Data

GBR photosynthetically active radiation (PAR) at 8 m depth from ocean colour, 2002-2019 (NESP TWQ 5.3, AIMS, Go2Q Consulting and JCU)

eAtlas
Robson, Barbara ; Canto, Marites ; McKinna, Lachlan ; Fabricius, Katharina ; Garcia, Rodrigo
Viewed: [[ro.stat.viewed]] Cited: [[ro.stat.cited]] Accessed: [[ro.stat.accessed]]
ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=https://eatlas.org.au/data/uuid/eebd1438-2d4e-4f60-9055-27e6b9e58c3a&rft.title=GBR photosynthetically active radiation (PAR) at 8 m depth from ocean colour, 2002-2019 (NESP TWQ 5.3, AIMS, Go2Q Consulting and JCU)&rft.identifier=https://eatlas.org.au/data/uuid/eebd1438-2d4e-4f60-9055-27e6b9e58c3a&rft.description=This dataset contains estimated daily integrated photosynthetically active radiation (PAR) at 8 m depth in the Great Barrier Reef Marine Park and Coral Sea for each day from April 2002 through to December 2019. Data are provided on a 1km grid. The amount of light available for photosynthesis (photosynthetically active radiation, or PAR) is an important determinant of ecosystem health. PAR at 8 m depth is relevant to many coral and seagrass habitats. This data product was developed through NESP TWQ projects 2.3.1 and 5.3 as a first step in developing an ecologically relevant water quality indicator based on benthic light. Methods: Daily benthic light (PAR) at 8 m below the water surface is derived from NASA MODIS Ocean Color data in combination with bathymetric data from Beaman (2010) using the algorithm described by Magno-Canto et al. (2020). In brief: Ocean colour observations are used to estimate inherent optical properties (absorption and backscattering) at each of ten MODIS wavelengths, using the SWIM algorithm of McKinna et al. (2015). These in turn are used to calculate spectrally-resolved light attenuation (Kd). The Beer-Lambert equation is then used to propagate surface PAR down to a depth 8 m below the surface of the water. This yields an estimate of instantaneous PAR at 8 mon a 1km grid scale across the study region. Instantaneous PAR is then used to calculate daily integrated PAR by considering the path and angle of the sun over the course of each day, assuming constant atmospheric conditions within each day. A full description of the method can be found in this publication: Magno-Canto, M.M., McKinna, L.I., Robson, B.J. and Fabricius, K.E., 2019. Model for deriving benthic irradiance in the Great Barrier Reef from MODIS satellite imagery. Optics express, 27(20), pp.A1350-A1371. Limitations of the data: Similar to other remote sensing data products, this data set has gaps where atmospheric conditions such as cloud cover precluded clear ocean colour observation at the time of the daily MODIS satellite over-pass. The estimates inherit the limitation of the IOP model used as inputs which assumes that the total absorption and total backscattering coefficients are homogenous within the water column. This PAR data has not also been validated against direct observations of PAR at 8 m below the water surface within the GBR. Format: This dataset consists of a collection of 18 netcdf files, one for each year between 2002 and 2019, inclusive. Each netCDF files contain a variable, “par8”, which is daily integrated downwelling photosynthetically available radiation at a depth of 8 m below the water surface in Einsteins per square metre per day, along with dimensions “latitude”, “longitude” and “time” (to the nearest day). References: Lee, Z.-P., Du, K.-P., Arnone, R., 2005. A model for the diffuse attenuation coefficient of downwelling irradiance. Journal of Geophysical Research: Oceans 110. Magno-Canto, M.M., McKinna, L.I., Robson, B.J. and Fabricius, K.E., 2019. Model for deriving benthic irradiance in the Great Barrier Reef from MODIS satellite imagery. Optics express, 27(20), pp.A1350-A1371. Magno-Canto, M.M., McKinna, L.I.W., Robson, B.J., Fabricius, K.E., Garcia, R., 2020. Model for deriving benthic irradiance in the Great Barrier Reef from MODIS satellite imagery: erratum. Opt. Express 28, 27473-27475. McKinna, L.I., Fearns, P.R., Weeks, S.J., Werdell, P.J., Reichstetter, M., Franz, B.A., Shea, D.M. and Feldman, G.C., 2015. A semianalytical ocean color inversion algorithm with explicit water column depth and substrate reflectance parameterization. Journal of Geophysical Research: Oceans, 120(3), pp.1741-1770. Reichstetter, M., Fearns, P., Weeks, S., McKinna, L., Roelfsema, C., Furnas, M., 2015. Bottom Reflectance in Ocean Color Satellite Remote Sensing for Coral Reef Environments. Remote Sensing 7, 15852. Data Location: This dataset is filed in the eAtlas enduring data repository at: data\nesp5\5.3_Benthic-light&rft.creator=Robson, Barbara &rft.creator=Canto, Marites &rft.creator=McKinna, Lachlan &rft.creator=Fabricius, Katharina &rft.creator=Garcia, Rodrigo &rft.date=2020&rft.coverage=151.083984375,-24.521484375 153.80859375,-24.521484375 153.45703124999997,-20.830078125 147.12890625,-17.490234374999986 145.810546875,-13.798828125 144.4921875,-12.83203125 144.228515625,-9.84375 142.119140625,-9.931640625 142.3828125,-11.77734375 143.61328125000003,-14.765625 144.755859375,-14.94140625 146.337890625,-19.599609375 148.447265625,-21.005859375 151.083984375,-24.521484375&rft_rights=Creative Commons Attribution 3.0 Australia License http://creativecommons.org/licenses/by/3.0/au/&rft_subject=biota&rft.type=dataset&rft.language=English Access the data

