Citation: | HU Zifeng, TAN Yehui, SONG Xingyu, ZHOU Linbin, LIAN Xiping, HUANG Liangmin, HE Yinghui. Influence of mesoscale eddies on primary production in the South China Sea during spring inter-monsoon period[J]. Acta Oceanologica Sinica, 2014, 33(3): 118-128. doi: 10.1007/s13131-014-0431-8 |
Behrenfeld M J, Falkowski P G. 1997. Photosynthetic rates derived from satellite-based chlorophyll concentration. Limnology and Oceanography, 42(1): 1-20
|
Cai Yuming, Ning Xiuren, Liu Zilin. 2002. Studies on primary production and new production of the Zhujiang Estuary, China. Acta Oceanologica Sinica (in Chinese), 24(03): 101-111
|
Chen C C, Shiah F K, Chung S W, et al. 2006. Winter phytoplankton blooms in the shallow mixed layer of the South China Sea enhanced by upwelling. Journal of Marine Systems, 59(1-2): 97-110
|
Chen Y F L. 2005. Spatial and seasonal variations of nitrate-based new production and primary production in the South China Sea. Deep-Sea Research Part Ⅰ: Oceanographic Research Papers, 52(2): 319-340
|
Chen Y F L, Chen H Y. 2006. Seasonal dynamics of primary and new production in the northern South China Sea: the significance of river discharge and nutrient advection. Deep-Sea Research Part Ⅰ: Oceanographic Research Papers, 53(6): 971-986
|
Chen Y L L, Chen H Y, Lin, I I, et al. 2007. Effects of cold eddy on phytoplankton production and assemblages in Luzon Strait bordering the South China Sea. Journal of Oceanography, 63(4): 671-683
|
Chen Yongqiang, Tang Danling. 2012. Eddy-feature phytoplankton bloom induced by a tropical cyclone in the South China Sea. International Journal of Remote Sensing, 33(23): 7444-7457
|
Cheng Xuhua, Qi Yiquan, Wang Weiqiang. 2005. Seasonal and interannual variabilities of mesoscale eddies in South China Sea. Journal of Tropical Oceanography (in Chinese), 24(04): 51-59
|
Chow C H, Hu J H, Centurioni L R, et al. 2008. Mesoscale Dongsha cyclonic eddy in the northern South China Sea by drifter and satellite observations. Journal of Geophysical Research, 113(C4): C04018
|
Crawford W R, Brickley P J, Peterson T D, et al. 2005. Impact of Haida eddies on chlorophyll distribution in the eastern Gulf of Alaska. Deep-Sea ResearchPart Ⅱ: Topical Studies in Oceanography, 52(7-8): 975-989
|
Crawford W R, Brickley P J, Thomas A C. 2007. Mesoscale eddies dominate surface phytoplankton in northern Gulf of Alaska. Progress in Oceanography, 75(2): 287-303
