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Bibliographic Details
Main Authors: Roelfsema, Christiaan M, Phinn, Stuart R
Format: Dataset Open Access
Language:en
Published: PANGAEA 2012
Subjects:
01_Montipora; 02_Chlorodesmis; 03_Montipora-blue; 04_Montipora-brown; 05_Gorgonian; 06_Soft-coral; 07_Sand/rock; 08_Foliose-coral; 09_Montipora-purple; 10_Dead-branching; 100_Acropora-light-brown; 101_Acropora-dark-brown; 102_Montipora-green; 103_rec:1062-1069; 104_Holothurian; 11_Laurencia; 12_Gorgonian; 13_Fluoresent-coral; 14_Encrusting-brown; 15_Digitate-coral; 16_Chlorodesmis-not-shaded; 16_Chlorodesmis-shaded; 17_Acropora-light; 18_Brown-coral; 19_Rubble-2; 20_Fire-coral; 21_Acropora; 22_Montipora-green; 23_Dead-plate-200; 24_Dead-plate-100; 25_Coral-line; 26_Acropora-brown-1; 27_Acropora-yellow-1; 28_Acropora-turf-1; 29_Acropora-brown-2; 30_Acropora-yellow-2; 31_Acropora-turf-2; 32_Goniostera; 33_Digitate; 34_Rubble/turf; 35_Coral-encrusting; 36_Coraline; 37_Montipora-blue; 38_Acropora-brown; 39_Digitate-green; 40_Green-algae; 41_Acropora-blue; 42_Acropora-light-brown; 43_Acropora-light; 44_Acropora-brown; 45_Halimeda; 46_Coraline; 47_Rock; 48_Massive-live; 49_Foliose-turf; 50_Foliose-white; 51_Foliose-live; 52_Digitate-live; 53_Digitate-dead; 54_Acropora-turf; 55_Acropora-live; 56_Acropora-turf; 57_Acropora-live; 58_Acropora-blue; 59_Lobophora; 60_Porites; 61_Turf-on-porites; 62_Live-encrusting; 63_Turf-encrusting; 64_Laurencia-green; 65_Laurencia-red; 66_Halimeda; 67_Cholorodesmis; 68_Caulerpa; 69_Caulerpa-2; 70_Caulerpa-3; 71_Dictyota; 72_Dictyota-sand; 73_Turbinaria; 74_Enteromorpha; 75_Algae-sand; 76_Algae-no-sand; 77_Algae-green; 78_Turbinaria; 79_Sand; 80_Sand-BMA; 81_Pocillopora; 82_Laurencia-red; 83_Laurencia-green; 84_Fuzzy-algae; 85_Porites; 86_Giant-clam; 87_Red-sponge; 88_Turtle; 89_Encrusting-20-ms; 90_Encrusting-50-ms; 91_Encrusting-50-ms-shade; 92_Turf; 93_Encrusting; 94_Zoanthid; 95_Brown-acropora; 96_Sponge; 97_Blue-acropora; 98_Pink-sponge; 99_Turf-on-massive; Blue Pools, Heron Reef, Australia; Bommie, Heron Reef, Australia; Canyon, Heron Reef, Australia; Comment of event; Date/Time of event; Elevation of event; Event label; Latitude of event; Location of event; Longitude of event; North Bommie, Heron Reef, Australia; Plate ledge, Heron Reef, Australia; Reef flat, Heron Reef, Australia; Reflectance, total; SPEC; Spectrophotometer; Spectrophotometer, Ocean Optics USB2000; Wavelength
Online Access:https://doi.org/10.1594/PANGAEA.804589
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author Roelfsema, Christiaan M
Phinn, Stuart R
author_facet Roelfsema, Christiaan M
Phinn, Stuart R
collection Datos científicos de ciencias marinas y ambientales
contents Underwater spectral reflectance was measured for selected biotic and abiotic coral reef features of Heron Reef from June 25-30, 2006. Spectral reflectance's of 105 different benthic types were obtained in-situ. An Ocean Optics USB2000 spectrometer was deployed in an custom made underwater housing with a 0.5 m fiber-optic probe mounted next to an artificial light source. Spectral readings were collected with the probe(bear fibre) about 5 cm from the target to ensure that the target would fill the field of view of the fiber optic (FOV diameter ~4.4 cm), as well as to reduce the attenuating effect of the intermediate water (Roelfsema et al., 2006). Spectral readings included for one target included: 1 reading of the covered spectral fibre to correct for instrument noise, 1 reading of spectralon panel mounted on divers wrist to measure incident ambient light, and 8 readings of the target. Spectral reflectance was calculated for each target by first subtracting the instrument noise reading from each other reading. The corrected target readings were then divided by the corrected spectralon reading resulting in spectral reflectance of each target reading. An average target spectral reflectance was calculated by averaging the eight individual spectral reflectance's of the target. If an individual target spectral reflectance was visual considered an outlier, it was not included in the average spectral reflectance calculation. See Roelfsema at al. (2006) for additional info on the methodology of underwater spectra collection.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_804589
