邢唷>? \^?[欹O 餜bjbj1?2RS覈eS覈eR R 8$? " . + + + + + + +$*.?</+6  66/+4D+6F +6 +U(h? 郼蚮|(??Z+0??11 ?1?d6666666/+/+Vf666?66661666666666R l: Jianning SUNProfessor HYPERLINK "mailto:jnsun@nju.edu.cn" jnsun@nju.edu.cnEducation2006 Ph.D. in Meteorology, Nanjing University1994 M.Sc. in Atmospheric Physics and Atmospheric Environment, Nanjing University1986 B.Sc. in Atmospheric Physics, Nanjing UniversityWork Experience2007-current Professor, School of Atmospheric sciences, Nanjing University.2003-2007 Associate Professor, Department of Atmospheric sciences, Nanjing University.1994-2003 Lecturer, Department of Atmospheric sciences, Nanjing University.Research InterestsTheoretical, numerical, laboratory, and observational studies of boundary flows and turbulenceInteraction between atmospheric boundary layer and air pollution Teaching InterestsBoundary Layer Meteorology Turbulence in The Atmosphere Professional Affiliations燗ssociate燛ditor, Boundary-Layer Meteorology (2023 - 2026)燗ssociate燛ditor, ACTA AERODYNAMICA SINICA (2023 -)Selected PublicationsLi, T., M. Wang*, Z. Guo, B. Yang, Y. Xu, X. Han, and J. Sun*, 2022: An updated CLUBB PDF closure scheme to improve low cloud simulation in CAM6. Journal of Advances in Modeling Earth Systems, 14, e2022MS003127.Zou, J.*,燡. Sun*,燭. Li,燲. Han, Z. Xiang, and燡. Sha, 2021: Observed interactions among haze, fog and atmospheric燽oundary layer during a haze-fog episode in the Yangtze River Delta region, eastern China.燗erosol and Air Quality Research, 21(4), 200354.Dou, J., R. Bornstein, S. Miao, J. Sun, and Y. Zhang, 2020: Observation and simulation of a bifurcating thunderstorm in Beijing. Journal of Applied Meteorology and Climatology, 59(12), 2129-2148.Wang, L., D. Li, N. Zhang, J, Sun, and W. Guo, 2020: Surface urban heat and cool islands and their drivers: an observational study in Nanjing, China. Journal of Applied Meteorology and Climatology, 59(12), 1987-2000.Ding, Q., J. Sun*, X. Huang*, A. Ding, J. Zou, X. Yang, and C. Fu, 2019: Impacts of black carbon on the formation of advection杛adiation fog during a haze pollution episode in eastern China. Atmospheric Chemistry and Physics, 19, 7759?774.Shen, L., J. Sun, and R. Yuan, 2018: Idealized large-eddy simulation study of interaction between urban heat island and sea breeze circulations. Atmospheric Research, 214, 338-347.Zou, J., J. Sun*, G. Liu, R, Yuan, and H. Zhang, 2018: Vertical variation of the effects of atmospheric stability on turbulence statistics within the roughness sublayer over real urban canopy. Journal of Geophysical Research: Atmospheres, 123, 2017-2036.Liu, H., R. Yuan, J. Mei, J. Sun, Q. Liu, and Y. Wang, 2017: Scale properties of anisotropic and isotropic turbulence in the urban surface layer. Boundary-Layer Meteorology, 165(2), 277-294.Zou, J., J. Sun*, A. Ding, M. Wang, W. Guo, and C. Fu, 2017: Observation-based estimation of aerosol-induced reduction of planetary boundary layer height. Advances in Atmospheric Sciences, 34(9), 1057?068.Zou, J., B. Zhou, and J. Sun*, 2017: Impact of eddy characteristics on turbulent heat and momentum fluxes in the urban roughness sublayer. Boundary-Layer Meteorology, 164(1), 39-62.Shen, L., J. Sun*, R. Yuan, and P. Liu, 2016: Characteristics of secondary circulations in the convective boundary layer over