Seasonal variation of chlorophyll a in the South China Sea from 1997–2010

Authors

  • Fenfen Liu School of Marine Sciences, Sun Yat-Sen University, Guangzhou 510006, China
  • Chuqun Chen State Key Laboratory of Oceanography in the Tropics, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou 510301, China

Keywords:

chlorophyll a variability, season-reliant empirical orthogonal function, El Niño–Southern Oscillation

Abstract

This study aims to document the seasonal cycle of chlorophyll a interannual variability and to determine the dynamic framework for understanding the mechanisms that produce it. We investigated the variation in sea surface chlorophyll a concentration from autumn 1997 to summer 2010 in the South China Sea using the Sea-Viewing Wide Field-of-View Sensor products. Using the Season-Reliant Empirical Orthogonal Function method, we revealed the interannual and seasonal variations and their dependency on climate variability. The time coefficient of the first mode shows a sudden drop in 2007. Corresponding season-reliant empirical orthogonal function (spatial pattern) is the largest in the southern centre in the autumn, which can be explained by a large increase in chlorophyll a concentration during which Typhoon Hagibis passed through. The second mode reflected an anomalous event of low phytoplankton biomass in the western center of the sea during the summer of 1998 and 2010 due to an El Niño event. Time coefficient is negatively related with the Multivariate El Niño–Southern Oscillation Index. The third mode revealed an interannual variability of chlorophyll a in the region to the northwest of Luzon Islands, which appeared from autumn to the next spring. To better understand the chlorophyll a variation off the South Vietnam coast, we analyzed the summer chlorophyll a variability in this local region solely using the Empirical Orthogonal Function method.

References

Chen, Y. L. L., Chen, H. Y., Lin, L. L., Lee, M. A., Chang, J., 2007. Effects of cold eddy on Phytoplankton production and assemblages in Luzon Strait bordering the South China Sea. J. Oceanogr. 63 (4), 671–683.

Fang, G. H., Chen, H. Y., Wei, Z. X., Wang, Y. G., Wang, X. Y., Li, C. Y., 2006. Trends and interannual variability of the South China Sea surface winds, surface height, and surface temperature in the recent decade. J. Geophys. Res. 111 (C11), C11S16.

Gao, T. Z., Zhou, F. X., 2002. Monsoonal characteristics revealed by intraseasonal variability of Sea Surface Temperature (SST) in the South China Sea (SCS). Geophys. Res. Lett. 29 (8), 1222.

Kuo, N., Zheng, Q., Ho, C., 2000. Satellite observation of upwelling along the western coast of the South China Sea. Remote Sens. Environ. 74, 463–470.

Liu, F., Chen, C., Zhan, H., 2012. Decadal variability of chlorophyll a in the South China Sea: a possible mechanism. Chin. J. Oceanology and Limnology 30 (6), 1054–1062.

Liu, Q., Jiang, X., Xie, S., Liu, W., 2004. A gap in the Indo-Pacific warm pool over the South China Sea in boreal winter: Seasonal development and interannual variability. J. Geophys. Res. 109, C07012.

Liu, Q. Y., Kaneko, A., Su, J. L., 2008. Recent progress in studies of the South China Sea circulation. J. Oceanogr. 64 (5), 753–762.

Minobe, S., 2002. Interannual to interdecadal changes in the Bering Sea and concurrent 1998/99 changes over the North Pacific. Prog. Oceanogr. 55, (1–2), 45–64.

Nagar, S. G., Singh, S. V., 1991. Variations of surface pressure over India during the southwest monsoon. Theor. Appl. Climatol. 44 (2), 95–112.

Qiu, F. W., Fang, W. D., Fang, G. H., 2011. Seasonal-to-interannual variability of chlorophyll in central western South China Sea extracted from SeaWiFS. Chin. J. Oceanol. Lim. 29 (1), 18–25.

Qu, T. D., 2000. Upper-layer circulation in the South China Sea. J. Phys. Oceanogr. 30 (6), 1450–1460.

Qu, T. D., 2001. Role of ocean dynamics in determining the mean seasonal cycle of the South China Sea surface temperature. J. Geophys. Res. 106 (C4), 6943–6955.

Rong, Z. R., Liu, Y. G., Zong, H. B., Cheng, C., 2007. Interannual sea level variability in the South China Sea and its response to ENSO. Glob. Planet Change 55 (4), 257–272.

Shen, S. H., Leptoukh, G. G., Acker, J. G., Yu, Z. J., Kempler, S. J., 2008. Seasonal variations of chlorophyll a concentration in the northern South China Sea.IEEE Geosci. Remote Sens. Lett. 5 (2), 315–319.

Soong, Y. S., Hu, J. H., Ho, C. R., Niiler, P. P., 1995. Cold-core eddy detected in South China Sea. Eos Trans., AGU, 76 (35), 345.

