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教育及工作经历: 2013.8至今 中山大学海洋学院讲师 2010.9-2013.7 中国科学院南海海洋研究所物理海洋学专业海洋遥感方向博士研究生 2006.9-2009.7 中国科学院南海海洋研究所物理海洋学专业海洋遥感方向硕士研究生 2002.9-2006.7 山东大学环境科学与工程学院环境科学专业本科

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1. Liu, F., Tang, S., Influence of the interaction between typhoons and oceanic mesoscale eddies on phytoplankton blooms. Journal of Geophysical Research: Oceans, 2018, 123. 2. Liu, F., Yin, K., He, L., Tang, S., Yao, J., Influence on phytoplankton of different developmental stages of mesoscale eddies off eastern Australia, Journal of Sea Research, 2018, 137, 1-8. 3. Liu, F.,Tang, S., Huang, R. X., Yin, K., The asymmetric distribution of phytoplankton inanticyclonic eddies in the western South China Sea, Deep Sea Research Part I,2017, 120, 29-38. 4. Liu,F., Tang, S., Chen, C.,Satelliteobservations of the small-scale cyclonic eddies in the western South China Sea,Biogeosciences, 2015, 12, 299-305. 5. Liu, F., Chen, C., Tang, S.,Temporal variability of chromophoric dissolved organic matter in the PearlRiver Estuary, China from 2003 to 2009. Aquatic Ecosystem Health andManagement, DOI: 10.1080/14634988.2014.944479. 6. Liu, F., Chen, C., Seasonalvariation of chlorophyll a in the South China Sea from 1997–2010. AquaticEcosystem Health and Management, DOI:10.1080/14634988.2014.942211. 7. Liu, F., Tang, S., Chen, C., Impactof nonlinear mesoscale eddy on phytoplankton distribution in the northern SouthChina Sea. Journal of Marine Systems, 2013, DOI: 10.1016/j.jmarsys.2013.04.005. 8. Liu, F., Tang, S., Chen, C.,Retrieval of heavy metal zinc in the particulate phase from MERIS in the PearlRiver Estuary. 2013, Remote Sensing Letters, DOI:10.1080/2150704X.2013.798711. 9. Liu, F., Chen, C., Zhan, H., Decadalvariability of chlorophyll a in the South China Sea: a possible mechanism.Chinese Journal of Oceanology and Limnology, 2012, 30: 1107-1115. 10. Liu, F., Chen, C., Remote sensingstudy of the seasonal distribution of phytoplankton groups in the South ChinaSea. IEEE Geoscience and Remote Sensing Symposium, 2012, 2563-2566. 11. Liu, F., Chen, C., Tang, S.,Retrieval of chlorophyll a concentration from a fluorescence enveloped areausing hyperspectral data. International Journal of Remote sensing, 2011, 32:3611-3623. 12. Liu, F., Tang, S., Chen, C.,Remotely sensed study of air-sea CO2 fluxes variability in the northern SouthChina Sea. IEEE Geoscience and Remote Sensing Symposium, 2009, 3: 361-364. 13.Chen,D., He, L., Liu, F., Yin, K., Effects of typhoon events on chlorophyll and carbon fixation in different regions ofthe East China Sea, Estuarine, Coastaland Shelf Science, 2017, 194, 229-239. 14. Chen, C., Liu, F., Tang, S.,Estimation of heavy metal concentration in the Pearl River Estuary waters fromremote sensing data. IEEE Geoscience and Remote Sensing Symposium, 2012,2575-2578. 15. Chen, C., Liu, F., He, Q., Shi, H..,The possibility on estimation of concentration of heavy metals in coastalwaters from remote sensing data. IEEE Geoscience and Remote Sensing Symposium,2010, 4216-4219. 16. Tang, S., Dong, Q., Chen, C., Liu, F.,Retrieval of suspended sediment concentration in the Pearl River Estuary fromMERIS using support vector machines, IEEE Geoscience and Remote SensingSymposium, 2009, 3: 239-242. 17. Tang, S., Dong, Q., Liu, F.,Climate-driven chlorophyll-a concentration interannual variability in the SouthChina Sea. Theoretical and Applied Climatology, 2011, 103: 229-237. 18. Ye, H., Chen, C., Sun, Z., Tang, S.,Song, X., Yang, C., Tian, L., Liu, F.,Estimationof the Primary Productivity in Pearl River Estuary Using MODIS Data, Estuaries and coasts, 2015, 38(2),506-518.

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