|
Falkowski P G, Ziemann D, Kolber Z, et al. 1991. Role of eddy pumping in enhancing primary production in the ocean. Nature, 352(6330): 55-58
|
Geng Bingxu, Li Shiyu, Wang Dongxiao, et al. 2012. Seasonal variability of surface phytoplankton in the northern South China Sea: a one-dimensional coupled physical-biogeochemical modeling study. Aquatic Ecosystem Health & Management, 15(2): 144-151
|
Hao Qiang, Ning Xiuren, Liu Chenggang, et al. 2007. Satellite and in situ observations of primary production in the northern South China Sea. Acta Oceanologica Sinica (in Chinese), 29(03): 58-68
|
Hwang C, Chen S A. 2000. Circulations and eddies over the South China Sea derived from TOPEX/Poseidon altimetry. Journal of Geophysical Research: Oceans, 105(C10): 23943-23965
|
Jing Zhiyou, Qi Yiquan, Du Yan. 2011. Upwelling in the continental shelf of northern South China Sea associated with 1997-1998 El Niño. Journal of Geophysical Research: Oceans, 116(C2): C02033
|
Kirkwood D, Aminot A, Carlberg S. 1996. The 1994 QUASIMEME laboratory performance study: nutrients in seawater and standard solutions. Marine Pollution Bulletin, 32(8-9): 640-645
|
Knap A, Michaels A, Close A, et al. 1996. Protocols for the joint global ocean flux study (JGOFS) core measurements. JGOFS, Reprint of the IOC Manuals and Guides No 29, UNESCO 1994, 19: 210
|
Letelier R M, Karl D M, Abbott M R, et al. 2000. Role of late winter mesoscale events in the biogeochemical variability of the upper water column of the North Pacific Subtropical gyre. Journal of Geophysical Research:Oceans, 105(C12): 28723-28739
|
Lin I I, Lien C C, Wu C R, et al. 2010. Enhanced primary production in the oligotrophic South China Sea by eddy injection in spring. Geophysical Research Letters, 37(16): L16602
|
Lin I, Liu W T, Wu C C, et al. 2003. New evidence for enhanced ocean primary production triggered by tropical cyclone. Geophysical Research Letters, 30(13): 1718
|
Liu K K, Chao S Y, Shaw P T, et al. 2002. Monsoon-forced chlorophyll distribution and primary production in the South China Sea: observations and a numerical study. Deep-Sea Research Part Ⅰ: Oceanographic Research Papers, 49(8): 1387-1412
|
McGillicuddy D J, Anderson L A, Bates N R, et al. 2007. Eddy/wind interactions stimulate extraordinary mid-ocean plankton blooms. Science, 316(5827): 1021-1026
