Li Jiming

发布时间:2018-11-12  字体大小T|T

E-mail: lijiming@lzu.edu.cn
 
Research Interests:
(1)   Cloud properties retrieval;
(2)   Cloud climatology;
(3)   Cloud radiative effect;
(4)   Aerosol-Cloud Interaction;
 
Education:
2002-2006: Atmospheric sounding, Nanjing University of Information Science &Technology, B.S.
2006-2011: Atmospheric physics and Atmospheric environment, Lanzhou University, Ph.D.
2009-2011: Physics, Stevens Institute of Technology, USA, Visiting student.
 
Research Experiences:
2015-present: Associate professor, Lanzhou University, China.
2012-2015:   Lecturer, Lanzhou University, China.
 
 
Peer-Reviewed Publications:
1.Jian B., Li J.*, He Y., Wang G., Zhang M., and Huang J.: The impacts of atmospheric and surface parameters on long-term variations in the planetary albedo, Journal of Climate, 2018, 8705-8717, DOI: 10.1175/JCLI-D-17-0848.1.
 
2.Li J., Jian B., Huang J.*, Hu Y., Zhao C., Kawamoto, K., Liao S. and Wu M.: Long-term variation of cloud droplet number concentrations from space-based Lidar. Remote Sensing of Environment, 2018, 213,144-161, doi:10.1016/j.rse.2018.05.011.
 
3.Li J.*, Lv Q., Jian B., Zhang M., Zhao C., Fu Q., Kawamoto K., and Zhang H.: The impact of atmospheric stability and wind shear on vertical cloud overlap over the Tibetan Plateau, Atmos. Chem. Phys., 2018, 18, 7329-7343, https://doi.org/10.5194/acp-18-7329-2018.
 
4.Li, J.*, Q. Lv, M. Zhang, T. Wang, K. Kawamoto, S. Chen, and B. Zhang. Effects of atmospheric dynamics and aerosols on the fraction of supercooled water clouds, Atmos. Chem. Phys., 2017, 17: 1847-1863.
 
5.Li, J., J. Huang*, K. Stamnes, T. Wang, Q. Lv and H. Jin. A global survey of cloud overlap based on CALIPSO and CloudSat measurements, Atmos. Chem. Phys., 2015, 15, 519-536.
 
6.Li, J.*, Y. Yi, K. Stamnes, X. Ding, T. Wang, H. Jin and S. Wang. A new approach to retrieve cloud base height of marine boundary layer clouds, Geophys. Res. Lett., 2013, 40, 4448-4453.
 
7.Li, J., Hu, Y*., Huang, J., Stamnes, K., Yi, Y., and Stamnes, S. A new method for retrieval of the extinction coefficient of water clouds by using the tail of the CALIOP signal. Atmos. Chem. Phys., 2011, 11: 1-15.
 
8.Li, J., Yi, Y., Minnis, P., Huang, J., Yan, H., Ma, Y., Wang, W., Ayers, J.K. Radiative effect differences between multi-layered and single-layer clouds derived from CERES, CALIPSO, and CloudSat data. Journal of Quantitative Spectroscopy & Radiative Transfer, 2010, 112, doi:10.1016/j.jqsrt.2010.10.006
 
9.Lv, Q., J. Li, T. Wang, J. Huang*. Cloud radiative forcing induced by the multi-layered cloud and its impact on the atmospheric heating rate, J. Meteor. Res., 2015, 29: 779-792.
 
10.Qiu Y, Zhao C*, Guo J, and Li, J: 8-Year ground-based observational analysis about the seasonal variation of the aerosol-cloud droplet effective radius relationship at SGP site. Atmospheric Environment, 2017, 164: 139-146.
 
11.Yamauchi A*, Kawamoto K, Manda A, and Li, J.:Assessing the impact of the Kuroshio Current on vertical cloud structure using CloudSat data. Atmos. Chem. Phys., 18(10): 7657-7667, 2018.
 
12.Jin, H.*, Y. Yi, S. Nasiri, C. Liu, W. Wang, J. Li, Y. Chen, and T. Wang. Impacts of Asian dust on the determination of cloud thermodynamic phase from satellite observations, Environ. Res. Lett., 2015, 10, doi:10.1088/1748-9326/10/3/034006.
 
13.Wang W., J. Huang*, P. Minnis, Y. Hu, J. Li, Z. Huang, J. K. Ayers, and T. Wang, : Dusty cloud properties and radiative forcing over dust source and downwind regions derived from A-Train data during the Pacific Dust Experiment. Journal of Geophysical Research: Atmospheres,2010, 115, doi:10.1029/2010JD014109
 

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