[1] |
陈奇礼, 1993. 对南海季风进退及强度的气候分析[J]. 热带气象学报, 9(2):124-132.
|
|
CHEN QILI, 1993. A climatological analysis of advancing/retreating movement of South China Sea monsoon and its intensity[J]. Journal of Tropical Meteorology, 9(2):124-132 (in Chinese with English abstract).
|
[2] |
傅崐成, 崔浩然, 2019. 南海U形线的法律性质与历史性权利的内涵[J]. 厦门大学学报(哲学社会科学版), (4):66-75.
|
|
FU KUNCHENG, CUI HAORAN, 2019. The U-shaped line’s legal nature and historic rights of the South China Sea[J]. Journal of Xiamen University (Arts & Social Sciences), (4):66-75 (in Chinese with English abstract).
|
[3] |
公衍芬, 杨文斌, 谭树东, 2012. 南海油气资源综述及开发战略设想[J]. 海洋地质与第四纪地质, 32(5):137-147.
|
|
GONG YANFEN, YANG WENBIN, TAN SHUDONG, 2012. Oil and gas resources in the South China Sea and its development strategy: a review[J]. Marine Geology & Quaternary Geology, 32(5):137-147 (in Chinese with English abstract).
|
[4] |
林明森, 张有广, 袁欣哲, 2015. 海洋遥感卫星发展历程与趋势展望[J]. 海洋学报, 37(1):1-10.
|
|
LIN MINGSEN, ZHANG YOUGUANG, YUAN XINZHE, 2015. The development course and trend of ocean remote sensing satellite[J]. Acta Oceanologica Sinica, 37(1):1-10 (in Chinese with English abstract).
|
[5] |
刘畅, 白强, 唐高, 等, 2018. 中国海洋遥感技术进展[J]. 船舶与海洋工程, 34(1):1-6.
|
|
LIU CHANG, BAI QIANG, TANG GAO, et al, 2018. Development of marine remote sensing technology in China[J]. Naval Architecture and Ocean Engineering, 34(1):1-6 (in Chinese with English abstract).
|
[6] |
刘宇鹏, 唐丹玲, 吴常霞, 等, 2019. 南海U形海疆线的生态环境分区特征[J]. 海洋学报, 41(2):14-30.
|
|
LIU YUPENG, TANG DANLING, WU CHANGXIA, et al, 2019. Zoning of the U-boundary in the South China Sea and its ecological environment characteristics[J]. Acta Oceanologica Sinica, 41(2):14-30 (in Chinese with English abstract).
|
[7] |
骆遥, 李敬敏, 张文志, 等, 2019. 反映南海U形海疆线的《南洋群岛新地图》[J]. 科学通报, 64(23):2390-2394.
|
|
LUO YAO, LI JINGMIN, ZHANG WENZHI, et al, 2019. A historical Map of East Indies representing the U-boundary in the South China Sea as an international boundary[J]. Chinese Science Bulletin, 64(23):2390-2394 (in Chinese with English abstract).
|
[8] |
邵磊, 庞雄, 乔培军, 等, 2008. 珠江口盆地的沉积充填与珠江的形成演变[J]. 沉积学报, 26(2):179-185.
|
|
SHAO LEI, PANG XIONG, QIAO PEIJUN, et al, 2008. Sedimentary filling of the Pearl River Mouth Basin and its response to the evolution of the Pearl River[J]. Acta Sedimentologica Sinica, 26(2):179-185 (in Chinese with English abstract).
|
[9] |
邵劲超, 2015. 热带气旋移动速度和强度对南海北部叶绿素浓度的影响[D]. 湛江:广东海洋大学.
|
|
SHAO JINCHAO, 2015. The impact of tropical cyclone translation speed and intensity on phytoplankton chlorophyll-a concentration in the northern South China Sea[D]. Zhanjiang: Guangdong Ocean University (in Chinese with English abstract).
|
[10] |
邵勰, 黄平, 黄荣辉, 2014. 南海夏季风爆发的研究进展[J]. 地球科学进展, 29(10):1126-1137.
|
|
SHAO XIE, HUANG PING, HUANG RONGHUI, 2014. A review of the South China Sea summer monsoon onset[J]. Advances in Earth Science, 29(10):1126-1137 (in Chinese with English abstract).
|
[11] |
隋广军, 唐丹玲, 2015. 台风灾害评估与应急管理[M]. 北京: 科学出版社: 10-26.
|
|
SUI GUANGJUN, TANG DANLING, 2015. Typhoon disaster assessment and emergency management[M]. Beijing: Science Press: 10-26(in Chinese).
|
[12] |
孙庆杨, 林静柔, 唐丹玲, 等, 2020. 南海海气CO2交换对两个热带气旋“风泵”的不同响应机理分析[J]. 生态科学, 39(3):9-16.
