1994•International Journal of Remote SensingRequires access

Estimates of water quality in coastal waters using multi-date Landsat Thematic Mapper data

Charitha Bandula Pattiaratchi, Paul S. Lavery, A. Wyllie, P. Hick

Open publisher page 84 citations

Abstract

An evaluation of Landsat Thematic Mapper (TM) data for the routine monitoring of surface chlorophyll concentration (C) and Secchi disk depth (SOD, a measure of the water clarity) used Cockburn Sound as a study area. Multi-temporal empirical algorithms to predict these parameters have been developedfrom the atmospherically-corrected satellite-received radiance and field data collected at the time of the satellite overpass. Highly significant, predictive algorithms for the surface C (range: 0·2–2·7 μg 1−1) and SOD (range: 4–15m) were obtained using bands I and 3 of the Thematic mapper. It is shown that a high confidence may be placed on the predictions using these algorithms and therefore it offers a cost-effective tool for complementing regular monitoring programmes.

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What this paper is about

An evaluation of Landsat Thematic Mapper (TM) data for the routine monitoring of surface chlorophyll concentration (C) and Secchi disk depth (SOD, a measure of the water clarity) used Cockburn Sound as a study area. Multi-temporal empirical algorithms to predict these parameters have been developedfrom the atmospherically-corrected satellite-received radiance and field data collected at the time of the satellite overpass. Highly significant, predictive algorithms for the surface C (range: 0·2–2·7 μg 1−1) and SOD (range: 4–15m) were obtained using bands I and 3 of the Thematic mapper. It is shown that a high confidence may be placed on the predictions using these algorithms and therefore it offers a cost-effective tool for complementing regular monitoring programmes.

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Available abstract

An evaluation of Landsat Thematic Mapper (TM) data for the routine monitoring of surface chlorophyll concentration (C) and Secchi disk depth (SOD, a measure of the water clarity) used Cockburn Sound as a study area. Multi-temporal empirical algorithms to predict these parameters have been developedfrom the atmospherically-corrected satellite-received radiance and field data collected at the time of the satellite overpass. Highly significant, predictive algorithms for the surface C (range: 0·2–2·7 μg 1−1) and SOD (range: 4–15m) were obtained using bands I and 3 of the Thematic mapper. It is shown that a high confidence may be placed on the predictions using these algorithms and therefore it offers a cost-effective tool for complementing regular monitoring programmes.

Key concepts: Thematic Mapper, Radiance, Remote sensing, Satellite, Thematic map, Secchi disk, Environmental science, Water quality

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