two-dimensional heterogeneous surfaces. Journal of Meteorological Research, 30(6), 944-960.Liu, P., J. Sun*, and L. Shen, 2016: Parameterization of sheared entrainment in the well-developed convective boundary layer. Part I: Evaluation of the scheme through large-eddy simulations. Advances in Atmospheric Sciences, 33(10), 1171-1184.Liu, P., J. Sun*, and L. Shen, 2016: Parameterization of sheared entrainment in the well-developed convective boundary layer. Part II: A simple model for predicting the growth rate of CBL. Advances in Atmospheric Sciences, 33(10), 1185-1198.Zhang, H., H. Zhang, X. Cai, Y. Song, and J. Sun, 2016: Contribution of low-frequency motions to sensible heat fluxes over urban and suburban areas. Boundary-Layer Meteorology, 161, 183-201.Yuan, R., T. Luo, J. Sun, H. Liu, Y. Fu, and Z. Wang, 2016: A new method for estimating aerosol mass flux in the urban surface layer using LAS technology. Atmospheric Measurement Techniques, 9, 1925?937.Zou, J., G. Liu, J. Sun, H. Zhang, and R. Yuan, 2015: The momentum flux-gradient relations derived from field measurements in the urban roughness sublayer in three cities in China. Journal of Geophysical Research: Atmospheres, 120(10), 10797-10809.Yuan, R., T. Luo, J. Sun, Z. Zeng, and Y. Fu, 2015: A new method for measuring the imaginary part of refractive index structure parameter in the urban surface layer. Atmospheric Chemistry and Physics 15, 2521-2531.Peng, Z. and J. Sun*, 2014: Characteristics of the Drag Coefficient in the Roughness Sublayer over a Complex Urban Surface. Boundary-Layer Meteorology, 153(3), 569-580.Yuan, R., J. Sun*, T. Luo, and X. Wu, 2013: Scaling characteristics of developing sea breezes simulated in a water tank. Boundary-Layer Meteorology, 148: 455-478.Liu, G., J. Sun*, and L. Yin, 2011: Turbulence characteristics of the shear-free convective boundary layer driven by heterogeneous surface heating. Boundary-Layer Meteorology. 140(1), 57-71.Liu G. and J. Sun, 2010: Impact of surface variations on the momentum flux above the urban canopy. Theoretical and Applied Climatology, 101(3), 411-419.Sun, J., 2009: On the parameterization of convective entrainment: Inherent relationships among entrainment parameters in bulk models. Advances in Atmospheric Sciences, 26(5), 1005-1014.Sun, J.* and Q. Xu, 2009: Parameterization of the sheared convective entrainment in the First-Order Jump Model: Evaluation through large-eddy simulation. Boundary-Layer Meteorology, 132(2), 279-288.Liu, G., J. Sun*, and Weimei Jiang, 2009: Observational verification of urban surface roughness parameters derived from morphological models. Meteorological Applications, 16(2), 205-213.Sun, J.* and Y. Wang, 2008: Effect of the entrainment flux ratio on the relationship between entrainment rate and convective Richardson number. Boundary-Layer Meteorology, 126(2), 237-247. ,<>?OPQRST\]^abcdegh磴傧彭豁暖刨晪亄rhbrYPFh僈haJo(h僈haJh僈h羍aJ h僈aJh僈h訲aJo(h僈haJ h羍aJhhv>*CJhh>*CJhh>*CJh訲h訲CJhCJo(h;Hh:d0JCJo(h:dh:dCJo(jh:dCJUhhkK.CJo(hhCJo(hh5丆J h:dCJhhCJhQRS]^   , - z # $ % 8 剝剗鸚D邶^剝`剗鹓dl"勠?鸚D褒^勠`?鹓d勠?鸚D褒^勠`?鹓dl"gdv刪剺鸚D琮^刪`剺鹓d訲gdhijkyz}~      黜麂掬籽澉索鹿眵礓掬掬颁卒櫵檺噣嚜voi h郞aJhvaJo(h訲h訲5乤Jh訲aJo(hh訲aJh訲5乤Jo(h僈h訲aJo(haJo( h訲aJh:dh:daJh僈haJh僈h羍aJ h僈aJ haJhaJo( h:daJhhaJh僈haJo(h僈haJ' ! 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