4.3 Article

Spatial and temporal statistics of sea surface temperature and chlorophyll fronts in the California Current

Journal

JOURNAL OF PLANKTON RESEARCH
Volume 34, Issue 9, Pages 749-760

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/plankt/fbs010

Keywords

fronts; A-Front; sea surface temperature; phytoplankton; chlorophyll; California Current; ocean color; remote sensing

Funding

  1. NASA Ocean Biology and Biogeochemistry Program
  2. CCE-LTER program
  3. NSF
  4. NSF [OCE-1026607, GLOBEC-0606575]
  5. POBEX project
  6. University of California Institute for Mexico
  7. United States (UC MEXUS)
  8. Consejo Nacional de Ciencia y Tecnologia, Mexico (CONACYT)
  9. Directorate For Geosciences
  10. Division Of Ocean Sciences [1026607] Funding Source: National Science Foundation

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The statistics of sea-surface fronts detected with the automated histogram method were studied in the California Current using sea-surface temperature (SST) and chlorophyll-a concentration (Chl) images from various satellite sensors. Daily maps of fronts were averaged into monthly composites of front frequency (FF) spanning 29 years (19812009) for SST and 14 years (19972010) for Chl. The large-scale distributions of frontal frequency of both SST (FFsst) and of Chl (FFchl) had a 500700 km wide band of elevated values (47) along the coast that roughly coincided with the area of increased mesoscale eddy activity. FFsst and FFchl were positively correlated at monthly and seasonal frequencies, but the year-to-year variations were not significantly correlated. The long-period (1 year and longer) variability in FFsst is influenced by the large-scale SST gradient, while at shorter timescales the influence of the Coastal Upwelling Index is evident. In contrast with FFsst, FFchl variability is less related to the coherent large-scale forcing and has stronger sensitivity to local forcings in individual areas. Decadal-scale increasing trends in the frequency of both SST and Chl fronts were detected in the Ensenada Front area (general area of the A-Front study) and corresponded to, respectively, trends towards colder SST and increasing chlorophyll-a concentration.

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