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[46] Li, Q. Y. and Sun, L* (2015): Technical Note: Watershed strategy for oceanic mesoscale eddy splitting, Ocean Sci. , 11(2), 269–273, doi:10.5194/os-11-269-2015(SCI)
[47] Wang Z, Li Q, Sun, L*, Li S., Yang Y.-J., and Liu S.S. (2015), The most typical shape of oceanic mesoscale eddies from global satellite sea level observations, Front. Earth Sci. 2015, 9 (2): 202-208. DOI 10.1007/s11707-014-0478-z. (SCI)
[48] Li, Y. B., Gao, Z. Q., Li, D., Chen, F., Yang Y.-J, Sun, L. (2015). An Update of Non-iterative Solutions for Surface Fluxes Under Unstable Conditions. Boundary-Layer Meteorology, 156, 273-287. DOI 10.1007/s10546-015-0032-x (SCI)
[49] Fu, Y. et al. (2016). Recent Trends of Summer Convective and Stratiform Precipitation in MidEastern China. Sci. Rep. 6, 33044; doi: 10.1038/srep33044. (SCI)
[50] Li, Q.-Y., Sun, L*., and Lin, S.-F.: GEM: a dynamic tracking model for mesoscale eddies in the ocean, Ocean Sci., 12(6), 1249-1267, doi:10.5194/os-12-1249-2016, 2016 (SCI)
[51] http://onlinelibrary.wiley.com/doi/10.1002/2017JC012814/full
[52] Liu, S.-S., L. Sun*, Q. Wu, and Y.-J. Yang (2017), The responses of cyclonic and anticyclonic eddies to typhoon forcing: The vertical temperature-salinity structure changes associated with the horizontal convergence/divergence, J. Geophys. Res. Oceans, 122, 4974-4989, doi:10.1002/2017JC012814. (SCI)
[53] Liu, S.-S., Q.-Y., Li, L. Sun* (2017), The Intensity Change of Typhoon “Tembin” (2012) and Its Impact on Sea Surface Temperature, Advances in Marine Sciences, 2017, 4(3), 88-95.
[54] Li, Q.-Y., L. Sun*, and C Xu (2018), The Lateral Eddy Viscosity Derived from the Decay of Oceanic Mesoscale Eddies, Open Journal of Marine Science, 8, 152-172. https://doi.org/10.4236/ojms.2018.81008.
[55] Wang, Z.-F., Sun, L*., Li, Q.-Y., and Cheng, H.: Two typical merging events of oceanic mesoscale anticyclonic eddies, Ocean Sci., 15, 1545–1559, https://doi.org/10.5194/os-15-1545-2019, 2019.(SCI)
[56] Liu, S.; Li, J.; Sun, L.*; Wang, G.; Tan, D.; Huang, P.; Yan, H.; Gao, S.; Liu, C.; Gao, Z.; et al. Basin-wide responses of the South China Sea environment to Super Typhoon Mangkhut (2018). Sci. Total Environ. 2020, 2020, 731,139093, doi:10.1016/j.scitotenv.2020.139093.(SCI)
[57] Li J.G, L Sun*, Y Yang, H Yan, and S Liu Upper Ocean Responses to Binary Typhoons in the Nearshore and Offshore Areas of Northern South China Sea: A Comparison Study, Journal of Coastal Research. SI99, 115-125, DOI: 10.2112/SI99-017.1.(SCI)
[58] Li, J.; Sun, L.*; Yang, Y.; Cheng, H. Accurate Evaluation of Sea Surface Temperature Cooling Induced by Typhoons Based on Satellite Remote Sensing Observations. Water, 2020, 12(05), 1413. https://doi.org/10.3390/w12051413. (SCI)
[59] The responses of cyclonic and anticyclonic eddies to typhoon forcing: The vertical temperature-salinity structure changes associated with the horizontal convergence/divergence.JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS.2017,122(6):4974-4989
[60] sunliang.Effects of super typhoons on cyclonic ocean eddies in the western North Pacific: A satellite data-based evaluation between 2000 and 2008.JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS.2014,119(9):5585-5598
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