Stein, M. L., 1999. Interpolation of Spatial Data: Some Theory for Kriging. Springer-Verlag, New York.

Su, J. L., 2004. Overview of the South China Sea circulation and its influence on the coastal physical oceanography outside the Pearl River Estuary. Cont. Shelf Res. 24 (16), 1745–1760.

Sun, L., Yang, Y. J., Xian, T., Lu, Z. M., Fu, Y. F., 2010. Strong enhancement of chlorophyll a concentration by a weak typhoon. Mar. Ecol. Prog. Ser. 404, 39–50.

Tang, S. L., Dong, Q., Liu, F. F., 2011. Climate-driven chlorophyll-a concentration interannual variability in the South China Sea. Theor. Appl. Climatol. 103 (1–2), 229–237.

Venegas, R. M., Strub, P. T., Beier, E., Letelier, R., Thomas, A. C., Cowles, T., James, C., Soto-Mardones, L., Cabrera, C., 2008. Satellite-derived variability in chlorophyll, wind stress, sea surface height, and temperature in the northern California Current System. J. Geophys. Res. 113 (C3), C03015.

Wang, B., An, S. I., 2005. A method for detecting season-dependent modes of climate variability: S-EOF analysis. Geophys. Res. Lett., 32, L15710.

Wang, C. Z., Wang, W. Q., Wang, D. X., Wang, Q., 2006. Interannual variability of the South China Sea associated with El Nino. J. Geophys. Res. 111 (C3).

Wang, G. H., Chen, D. K., Su, J. L., 2006. Generation and life cycle of the dipole in the South China Sea summer circulation. J. Geophys. Res. 111 (C6), C06002.

Wang, J., Tang, D., Sui, Y., 2010. Winter phytoplankton bloom induced by subsurface upwelling and mixed layer entrainment southwest of Luzon Strait. J. Marine Syst. 83, 141–149.

Wang, Q., Tian, Y., 2010. Definition of the South China Sea summer monsoon onset. Chin. J. Oceanol. Lim. 28 (6), 1281–1289.

Wentz, F. J., Gentemann, C., Smith, D., Chelton, D., 2000. Satellite measurements of sea surface temperature through clouds. Science 288 (5467), 847–850.

Wilson, C., Adamec, D., 2001. Correlations between surface chlorophyll and sea surface height in the tropical pacific during the 1997–1999 El Nino-Southern Oscillation event. J. Geophys. Res. 106 (C12), 31175–31188.

Wyrtki, K., 1961. Physical oceanography of the Southeast Asian waters: scientific results of marine investigation of the South China Sea and the Gulf of Thailand. Scripps Inst. of Oceanogr., La Jolla, Califonia.

Xie, A., Chung, Y. S., Liu, X., Ye, Q., 1998. The interannual variations of the summer monsoon onset over the South China Sea. Theor. Appl. Climatol. 59 (3–4), 201–213.

Xie, S. P., Xie, Q., Wang, D. X., Liu, W. T., 2003. Summer upwelling in the South China Sea and its role in regional climate variations. J. Geophys. Res. 108 (C8), 3261.

Xie, S. P., Chang, C. H., Xie, Q., Wang, D. X., 2007. Intraseasonal variability in the summer South China Sea: Wind jet, cold filament, and recirculations. J. Geophys. Res. 112 (C10), C10008.

Yan, Y. F., Qi, Y. Q., Zhou, W., 2010. Interannual heat content variability in the South China Sea and its response to ENSO. Dyn. Atmos. Oceans 50 (3), 400–414.

Yoder, J. A., Kennelly, M. A., 2003. Seasonal and ENSO variability in global ocean phytoplankton chlorophyll derived from 4 years of SeaWiFS measurements. Glob. Biogeochem. Cy. 17 (4), 1112.

Zeng, L. L., Wang, D. X., 2009. Intraseasonal variability of latent-heat flux in the South China Sea. Theor. Appl. Climatol. 97 (1–2), 53–64.

Zhao, H., Tang, D. L., 2007. Effect of 1998 El Nino on the distribution of phytoplankton in the South China Sea. J. Geophys. Res. 112 (C2), C02017.

Zheng, Z. W., Ho, C. R., Kuo, N. J., 2007. Mechanism of weakening of west Luzon eddy during La Nina years. Geophys. Res. Lett. 34 (11), L11604.

Zhou, F. X., Yu, S. Y., Liu, Q., 1998. The interannual oscillation of meridional sea level wind and its impact on sea surface temperature in the South China Sea. p. 523–533. Proceedings of the 3rd International Conference on East Asia and Western Pacific Meteorology and Climate. 1996 May 16–18, Chungli, Taiwan.

Zhuang, W., Xie, S. P., Wang, D. X., Taguchi, B., Aiki, H., Sasaki, H., 2010. Intraseasonal variability in sea surface height over the South China Sea. J. Geophys. Res. 115, C04010

Published

2014-07-03