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Creative Commons Attribution 3.0 Australia License
http://creativecommons.org/licenses/by/3.0/au/

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Full description

This dataset contains estimated daily integrated photosynthetically active radiation (PAR) at 8 m depth in the Great Barrier Reef Marine Park and Coral Sea for each day from April 2002 through to December 2019. Data are provided on a 1km grid. The amount of light available for photosynthesis (photosynthetically active radiation, or PAR) is an important determinant of ecosystem health. PAR at 8 m depth is relevant to many coral and seagrass habitats. This data product was developed through NESP TWQ projects 2.3.1 and 5.3 as a first step in developing an ecologically relevant water quality indicator based on benthic light. Methods: Daily benthic light (PAR) at 8 m below the water surface is derived from NASA MODIS Ocean Color data in combination with bathymetric data from Beaman (2010) using the algorithm described by Magno-Canto et al. (2020). In brief: Ocean colour observations are used to estimate inherent optical properties (absorption and backscattering) at each of ten MODIS wavelengths, using the SWIM algorithm of McKinna et al. (2015). These in turn are used to calculate spectrally-resolved light attenuation (Kd). The Beer-Lambert equation is then used to propagate surface PAR down to a depth 8 m below the surface of the water. This yields an estimate of instantaneous PAR at 8 mon a 1km grid scale across the study region. Instantaneous PAR is then used to calculate daily integrated PAR by considering the path and angle of the sun over the course of each day, assuming constant atmospheric conditions within each day. A full description of the method can be found in this publication: Magno-Canto, M.M., McKinna, L.I., Robson, B.J. and Fabricius, K.E., 2019. Model for deriving benthic irradiance in the Great Barrier Reef from MODIS satellite imagery. Optics express, 27(20), pp.A1350-A1371. Limitations of the data: Similar to other remote sensing data products, this data set has gaps where atmospheric conditions such as cloud cover precluded clear ocean colour observation at the time of the daily MODIS satellite over-pass. The estimates inherit the limitation of the IOP model used as inputs which assumes that the total absorption and total backscattering coefficients are homogenous within the water column. This PAR data has not also been validated against direct observations of PAR at 8 m below the water surface within the GBR. Format: This dataset consists of a collection of 18 netcdf files, one for each year between 2002 and 2019, inclusive. Each netCDF files contain a variable, “par8”, which is daily integrated downwelling photosynthetically available radiation at a depth of 8 m below the water surface in Einsteins per square metre per day, along with dimensions “latitude”, “longitude” and “time” (to the nearest day). References: Lee, Z.-P., Du, K.-P., Arnone, R., 2005. A model for the diffuse attenuation coefficient of downwelling irradiance. Journal of Geophysical Research: Oceans 110. Magno-Canto, M.M., McKinna, L.I., Robson, B.J. and Fabricius, K.E., 2019. Model for deriving benthic irradiance in the Great Barrier Reef from MODIS satellite imagery. Optics express, 27(20), pp.A1350-A1371. Magno-Canto, M.M., McKinna, L.I.W., Robson, B.J., Fabricius, K.E., Garcia, R., 2020. Model for deriving benthic irradiance in the Great Barrier Reef from MODIS satellite imagery: erratum. Opt. Express 28, 27473-27475. McKinna, L.I., Fearns, P.R., Weeks, S.J., Werdell, P.J., Reichstetter, M., Franz, B.A., Shea, D.M. and Feldman, G.C., 2015. A semianalytical ocean color inversion algorithm with explicit water column depth and substrate reflectance parameterization. Journal of Geophysical Research: Oceans, 120(3), pp.1741-1770. Reichstetter, M., Fearns, P., Weeks, S., McKinna, L., Roelfsema, C., Furnas, M., 2015. Bottom Reflectance in Ocean Color Satellite Remote Sensing for Coral Reef Environments. Remote Sensing 7, 15852. Data Location: This dataset is filed in the eAtlas enduring data repository at: data
esp5\5.3_Benthic-light

