International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the time scales involved in their natural fluctuations. We applied a temporal decomposition procedure to two decades of satellite ocean color observations to characterize the time variability of surface chlorophyll‐a (SChl) in the Mediterranean Sea. In order to assess the reliability of the satellite data at capturing intraseasonal, seasonal, and interannual variability, we first show that satellite SChl data compare well with field data of chlorophyll‐a fluorescence from the long‐term BOUSSOLE time series, at all three time scales. The decomposition procedure is then applied to satellite SChl and to mixing‐layer depth (MxLD) data from an ocean ...
Understanding the evolution of natural systems spatio-temporal dynamics is paramount in modern ecolo...
[1] Six years of daily satellite data are used to quantify and map intraseasonal variability of chlo...
Understanding the evolution of natural systems spatio-temporal dynamics is paramount in modern ecolo...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
Understanding long‐term variations of ocean ecosystems requires untangling the time scales involved ...
Understanding long-term variations of ocean ecosystems requires untangling the time scales involved ...
Understanding the evolution of natural systems spatio-temporal dynamics is paramount in modern ecolo...
[1] Six years of daily satellite data are used to quantify and map intraseasonal variability of chlo...
Understanding the evolution of natural systems spatio-temporal dynamics is paramount in modern ecolo...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
International audienceUnderstanding long‐term variations of ocean ecosystems requires untangling the...
Understanding long‐term variations of ocean ecosystems requires untangling the time scales involved ...
Understanding long-term variations of ocean ecosystems requires untangling the time scales involved ...
Understanding the evolution of natural systems spatio-temporal dynamics is paramount in modern ecolo...
[1] Six years of daily satellite data are used to quantify and map intraseasonal variability of chlo...
Understanding the evolution of natural systems spatio-temporal dynamics is paramount in modern ecolo...