: Mesoscale structure and diagnostics. Mon. Wea. Rev., 121(8): 2177-2199.
[18]
Olsen M A, Douglass A R, Newman P A, et al. 2008. HIRDLS observations and simulation of a lower stratospheric intrusion of tropical air to high latitudes. Geophys. Res. Lett.,35, L21813, doi: 10.1029/2008GL035514.
[19]
Posselt D J, Stephens G L, Miller M, et al. 2008. CloudSat: Adding a new dimension to a classical view of extratropical cyclones. Bull. Amer. Meteor. Soc., 89(5): 599-609.
[20]
Qi Y B, Guo X L, Jing D Z. 2007. An observational study of Macro/Microphysical structures of convective rainbands of a cold vortex over Northeast China. Chinese Journal of Atmospheric Sciences (in Chinese), 31(4): 621-634.
[21]
Shapiro M A. 1980. Turbulent mixing within tropopause folds as a mechanism for the exchange of chemical constituents between the stratosphere and troposphere. J. Atmos. Sci., 37(5): 994-1004.
[22]
Shapiro M A, Keyser D. 1990. Fronts, jet streams, and the tropopause. // Newton C W, Halopainen E O. Extratropical Cyclones, The Erik Palmen Memorial Volume. Amer. Meteor. Soc., 167-191.
[23]
Shi C H, Li H, Zheng B, et al. 2013. An atypical cold vortex structure and its precipitation over Northeast China based on Cloudsat detection. Chinese J. Geophys. (in Chinese), 56(8): 2594-2602, doi: 10.6038/cjg20130809.
[24]
Stephens G L, Vane D G, Boain R J, et al. 2002. The Cloudsat mission and the a-train: A new dimension of Space-Based observations of clouds and precipitation. Bull. Amer. Meteor. Soc., 83(12): 1771-1790.
[25]
Weigel K, Hoffmann L, Gunther G. 2012. A stratospheric intrusion at the subtropical jet over the Mediterranean Sea: air-borne remote sensing observations and model results. Atmos. Chem. Phys., 12: 8423-8438.
[26]
Xia R D, Zhao S X. 2009. Diagnosis and modeling of meso-B-scale systems of heavy rainfall in warm sector ahead of front in South China (middle part of Guangdong Province) in June 2005. Chinese Journal of Atmospheric Sciences (in Chinese), 33(3): 468-488.
[27]
Zhong S X. 2011. Structural features of cold vortex and its formation mechanism of heavy rainfall over Northeast China [Ph. D. thesis] (in Chinese). Beijing: Chinese Academy of Meteorological Sciences.
[28]
Zhu Q W, Huang X J, Liu S. 1997. The evolution characteristics of large-scale circulation and system configuration relations in cold vortex over Northeast China (in Chinese). //The Study Series of Cold Vortex over Northeast China. Shenyang: Liaoning Press, 14-29.