Publications des scientifiques de l'IRD

Dupouy Cécile, Whiteside A., Tan J., Wattelez G., Murakami H., Andréoli R., Lefèvre Jérôme, Röttgers R., Singh A., Frouin R. (2023). A review of ocean color algorithms to detect trichodesmium oceanic blooms and quantify chlorophyll concentration in shallow coral lagoons of South Pacific archipelagos. Remote Sensing, 15 (21), p. 5194 [22 p.].

Titre du document
A review of ocean color algorithms to detect trichodesmium oceanic blooms and quantify chlorophyll concentration in shallow coral lagoons of South Pacific archipelagos
Année de publication
2023
Type de document
Article référencé dans le Web of Science WOS:001103279100001
Auteurs
Dupouy Cécile, Whiteside A., Tan J., Wattelez G., Murakami H., Andréoli R., Lefèvre Jérôme, Röttgers R., Singh A., Frouin R.
Source
Remote Sensing, 2023, 15 (21), p. 5194 [22 p.]
The oceanic waters of the Southwest Tropical Pacific occupy a vast region including multiple Pacific Island Countries. The state of these waters is determinant for fisheries and the blue economy. Ocean color remote sensing is the main tool to survey the variability and long-term evolution of these large areas that are important for economic development but are affected by climate change. Unlike vast oligotrophic gyres, tropical waters are characterized by numerous archipelagos and islands, with deep and shallow lagoons subjected to the large impacts of the land. Strikingly large dendritic phytoplankton (Trichodesmium) blooms with high levels of chlorophyll, developing within archipelagos, as well as coastal enrichments from various origins may be observed. Algorithms to detect the presence of Trichodesmium have been developed or adapted, as well as algorithms to estimate the chlorophyll concentration ([Chl-a)]. Adapting existing [Chl-a] algorithms does not always yield high, i.e., sufficient, accuracy. A review of published regional bio-optical algorithms developed taking into account the specific phytoplankton composition and minimizing the adverse impacts of particles and the seabed bottom on [Chl-a] determination is presented, as well the bio-optical database that allowed their development. The interest of such algorithms for a variety of applications and scientific accomplishments is highlighted, with a view to further addressing the main biology and biogeochemistry questions, e.g., to determine the true impact of diazotrophs and assess lagoon [Chl-a] variability with the highest confidence. This work anticipates the use of future coarse and high-spatial-resolution and multi- and hyper-spectral satellite imagery in the Pacific.
Plan de classement
Limnologie physique / Océanographie physique [032] ; Télédétection [126]
Description Géographique
PACIFIQUE ; NOUVELLE CALEDONIE ; FIDJI ; VANUATU ; SALOMON ILES ; ZONE TROPICALE
Localisation
Fonds IRD [F B010088675]
Identifiant IRD
fdi:010088675
Contact