|
Ning X, Chai F, Xue H, et al. 2004. Physical-biological oceanographic coupling influencing phytoplankton and primary production in the South China Sea. J Geophys Res, 109(C10): C10005
|
Pan X J, Wong G T F, Shiah F K, et al. 2012. Enhancement of biologic湡潬氠潰杲楯捤慵?却楩湶楩捴慹???????????????扶牥?场椠汯汢楳慥浲獶?剴?????潩汮氠潴睨獥???????ぴど???偩桮礠獴楨捥愠汮?瑲牴慨湥獲灮漠牓瑯?潴晨?湃畨瑩牮楡攠湓瑥獡?愠湊摯?瑲桮敡?洠慯楦渠瑏散湥慡湮捯敧?潡晰?批椬漠氶漸木椳挩愺氠?瀲爷漭搴申挷琼楢潲渾??佲捳敯慮湳??椠潒本攠潍捡桩整浡椠獙琬爠祌??????ㄠ?戮爠?圹甸??椠湁朠晍敡湮杵???桯畦渠权?卥桭楩督敡楬??坮敤渠??楯慬湯杧獩慣睡??敍瑥?慨汯??㈠ては????楡獷獡潴汥癲攠摁?楡湬潹牳杩慳渮椠捎?灷栠潙獯灲桫漺爠畐獥??摡業獯獮漠汐癲敥摳?椬爠漱渷??慢湲搾?呥牮楮捩桮潧摴敯獮洠楊甠浔?椠湍?瑨桯敮?潹氠楋朠潌琬爠潋灵桷楡捨?卲潡甠瑖栠??栠楥湴愠?卬攮愠?‰?氶漮戠慐汲??楡潲杹攠潰捲桯敤浵??祩捯汮攠獩?????ㄠ????づひ??扴牲?坰祩牣瑡歬椠??????????倠桲祥獶楩捥慷氮?佐捲敯慧湲潥杳牳愠灩桮礠?潣晥?瑮桯敧?卡潰畨瑹栬攠愶猹琨′?猴椩愺渠′眸愵琭攳爱猷??乲????删敐灩潮牧琬???????????扮牧?塄楯畮?偸敩湡杯???桴愠楡??攠椲?‰匱栮椠??敮極??攠瑣?慣汬???てㄠね????挠敬湡獹略獲?潩普?敓摯摵祴?愠捃瑨楩癮楡琠楓敥獡?椠湊?瑵桲敮?卬漠畯瑦栠??桯楰湩慣?卬攠慏?摥畡牮楯湧杲???????の?????潥畳牥温愬氠′漰昨‰?攩漺瀠栱礰猭椱挷愠氠?剢敲猾敓慯牮捧栠?佩据敧慹湵猬??????????????お?㈠?扵牢?塯椬甠?側???栮愠椲‰???㈠こ?ね???潴摩敭汥椠湰杲?瑭桡敲?攠晰晲敯捤瑵獣?潩景?猠楩穮攠?潯湲?灨慷瑥捳桴?摓祯湵慴浨椠捃獨?潮晡?慓湥?椺渠敩牮瑴?瑲牡慣捴敩牯??佯捦攠慣湯?即捴楡敬渠捥敤????????????执爠?塮楤甠?偩???桧慩楣?????は?????潳搮攠汃敯摮?扩楮潥杮整潡捬栠敓浨楥捬慦氠?牥敳獥灡潲湣獨攬猠?琸漺?洱攱猰漭猱挲愱氼敢?放摓摵椠敊獩?楡湮?琠栲攰‰匴漮甠瑏桶??桶楩湥慷?卯敦愠???漠畓牯湵慴汨?潃晨??敡漠灓桥祡猠楣捩慲汣?剬敡獴敩慯牮挠桡??传捩整慳渠獩??????扣牥?婯桮愠湴杨??慣湯???畡慬渠杰?兹楳穩档潡畬??坣慥湡杮?坧敲湡穰桨楹??敵瑴?慩汤?????????楲慬朠湒潩獶瑥楲挠?捳慴汵捡畲汹愮琠楃潯湮獴?普潥牮?瑡桬攠?獨敥慬獦漠湒慥汳?慡癲散牨愬朠攲搴?挱甶爩爺攠渱琷?昵椭攱氷搶‰椼湢?琾桔敡?搠敓敡灩?睨慵瑮攬爠?穨潩渠敇?潡普?瑹桵攮?匲漰田琹栮??桰楡湴慩?却敥慭??呲牡潬瀠楶捡?佩捡敢慩湬潩汴潹朠祯??楳湡??桬楬湩整獥攭???????????????戠牰?婯桤敵湣杴??畮愠湩杮洠楴湨来??呯慵湴杨??慨湩汮楡渠杓??水?????伭昲昰猰栶漮爠敊?慵湲摮?湬攠慯牦猠桇潥牯数?捹桳汩潣牡潬瀠桒祥汳汥?楲湣捨爺攠慂獩敯獧?楯湳摣畩捥敮摣?扳礬?琱礱瀴栨潇漳温?眠楇渰搳猰?愵渼摢?猾畔扡獮敧焠畄攠湌琬?瑋敡牷牡敭獵瑲牡椠慈氬?牖慡楮渠睄慩瑥敮爠?爬甠湥潴映晡???愲爰椰渴攮??捦潦汳潨杯祲??偰牨潹杴牯数獬獡?卫整牯楮攠獢????????????ase and its oceanographic causes in the South China Sea. Marine Ecology-Progress Series, 268: 31-41
|
Tang Shilin, Chen Chuqun, Zhan Haigang, et al. 2007. Retrieval of euphotic layer depth of South China Sea by remote sensing. Journal of Tropical Oceanography (in Chinese), 26(01): 9-15
|
Wang Guihua, Su Jilan, Ding Yihui, et al. 2007. Tropical cyclone genesis over the South China sea. Journal of Marine Systems, 68(3-4): 318-326
|
Wang Guihua, Su Jilan, Chu Peter C. 2003. Mesoscale eddies in the South China Sea observed with altimeter data. Geophysical Research Letters, 30(21): 2121
|
Wang Hui, Jin Qihua, Gao Shan. 2008. A preliminary study on the response of marine primary production to monsoon variations in the South China Sea. Acta Ocea????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????
|