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Sea Surface Temperature (SST) Maximum Monthly Climatological Mean, 1985-2013 - Hawaii
Data provided by National Oceanic and Atmospheric Administration
Sea surface temperature (SST) plays an important role in a number of ecological processes and can vary over a wide range of time scales, from daily to decadal changes. SST influences primary production, species migration patterns, and coral health. If temperatures are anomalously warm for extended periods of time, drastic changes in the surrounding ecosystem can result, including harmful effects such as coral bleaching. This layer represents the maximum of the monthly mean climatology of SST (degrees Celsius) from 1985-2013.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/hi_otp_all_sst_clim_max
Sea Surface Temperature (SST) Maximum Degree Heating Week, 2000-2013 - Hawaii
Data provided by National Oceanic and Atmospheric Administration
Sea surface temperature (SST) plays an important role in a number of ecological processes and can vary over a wide range of time scales, from daily to decadal changes. SST influences primary production, species migration patterns, and coral health. If temperatures are anomalously warm for extended periods of time, drastic changes in the surrounding ecosystem can result, including harmful effects such as coral bleaching. Degree Heating Weeks (DHW) is a metric of this thermal stress on corals. This layer represents the maximum weekly DHW of SST (Celsius weeks) from 2000-2013.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/hi_otp_all_sst_dhw_max
Sea Surface Temperature (SST) Standard Deviation of Long-term Mean, 2000-2013 - Hawaii
Data provided by National Oceanic and Atmospheric Administration
Sea surface temperature (SST) plays an important role in a number of ecological processes and can vary over a wide range of time scales, from daily to decadal changes. SST influences primary production, species migration patterns, and coral health. If temperatures are anomalously warm for extended periods of time, drastic changes in the surrounding ecosystem can result, including harmful effects such as coral bleaching. This layer represents the standard deviation of SST (degrees Celsius) of the weekly time series from 2000-2013.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/hi_otp_all_sst_std
Wave Power Average Annual Frequency of Anomalies, 2000-2013 - Hawaii
Data provided by National Oceanic and Atmospheric Administration
Wave power is a major environmental forcing mechanism in Hawaii that influences a number of marine ecosystem processes including coral reef community development, structure, and persistence. By driving mixing of the upper water column, wave forcing can also play a role in nutrient availability and ocean temperature reduction during warming events. Wave forcing in Hawaii is highly seasonal, with winter months typically experiencing far greater wave power than that experienced during the summer months.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/hi_otp_all_wave_anom_freq
Wave Power Average Annual Maximum Anomaly, 2000-2013 - Hawaii
Data provided by National Oceanic and Atmospheric Administration
Wave power is a major environmental forcing mechanism in Hawaii that influences a number of marine ecosystem processes including coral reef community development, structure, and persistence. By driving mixing of the upper water column, wave forcing can also play a role in nutrient availability and ocean temperature reduction during warming events. Wave forcing in Hawaii is highly seasonal, with winter months typically experiencing far greater wave power than that experienced during the summer months.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/hi_otp_all_wave_anom_max
Wave Power Long-term Mean, 2000-2013 - Hawaii
Data provided by National Oceanic and Atmospheric Administration
Wave power is a major environmental forcing mechanism in Hawaii that influences a number of marine ecosystem processes including coral reef community development, structure, and persistence. By driving mixing of the upper water column, wave forcing can also play a role in nutrient availability and ocean temperature reduction during warming events. Wave forcing in Hawaii is highly seasonal, with winter months typically experiencing far greater wave power than that experienced during the summer months. This layer represents the mean of maximum daily wave power (kW/m) from 2000-2013.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/hi_otp_all_wave_avg
Wave Power Maximum Monthly Climatological Mean, 1979-2013 - Hawaii
Data provided by National Oceanic and Atmospheric Administration
Wave power is a major environmental forcing mechanism in Hawaii that influences a number of marine ecosystem processes including coral reef community development, structure, and persistence. By driving mixing of the upper water column, wave forcing can also play a role in nutrient availability and ocean temperature reduction during warming events. Wave forcing in Hawaii is highly seasonal, with winter months typically experiencing far greater wave power than that experienced during the summer months.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/hi_otp_all_wave_clim_max
Wave Power Standard Deviation of Long-term Mean, 2000-2013 - Hawaii
Data provided by National Oceanic and Atmospheric Administration
Wave power is a major environmental forcing mechanism in Hawaii that influences a number of marine ecosystem processes including coral reef community development, structure, and persistence. By driving mixing of the upper water column, wave forcing can also play a role in nutrient availability and ocean temperature reduction during warming events. Wave forcing in Hawaii is highly seasonal, with winter months typically experiencing far greater wave power than that experienced during the summer months.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/hi_otp_all_wave_std
Species Distribution: Cetaceans - Hawaii
Data provided by National Oceanic and Atmospheric Administration
This dataset contains a collection of known point locations of cetaceans (dolphins and whales) identified either via automated satellite tracking of tagged organisms or through direct human observation via shipborne and aerial surveys. This can be useful for assessing species abundance, population structure, habitat use, and behavior. This collection is aggregated from multiple data sources and survey periods. Each data point contains attributes for further information about the time and source of the observation.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/hi_pacioos_all_cetaceans
Species Distribution: Bottlenose Dolphin - Hawaii
Data provided by National Oceanic and Atmospheric Administration
This dataset contains a collection of known point locations of bottlenose dolphins identified either via automated satellite tracking of tagged organisms or through direct human observation via shipborne and aerial surveys. This can be useful for assessing species abundance, population structure, habitat use, and behavior. This collection is aggregated from multiple data sources and survey periods listed below. Each data point contains attributes for further information about the time and source of the observation.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/hi_pacioos_all_dolphin_bottlenose