|
|
SUN QINGYANG, LIN JINGROU, TANG DANLING, et al, 2020. Different mechanisms of air-sea CO2 exchange responding to “Wind Pump” effects of two tropical cyclones in South China Sea[J]. Ecological Science, 39(3):9-16 (in Chinese with English abstract).
|
[13] |
孙智超, 2016. 基于词频分析的十余年国内南海研究热点探析[J]. 晋图学刊, (5):57-63.
|
|
SUN ZHICHAO, 2016. The analysis based on word frequency for over 10 years of domestic South China Sea study hotspot[J]. Shanxi Library Journal, (5):57-63 (in Chinese with English abstract).
|
[14] |
唐丹玲, 刘宇鹏, 郝晓光, 等, 2018. 国界线和行政区线表示南海U形海疆线的地图[J]. 科学通报, 63(9):856-864.
|
|
TANG DANLING, LIU YUPENG, HAO XIAOGUANG, et al, 2018. A newly-discovered historical map using both national boundary and administrative line to represent the U-boundary in the South China Sea[J]. Chinese Science Bulletin, 63(9):856-864 (in Chinese with English abstract).
|
[15] |
唐盟, 马劲松, 王颖, 等, 2016. 1947年中国南海断续线精准划定的地形依据[J]. 地理学报, 71(6):914-927.
doi: 10.11821/dlxb201606002
|
|
TANG MENG, MA JINSONG, WANG YING, et al, 2016. Spatial demarcation principles of the Dotted Line in the South China Sea[J]. Acta Geographica Sinica, 71(6):914-927 (in Chinese with English abstract).
doi: 10.11821/dlxb201606002
|
[16] |
唐苗苗, 李晓峰, 2019. 海洋遥感技术资料的计量分析[J]. 河北渔业, (6):54-57.
|
|
TANG MIAOMIAO, LI XIAOFENG, 2019. Metrological analysis on papers about ocean remote sensing[J]. Hebei Fisheries, (6):54-57 (in Chinese with English abstract).
|
[17] |
唐晓音, 杨树春, 张功成, 等, 2013. 南海地热研究综述[J]. 地球物理学进展, 28(2):988-997.
|
|
TANG XIAOYIN, YANG SHUCHUN, ZHANG GONGCHENG, et al, 2013. Overview on geothermal investigation of the South China Sea[J]. Progress in Geophysics, 28(2):988-997 (in Chinese with English abstract).
|
[18] |
王颖, 马劲松, 2003. 南海海底特征、资源区位与疆界断续线[J]. 南京大学学报(自然科学版), 39(6):797-805.
|
|
WANG YING, MA JINSONG, 2003. Characteristics of submarine geomorphology, natural resources distribution and border intermittent lines of the South China Sea[J]. Journal of Nanjing University (Natural Science), 39(6):797-805 (in Chinese with English abstract).
|
[19] |
王颖, 葛晨东, 邹欣庆, 2014. 论证南海海疆国界线[J]. 海洋学报, 36(10):1-11.
|
|
WANG YING, GE CHENDONG, ZOU XINQING, 2014. Evidence of China's maritime boundary in the South China Sea[J]. Acta Oceanologica Sinica, 36(10):1-11 (in Chinese with English abstract).
|
[20] |
许夙晖, 慕晓冬, 柯冰, 等, 2014. 基于遥感影像的军事阵地动态监测技术研究[J]. 遥感技术与应用, 29(3):511-516.
|
|
XU SUHUI, MU XIAODONG, KE BING, et al, 2014. Dynamic monitoring of military position based on remote sensing image[J]. Remote Sensing Technology and Application, 29(3):511-516 (in Chinese with English abstract).
|
[21] |
杨东平, 2006. 从权利平等到机会均等——新中国教育公平的轨迹[J]. 北京大学教育评论, 4(2):2-11.
|
|
YANG DONGPING, 2006. From equality of right to equality of opportunity: the slot of educational equity in new China[J]. Peking University Education Review, 4(2):2-11 (in Chinese with English abstract).
|
[22] |
杨照德, 2005. 卫星上天蕴涵的文化意义——纪念我国第一颗人造卫星上天35周年[J]. 国防科技工业, (4):28-29.
|
[23] |
游长江, 侯佩旭, 邓灿芳, 等, 2015. 西沙群岛海岛旅游资源综合评价[J]. 热带地理, 35(6):926-933.
|
|
YOU CHANGJIANG, HOU PEIXU, DENG CANFANG, et al, 2015. Comprehensive evaluation on tourism resources in the Xisha Islands[J]. Tropical Geography, 35(6):926-933 (in Chinese with English abstract).
|
[24] |
张功成, 贾庆军, 王万银, 等, 2018. 南海构造格局及其演化[J]. 地球物理学报, 61(10):4194-4215.
