Are trends in SeaWiFS chlorophyll time-series unusual relative to historic variability

被引:0
作者
James A. Yoder
Maureen A. Kennelly
Scott C. Doney
Ivan D. Lima
机构
[1] Woods Hole Oceanographic Institution Woods Hole,
[2] Graduate School of Oceanography University of Rhode Island Narragansett,undefined
来源
Acta Oceanologica Sinica | 2010年 / 29卷
关键词
SeaWiFS; trends; climate change; chlorophyll; biogeochemical model; ENSO;
D O I
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中图分类号
学科分类号
摘要
For selected locations in the Atlantic and Pacific Ocean, we compared surface ocean chlorophyll time series extracted from SeaWiFS imagery from 1997–2004 with the results of an ocean coupled circulation and biogeochemical model covering the period 1958–2004. During the 1997–2004 time period, linear trends in model and satellite time series were significantly correlated at most of the 44 sites we studied. Eleven sites were selected for further study, and we used the longer time series of the model to assess whether trends observed during the SeaWiFS period at these 11 sites were unusual in relation to those observed over the longer historical period covered by the model. The results show that the trends observed during the SeaWiFS period were not unusual and fell well within the range in magnitude of linear trends observed in other 8-year periods of model output. This result implies that the SeaWiFS satellite ocean color time series is not yet sufficiently long, on its own, to directly observe any long term changes in phytoplankton chlorophyll that may be occurring in the surface waters of the open ocean as a result of increased ocean stratification linked to global climate changed.
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页数:3
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  • [1] Antoine D.(2005)Bridging ocean color observations of the 1980s and 2000s in search of long-term trends J Geophys Res 110 C06009-1938
  • [2] Morel A.(2007)Mechanisms governing interannual variability of upper ocean temperature in a global hindcast simulation Journal of Physical Oceanography 37 1918-112
  • [3] Gordon H. R.(2009)Skill metrics for confronting global upper ocean ecosystem-biogeochemistry models against field and remote sensing data Journal of Marine Systems 76 95-611
  • [4] Doney S. C.(2005)Recent trends in global ocean chlorophyll Geophys Res Lett 32 L03606-31188
  • [5] Yeager S.(1997)Multi-pattern fingerprint method for detection and attribution of climate change Climate Dynamics 13 601-171
  • [6] Danabasoglu G.(2003)Interannual variability in atmospheric mineral aerosols from a 22-year model simulation and observational data Journal of Geophysical Res 108 4352-undefined
  • [7] Doney S. C.(2004)Upper ocean ecosystem dynamics and iron cycling in a global three-dimensional model Global Biogeochem Cycles 18 GB4028-undefined
  • [8] Lima I.(2008)Ocean’s least productive waters are expanding Geophys Res Lett 35 L03618-undefined
  • [9] Moore J. K.(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 31175-undefined
  • [10] Gregg W. W.(2003)Seasonal and ENSO variability in global ocean phytoplankton chlorophyll derived from 4 years of SeaWiFS measurements Global Biogeochem. Cycles 17 1112-undefined