| [1] | 蔡树群, 张文静, 王盛安, 2007. 海洋环境观测技术研究进展[J]. 热带海洋学报, 26(3):76-81. | 
																													
																							|  | CAI SHUQUN, ZHANG WENJING, WANG SHENG’AN, 2007. An advance in marine environment observation technology[J]. Journal of Tropical Oceanography, 26(3):76-81 (in Chinese with English abstract). | 
																													
																							| [2] | 广东省发展改革委, 2018. 广东省海上风电发展规划(2017-2030年)(修编)[R/OL]. (2020-04-11) [2020-10-29]. http://drc.gd.gov.cn/gkmlpt/content/1/1060/post_1060661.html#876 | 
																													
																							| [3] | 樊天慧, 陈超核, 2019. 海上风电的发展与挑战[J]. 广东造船, 38(5):13-15. | 
																													
																							| [4] | 国家能源局, 2020. 国家能源局2020年一季度网上新闻发布会文字实录[EB/OL]. (2020-03-06). [2020-10-29]. http://www.nea.gov.cn/2020-03/06/c_138850234.htm | 
																													
																							| [5] | 中国风能产业网, 2020. 2019年欧洲海上风电报告[EB/OL]. (2020-02-10). [2020-10-29]. http://www.cweea.com.cn/xysj/html/29736.html | 
																													
																							| [6] | CAI SHUQUN, XIE JIESHUO, HE JIANLING, 2012. An overview of internal solitary waves in the South China Sea[J]. Surveys in Geophysics, 33(5):927-943. doi: 10.1007/s10712-012-9176-0
 | 
																													
																							| [7] | CHEN ZHAOYUN, PAN JIAYI, JIANG YUWU, 2016. Role of pulsed winds on detachment of low salinity water from the Pearl River Plume: upwelling and mixing processes[J]. Journal of Geophysical Research: Oceans, 121(4):2769-2788. doi: 10.1002/jgrc.v121.4
 | 
																													
																							| [8] | HE QINGYOU, ZHAN HAIGANG, CAI SHUQUN, et al, 2018. A new assessment of mesoscale eddies in the South China Sea: surface features, three-dimensional structures, and thermohaline transports[J]. Journal of Geophysical Research: Oceans, 123(7):4906-4929. doi: 10.1029/2018JC014054
 | 
																													
																							| [9] | OU SUYING, ZHANG HONG, WANG DONGXIAO, et al, 2007. Horizontal characteristics of buoyant plume off the pearl river estuary during summer[J]. Journal of Coastal Research, Special Issue 50: 652-657. | 
																													
																							| [10] | SKÁKALA J, SMYTH T J, TORRES R, et al, 2019. SST Dynamics at different scales: evaluating the oceanographic model resolution skill to represent SST processes in the Southern Ocean[J]. Journal of Geophysical Research: Oceans, 124(4):2546-2570. doi: 10.1029/2018JC014791
 | 
																													
																							| [11] | SU JILAN, 2004. Overview of the South China Sea circulation and its influence on the coastal physical oceanography outside the Pearl River Estuary[J]. Continental Shelf Research, 24(16):1745-1760. doi: 10.1016/j.csr.2004.06.005
 | 
																													
																							| [12] | WANG DONGXIAO, SHU YEQIANG, XUE HUIJIE, et al, 2014. Relative contributions of local wind and topography to the coastal upwelling intensity in the northern South China Sea[J]. Journal of Geophysical Research: Oceans, 119(4):2550-2567. doi: 10.1002/2013JC009172
 | 
																													
																							| [13] | XU JIEXIN, HUANG YANDAN, CHEN ZHIWU, et al, 2019. Horizontal variations of typhoon-forced near-inertial oscillations in the south China sea simulated by a numerical model[J]. Continental Shelf Research, 180:24-34. doi: 10.1016/j.csr.2019.05.003
 |