|
|
ZHANG GONGCHENG, JIA QINGJUN, WANG WANYIN, et al, 2018. On tectonic framework and evolution of the South China Sea[J]. Chinese Journal of Geophysics, 61(10):4194-4215 (in Chinese with English abstract).
|
[25] |
张洪涛, 张海启, 祝有海, 2007. 中国天然气水合物调查研究现状及其进展[J]. 中国地质, 34(6):953-961.
|
|
ZHANG HONGTAO, ZHANG HAIQI, ZHU YOUHAI, 2007. Gas hydrate investigation and research in China: present status and progress[J]. Geology in China, 34(6):953-961 (in Chinese with English abstract).
|
[26] |
张君珏, 苏奋振, 王雯玥, 2018. 南海资源环境地理研究综述[J]. 地理科学进展, 37(11):1443-1453.
doi: 10.18306/dlkxjz.2018.11.001
|
|
ZHANG JUNJUE, SU FENZHEN, WANG WENYUE. A review of geographical information research on resources and environment of the South China Sea region[J]. Progress in Geography, 37(11):1443-1453 (in Chinese with English abstract).
doi: 10.18306/dlkxjz.2018.11.001
|
[27] |
赵斌, 刘胜旋, 李丽青, 等, 2018. 南海冷泉分布特征及油气地质意义[J]. 海洋地质前沿, 34(10):32-43.
|
|
ZHAO BIN, LIU SHENGXUAN, LI LIQING, et al, 2018. Distribution pattern of cold seeps in South China Sea and its geological significance[J]. Marine Geology Frontiers, 34(10):32-43 (in Chinese with English abstract).
|
[28] |
周磊, 陈大可, 雷小途, 等, 2018. 海洋与台风相互作用研究进展[J]. 科学通报, 64(1):60-72.
|
|
ZHOU LEI, CHEN DAKE, LEI XIAOTU, et al, 2018. Progress and perspective on interactions between ocean and typhoon[J]. Chinese Science Bulletin, 64(1):60-72 (in Chinese with English abstract).
|
[29] |
朱照宇, 邱燕, 周厚云, 等, 2002. 南海全球变化研究进展[J]. 地质力学学报, 8(4): 315-322+314.
|
|
ZHU ZHAOYU, QIU YAN, ZHOU HOUYUN, et al, 2002. A summary review of research progress on global change in the South China Sea[J]. Journal of Geomechanics, 8(4): 315-322+314. (in Chinese with English abstract).
|
[30] |
CLARK A, LI CHANG, 1993. Marine mineral resources of the South China sea[J]. Marine Georesources & Geotechnology, 11(1):101-126.
|
[31] |
CLARK C D, 1993. Satellite remote sensing for marine pollution investigations[J]. Marine Pollution Bulletin, 26(7):357-368.
doi: 10.1016/0025-326X(93)90182-J
|
[32] |
HUANG XIAODONG, CHEN ZHAOHUI, ZHAO WEI, et al, 2016. An extreme internal solitary wave event observed in the northern South China Sea[J]. Scientific Reports, 6:30041.
doi: 10.1038/srep30041
|
[33] |
KATSAROS B K, MITNIK L, BLACK P, 2014. Microwave instruments for observing tropical cyclones[M]// TANG DANLING, SUI GUANGJUN. Typhoon impact and crisis management. Berlin: Springer: 5-61.
|
[34] |
LIU QINYU, KANEKO A, SU JILAN, 2008. Recent progress in studies of the South China Sea circulation[J]. Journal of Oceanography, 64(5):753-762.
doi: 10.1007/s10872-008-0063-8
|
[35] |
LIU YUPENG, TANG DANLING, EVGENY M, 2019. Chlorophyll concentration response to the typhoon wind-pump induced upper ocean processes considering air-sea heat exchange[J]. Remote Sensing, 11(15):1825.
doi: 10.3390/rs11151825
|
[36] |
LIU YUPENG, TANG DANLING, TANG SHILIN, et al, 2020. A case study of Chlorophyll a response to tropical cyclone Wind Pump considering Kuroshio invasion and air-sea heat exchange[J]. Science of the Total Environment, 741:140290.
doi: 10.1016/j.scitotenv.2020.140290
|
[37] |
PHILLIPS O M, 1988. Remote sensing of the sea surface[J]. Annual Review of Fluid Mechanics, 20:89-109.
doi: 10.1146/annurev.fl.20.010188.000513
|
[38] |
SANTOS A M P, 2000. Fisheries oceanography using satellite and airborne remote sensing methods: a review[J]. Fisheries Research, 49(1):1-20.
doi: 10.1016/S0165-7836(00)00201-0
|
[39] |
TANG DANLING, 2011. Remote sensing of the changing oceans[M]. Berlin: Springer: 1-7.