Issued: 25 11 2020

Data time period: 2002-07-04 to 2019-12-31

This dataset is part of a larger collection

151.08398,-24.52148 153.80859,-24.52148 153.45703,-20.83008 147.12891,-17.49023 145.81055,-13.79883 144.49219,-12.83203 144.22852,-9.84375 142.11914,-9.93164 142.38281,-11.77734 143.61328,-14.76563 144.75586,-14.94141 146.33789,-19.59961 148.44727,-21.00586 151.08398,-24.52148

147.9638671875,-17.1826171875

Subjects
biota |

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Other Information
NESP TWQ project page

url : https://nesptropical.edu.au/index.php/round-5-projects/project-5-3/

eAtlas THREDDS service (AIMS)

url : https://eatlas.org.au/data/uuid/ae61d6d5-ce16-40c3-a36e-1f53b4c6665f

Project web site

url : https://eatlas.org.au/nesp-twq-5/benthic-light-5-3

Link to THREDDS Data Server: 18 nc files daily par8 for years 2002 - 2019

url : https://maps.eatlas.org.au/thredds/catalog_NESP5-3_xr_par8.html

Interactive map of this dataset

url : https://maps.eatlas.org.au/index.html?intro=false&z=7&ll=148.00000,-18.78188&l0=eatlas-thredds_NESP-TWQ-5-3_Benthic-light%2Fxr_par8%2Fagg%2Fxr_par8_daily_par8,ea_ea-be%3AWorld_Bright-Earth-e-Atlas-basemap&v0=,,&t0=2019-12-31T00%3A00%3A00.000Z

par8

url : http://maps.eatlas.org.au/thredds/wms/NESP-TWQ-5-3_Benthic-light/xr_par8/agg/xr_par8_daily?SRS=EPSG%3A3857

global : 37c8856d-613a-482b-89b7-a30f71ffdc94

ror : 03x57gn41

ror : 045vn2806

ror : 03x57gn41

ror : 04ydmy275

ror : 03x57gn41

NESP TWQ Project 5.3 - Benthic light as ecologically-validated GBR-wide indicator for water quality: Drivers, thresholds and cumulative risks, 2019-2020 (AIMS)

raid : 10.82210/afc990a9

Identifiers
  • global : eebd1438-2d4e-4f60-9055-27e6b9e58c3a
ACN 633 798 857