institution PANGAEA
language en
publishDate 2012
publisher PANGAEA
record_format pangaea
spellingShingle Spectral reflectance library of selected biotic and abiotic coral reef features in Heron Reef
Roelfsema, Christiaan M
Phinn, Stuart R
01_Montipora; 02_Chlorodesmis; 03_Montipora-blue; 04_Montipora-brown; 05_Gorgonian; 06_Soft-coral; 07_Sand/rock; 08_Foliose-coral; 09_Montipora-purple; 10_Dead-branching; 100_Acropora-light-brown; 101_Acropora-dark-brown; 102_Montipora-green; 103_rec:1062-1069; 104_Holothurian; 11_Laurencia; 12_Gorgonian; 13_Fluoresent-coral; 14_Encrusting-brown; 15_Digitate-coral; 16_Chlorodesmis-not-shaded; 16_Chlorodesmis-shaded; 17_Acropora-light; 18_Brown-coral; 19_Rubble-2; 20_Fire-coral; 21_Acropora; 22_Montipora-green; 23_Dead-plate-200; 24_Dead-plate-100; 25_Coral-line; 26_Acropora-brown-1; 27_Acropora-yellow-1; 28_Acropora-turf-1; 29_Acropora-brown-2; 30_Acropora-yellow-2; 31_Acropora-turf-2; 32_Goniostera; 33_Digitate; 34_Rubble/turf; 35_Coral-encrusting; 36_Coraline; 37_Montipora-blue; 38_Acropora-brown; 39_Digitate-green; 40_Green-algae; 41_Acropora-blue; 42_Acropora-light-brown; 43_Acropora-light; 44_Acropora-brown; 45_Halimeda; 46_Coraline; 47_Rock; 48_Massive-live; 49_Foliose-turf; 50_Foliose-white; 51_Foliose-live; 52_Digitate-live; 53_Digitate-dead; 54_Acropora-turf; 55_Acropora-live; 56_Acropora-turf; 57_Acropora-live; 58_Acropora-blue; 59_Lobophora; 60_Porites; 61_Turf-on-porites; 62_Live-encrusting; 63_Turf-encrusting; 64_Laurencia-green; 65_Laurencia-red; 66_Halimeda; 67_Cholorodesmis; 68_Caulerpa; 69_Caulerpa-2; 70_Caulerpa-3; 71_Dictyota; 72_Dictyota-sand; 73_Turbinaria; 74_Enteromorpha; 75_Algae-sand; 76_Algae-no-sand; 77_Algae-green; 78_Turbinaria; 79_Sand; 80_Sand-BMA; 81_Pocillopora; 82_Laurencia-red; 83_Laurencia-green; 84_Fuzzy-algae; 85_Porites; 86_Giant-clam; 87_Red-sponge; 88_Turtle; 89_Encrusting-20-ms; 90_Encrusting-50-ms; 91_Encrusting-50-ms-shade; 92_Turf; 93_Encrusting; 94_Zoanthid; 95_Brown-acropora; 96_Sponge; 97_Blue-acropora; 98_Pink-sponge; 99_Turf-on-massive; Blue Pools, Heron Reef, Australia; Bommie, Heron Reef, Australia; Canyon, Heron Reef, Australia; Comment of event; Date/Time of event; Elevation of event; Event label; Latitude of event; Location of event; Longitude of event; North Bommie, Heron Reef, Australia; Plate ledge, Heron Reef, Australia; Reef flat, Heron Reef, Australia; Reflectance, total; SPEC; Spectrophotometer; Spectrophotometer, Ocean Optics USB2000; Wavelength
Underwater spectral reflectance was measured for selected biotic and abiotic coral reef features of Heron Reef from June 25-30, 2006. Spectral reflectance's of 105 different benthic types were obtained in-situ. An Ocean Optics USB2000 spectrometer was deployed in an custom made underwater housing with a 0.5 m fiber-optic probe mounted next to an artificial light source. Spectral readings were collected with the probe(bear fibre) about 5 cm from the target to ensure that the target would fill the field of view of the fiber optic (FOV diameter ~4.4 cm), as well as to reduce the attenuating effect of the intermediate water (Roelfsema et al., 2006). Spectral readings included for one target included: 1 reading of the covered spectral fibre to correct for instrument noise, 1 reading of spectralon panel mounted on divers wrist to measure incident ambient light, and 8 readings of the target. Spectral reflectance was calculated for each target by first subtracting the instrument noise reading from each other reading. The corrected target readings were then divided by the corrected spectralon reading resulting in spectral reflectance of each target reading. An average target spectral reflectance was calculated by averaging the eight individual spectral reflectance's of the target. If an individual target spectral reflectance was visual considered an outlier, it was not included in the average spectral reflectance calculation. See Roelfsema at al. (2006) for additional info on the methodology of underwater spectra collection.
