XU Xiaohui, PAN Delu, MAO Zhihua, TAO Bangyi. A new algorithm based on the background field for red tide monitoring in the East China Sea[J]. Acta Oceanologica Sinica, 2014, 33(5): 62-71. doi: 10.1007/s13131-014-0404-y
Citation: XU Xiaohui, PAN Delu, MAO Zhihua, TAO Bangyi. A new algorithm based on the background field for red tide monitoring in the East China Sea[J]. Acta Oceanologica Sinica, 2014, 33(5): 62-71. doi: 10.1007/s13131-014-0404-y

A new algorithm based on the background field for red tide monitoring in the East China Sea

doi: 10.1007/s13131-014-0404-y
  • Received Date: 2013-03-04
  • Rev Recd Date: 2013-04-18
  • Remote sensing has been proven to be an effective means of monitoring red tides. The spectral information is an important basis for establishing a model to monitor red tides. The spectral curves of red tide events are analyzed and compared with multiyear monthly averaged spectral curves based on MODIS data from July 2002 to June 2012, as well as spectral differences at the same location during red tide presence and absence. A red tide monitoring algorithm is developed based on the background field to extract the red tide information of the East China Sea (ECS). With the application of the algorithm in the ECS, the results reveal that the developed model can effectively determine the location of red tides, with good correspondence to the results from an official bulletin. This demonstrates that the algorithm can effectively extract the red tide information.
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  • Ahn Y H, Shanmugam P. 2006. Detecting the red tide algal blooms from satellite ocean color observations in optically complex Northeast-Asia coastal waters. Remote Sensing of Environment, 103(4): 419-437
    Anderson D M. 2009.Approaches to monitoring, control and management of harmful algal blooms (HABs). Ocean Coastal Management, 52(7): 342-347
    Anderson D M, Glibert P M, Burkholder J M. 2002. Harmful algal blooms and eutrophication: nutrient sources, composition, and consequences. Estuaries, 25(4b): 704-726
    Cullen J J, Ciotti A M, Davis R F, et al. 1997. Optical detection of and assessment of algal blooms. Limnology and Oceanography, 42(5): 1223-1239
    Darecki M, Stramski D. 2004. An evaluation of MODIS and SeaWiFS bio-optical algorithms in the Baltic Sea. Remote Sensing of Environment, 89(3): 326-350
    Groom S B, Holligan P M. 1987. Remote sensing of coccolithophore blooms. Advance in Space Research, 7(2): 73-78
    Haddad K D. 1982. Hydrographic factors associated with west Florida toxic red tide blooms: An assessment for satellite prediction and monitoring [dissertation]. St. Petersburg, FL, USA: University of South Florida
    Holligan P M, Viollier M, Harbour D S, et al. 1983. Satellite and ship studies of coccolithophore production along a continental shelf edge. Nature, 304(5924): 339-342
    Mao Xianmou, Huang Weigen. 2003. Algorithms of multiband remote sensing for coastal red tide waters. Chinese Journal of Applied Ecology (in Chinese), 14(7): 1200-1202
    Pan Delu, Mao Tianming, Li Shujing, et al. 2001. Study on detection of coastal water environment of China by ocean color remote sensing. Acta Oceanologica Sinica, 20(1): 51-63
    Qiu Zhongfeng, Cui Tingwei, He Yijun. 2011. Retrieve of red tide distribution from MODIS data based on the characteristics of water spectrum. Spectroscopy and Spectral Analysis (in Chinese), 31(8): 2233-2237
    Schofield O, Grzymski J, Bissett W P, et al. 1999. Optical monitoring and forecasting systems for harmful algal blooms: possibility or pipe dream? Journal of Phycology, 35(6): 1477-1496
    State Oceanic Administration. 2005. The Public Report on Marine Environmental Quality of China. Beijing: State Oceanic Administration
    Strong A E. 1974. Remote sensing of algal blooms by aircraft and satellite in lake Erie and lake Utah. Remote Sensing of Environment, 3(2): 99-107
    Sun Qiang, Yang Yanming, Gu Deyu, et al. 2000. Study of model for detecting red tide at southern Fujian seawaters in 1997 with SeaWiFS data. Journal of Oceanography in Taiwan Strait (in Chinese), 19(1): 70-75
    Stumpf R P. 2001. Applications of satellite ocean color sensors for monitoring and predicting harmful algal blooms. Human and Ecological Risk Assessment: an International Journal, 7(5): 1363-1368
    Tester P A, Stumpf R P. 1998. Phytoplankton blooms and remote sensing: what is the potential for early warning. Journal of Shellfish Research, 17(5): 1469-1471
    Wang Qimao, Ma Chaofei, Tang Junwu, et al. 2006. A method for detecting red tide information using EOS/MODIS Data. Remote Sensing Technology and Application (in Chinese), 21(1): 6-10
    Yongmin K, Yonggi B, Youngdam E, et al. 2009. Detection of Cochlodinium polykrikoides red tide based on two-stage filtering using MODIS data. Desalination, 249(3): 1171-1179
    Zhao Dongzhi. 2010. Red Tide Disasters Law in Typical Chinese Waters (in Chinese). Beijing: China Ocean Press, 364-373
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