|
[40] |
TANG DANLING, KAWAMURA H, LUIS A J, 2002a. Short-term variability of phytoplankton blooms associated with a cold eddy in the northwestern Arabian Sea[J]. Remote Sensing of Environment, 81(1):82-89.
doi: 10.1016/S0034-4257(01)00334-0
|
[41] |
TANG DANLING, KESTER D R, NI I H, et al, 2002b. Upwelling in the Taiwan Strait during the summer monsoon detected by satellite and shipboard measurements[J]. Remote Sensing of Environment, 83(3):457-471.
doi: 10.1016/S0034-4257(02)00062-7
|
[42] |
TANG DANLING, KESTER D R, WANG ZHAODING, et al, 2003. AVHRR satellite remote sensing and shipboard measurements of the thermal plume from the Daya Bay, nuclear power station, China[J]. Remote Sensing of Environment, 84(4):506-515.
doi: 10.1016/S0034-4257(02)00149-9
|
[43] |
TANG DANLING, NI I H, 1996. Remote sensing of Hong Kong waters: spatial and temporal changes of sea surface temperature[J]. Acta Oceanographica Taiwanica, 35:173-186.
|
[44] |
TANG DANLING, NI I H, KESTER D R, et al, 1999. Remote sensing observations of winter phytoplankton blooms southwest of the Luzon Strait in the South China Sea[J]. Marine Ecology Progress Series, 191:43-51.
doi: 10.3354/meps191043
|
[45] |
TANG DANLING, NI I H, MÜLLER-KARGER F E, et al, 1998. Analysis of annual and spatial patterns of CZCS-derived pigment concentration on the continental shelf of China[J]. Continental Shelf Research, 18(12):1493-1515.
doi: 10.1016/S0278-4343(98)00039-9
|
[46] |
TANG DANLING, SUI GUANGJUN, 2014. Typhoon impact and crisis management[M]. Berlin: Springer: 1-4.
|
[47] |
WANG YING, GE CHENDONG, ZOU XINQING, 2017. Evidence of China’s sea boundary in the South China Sea[J]. Acta Oceanologica Sinica, 36(4):1-12.
|
[48] |
XU HUABING, TANG DANLING, LIU YUPENG, et al, 2019a. Dissolved oxygen responses to tropical cyclones "Wind Pump" on pre-existing cyclonic and anticyclonic eddies in the Bay of Bengal[J]. Marine Pollution Bulletin, 146:838-847.
doi: 10.1016/j.marpolbul.2019.07.019
|
[49] |
XU HUABING, TANG DANLING, SHENG JINYU, et al, 2019b. Study of dissolved oxygen responses to tropical cyclones in the Bay of Bengal based on Argo and satellite observations[J]. Science of the Total Environment, 659:912-922.
doi: 10.1016/j.scitotenv.2018.12.384
|
[50] |
YANG JUN, GONG PENG, FU RONG, et al, 2013. Erratum: the role of satellite remote sensing in climate change studies[J]. Nature Climate Change, 3(11):1001.
doi: 10.1038/nclimate2033
|
[51] |
YE HAIJUN, SHENG JINYU, TANG DANLING, et al, 2019. Examining the impact of tropical cyclones on air-sea CO2 exchanges in the Bay of Bengal based on satellite data and in situ observations[J]. Journal of Geophysical Research: Oceans, 124(1):555-576.
doi: 10.1029/2018JC014533
|
[52] |
YU JIE, TANG DANLING, CHEN GUOBAO, et al, 2014. The positive effects of typhoons on the fish CPUE in the South China Sea[J]. Continental Shelf Research, 84:1-12.
doi: 10.1016/j.csr.2014.04.025
|
[53] |
YU JIE, TANG DANLING, LI YONGZHEN, et al, 2013. Increase in fish abundance during two typhoons in the South China Sea[J]. Advances in Space Research, 51(9):1734-1749.
doi: 10.1016/j.asr.2012.11.019
|
[54] |
ZHENG GUANGMING, TANG DANLING, 2007. Offshore and nearshore chlorophyll increases induced by typhoon winds and subsequent terrestrial rainwater runoff[J]. Marine Ecology Progress Series, 333:61-74.
doi: 10.3354/meps333061
|
[55] |
ZHENG YI, YUE JUN, SUN XIAOFENG, et al, 2012. Studies of filtering effect on internal solitary wave flow field data in the South China Sea using EMD[J]. Advanced Materials Research, 518-523:1422-1425.
doi: 10.4028/www.scientific.net/AMR.518-523
|
[56] |
ZHU YAOHUA, SUN JUNCHUAN, WANG YONGGANG, et al, 2019. Overview of the multi-layer circulation in the South China Sea[J]. Progress in Oceanography, 175:171-182.
doi: 10.1016/j.pocean.2019.04.001
|