title Spectral reflectance library of selected biotic and abiotic coral reef features in Heron Reef
topic 01_Montipora; 02_Chlorodesmis; 03_Montipora-blue; 04_Montipora-brown; 05_Gorgonian; 06_Soft-coral; 07_Sand/rock; 08_Foliose-coral; 09_Montipora-purple; 10_Dead-branching; 100_Acropora-light-brown; 101_Acropora-dark-brown; 102_Montipora-green; 103_rec:1062-1069; 104_Holothurian; 11_Laurencia; 12_Gorgonian; 13_Fluoresent-coral; 14_Encrusting-brown; 15_Digitate-coral; 16_Chlorodesmis-not-shaded; 16_Chlorodesmis-shaded; 17_Acropora-light; 18_Brown-coral; 19_Rubble-2; 20_Fire-coral; 21_Acropora; 22_Montipora-green; 23_Dead-plate-200; 24_Dead-plate-100; 25_Coral-line; 26_Acropora-brown-1; 27_Acropora-yellow-1; 28_Acropora-turf-1; 29_Acropora-brown-2; 30_Acropora-yellow-2; 31_Acropora-turf-2; 32_Goniostera; 33_Digitate; 34_Rubble/turf; 35_Coral-encrusting; 36_Coraline; 37_Montipora-blue; 38_Acropora-brown; 39_Digitate-green; 40_Green-algae; 41_Acropora-blue; 42_Acropora-light-brown; 43_Acropora-light; 44_Acropora-brown; 45_Halimeda; 46_Coraline; 47_Rock; 48_Massive-live; 49_Foliose-turf; 50_Foliose-white; 51_Foliose-live; 52_Digitate-live; 53_Digitate-dead; 54_Acropora-turf; 55_Acropora-live; 56_Acropora-turf; 57_Acropora-live; 58_Acropora-blue; 59_Lobophora; 60_Porites; 61_Turf-on-porites; 62_Live-encrusting; 63_Turf-encrusting; 64_Laurencia-green; 65_Laurencia-red; 66_Halimeda; 67_Cholorodesmis; 68_Caulerpa; 69_Caulerpa-2; 70_Caulerpa-3; 71_Dictyota; 72_Dictyota-sand; 73_Turbinaria; 74_Enteromorpha; 75_Algae-sand; 76_Algae-no-sand; 77_Algae-green; 78_Turbinaria; 79_Sand; 80_Sand-BMA; 81_Pocillopora; 82_Laurencia-red; 83_Laurencia-green; 84_Fuzzy-algae; 85_Porites; 86_Giant-clam; 87_Red-sponge; 88_Turtle; 89_Encrusting-20-ms; 90_Encrusting-50-ms; 91_Encrusting-50-ms-shade; 92_Turf; 93_Encrusting; 94_Zoanthid; 95_Brown-acropora; 96_Sponge; 97_Blue-acropora; 98_Pink-sponge; 99_Turf-on-massive; Blue Pools, Heron Reef, Australia; Bommie, Heron Reef, Australia; Canyon, Heron Reef, Australia; Comment of event; Date/Time of event; Elevation of event; Event label; Latitude of event; Location of event; Longitude of event; North Bommie, Heron Reef, Australia; Plate ledge, Heron Reef, Australia; Reef flat, Heron Reef, Australia; Reflectance, total; SPEC; Spectrophotometer; Spectrophotometer, Ocean Optics USB2000; Wavelength
url https://doi.org/10.1594/PANGAEA.804589