A large-scale view of ocean conditions

Satellite observations provide consistent environmental information over broad areas. The resulting datasets support day-to-day decision-making, long-term planning, and public understanding of marine environments.

Tracking Ocean Temperature

Sea surface temperature (SST) is a key indicator of ocean health and variability. Satellites measure SST by detecting heat emitted from the ocean surface using infrared and microwave sensors.
  • monitor seasonal and long-term temperature trends
  • detect temperature anomalies linked to climate change
  • identify and track marine heatwaves, including their duration and intensity

Understanding Marine Heatwaves

Marine heatwaves are prolonged periods of unusually warm ocean temperatures. Their frequency and intensity have increased in recent decades, with impacts that include:
  • stress on marine species and ecosystems
  • increased risk of disease and harmful outbreaks
  • disruption to coastal and marine-based activities

Ocean Colour and Ecosystem Health

Satellites measure ocean colour by capturing sunlight reflected from the sea surface in the visible spectrum. These observations provide information on phytoplankton, microscopic plants at the base of the marine food web, and other optically active substances.
  • changes in phytoplankton activity at the ocean surface
  • the development and extent of blooms
  • primary production and ecosystem productivity
  • variations in water quality

Supporting Decisions and Insights

Remote sensing products provide a reliable and cost-effective source of environmental information that complements in situ monitoring. They are used to:
  • support evidence-based marine management and policy development
  • inform planning, operations, and risk assessment in marine sectors
  • enhance climate monitoring and reporting
  • communicate complex ocean data in a clear and accessible way

Explore Remote Sensing Products

View sea-temperature, marine-heatwave, and chlorophyll products for Irish waters.

Sea Surface Temperature

View sea surface temperature across the Irish Exclusive Economic Zone for the latest two-week period. The data come from the Operational Sea Surface Temperature and Ice Analysis system run by the UK's Met Office and delivered by IFREMER.

Sea Surface Temperature | Marine Institute

Marine Heat Waves

View active marine-heatwave intensity as a sea surface temperature anomaly calculated against the 1993-2022 OSTIA reference baseline climatology.

Marine Heat Waves | Marine Institute

Surface Temperature Historical

Select a site on the map to view historical sea surface temperature from 1982 to the present, using Operational Sea Surface Temperature and Ice Analysis data.

Surface Temperature Historical | Marine Institute

Chlorophyll-a Concentration

Compare chlorophyll-a mass concentration in seawater with an anomaly calculated from a 60-day running median ending two weeks before the current image. Data include Atlantic Ocean Colour Bio-Geo-Chemical L4 Satellite Observations.

Chlorophyll-a Concentration | Marine Institute

Red Band Difference Algorithm

Explore a satellite-derived indicator of relative chlorophyll-a fluorescence for identifying potential bloom concentrations in open and coastal waters.

Red Band Difference | Marine Institute

How the Red Band Difference Algorithm Works

The Red Band Difference (RBD) algorithm calculates the difference between two red bands as a proxy for relative chlorophyll-a fluorescence. Amin et al. (2009) described the method, and Jordan et al. (2021) tested it in Irish waters.

The algorithm is less sensitive to coloured dissolved organic matter, suspended particulate matter, and atmospheric corrections. This makes it useful in both open and coastal waters.

Warmer colours indicate higher relative fluorescence and potential bloom concentration. Grey represents clouds or other invalid data. Black indicates no bloom detection or may represent several cloudy days in the area.

The images use Copernicus Sentinel-3A and Sentinel-3B satellite data from the European Organisation for the Exploitation of Meteorological Satellites. NOAA's National Centers for Coastal Ocean Science processes the daily imagery.

View the related chlorophyll-a product.

References

  1. Amin R, Zhou J, Gilerson A, Gross B, Moshary F, and Ahmed S (2009). Novel optical techniques for detecting and classifying toxic dinoflagellate Karenia brevis blooms using satellite imagery. Opt. Express 17, 9126–9144. doi: 10.1364/oe.17.009126
  2. Jordan C, Cusack C, Tomlinson MC, Meredith A, McGeady R, Salas R, et al. (2021). Using the red band difference algorithm to detect and monitor a Karenia spp. bloom off the south coast of Ireland, June 2019. Front. Mar. Sci. 8:638889. doi: 10.3389/fmars.2021.638889
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