Effects of low-salinity and high-turbidity waters one mpirical ocean colour algorithms: an example for Southwestern Atlantic waters


Autoria(s): Giannini, Maria Fernanda Colo; Garcia, Carlos Alberto Eiras; Tavano, Virgínia Maria; Ciotti, Áurea Maria
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

11/12/2013

11/12/2013

11/12/2013

Resumo

The spectral reflectance of the sea surface recorded using ocean colour satellite sensors has been used to estimate chlorophyll-a concentrations for decades. However, in bio-optically complex coastal waters, these estimates are compromised by the presence of several other coloured components besides chlorophyll, especially in regions affected by low-salinity waters. The present work aims to (a) describe the influence of the freshwater plume from the La Plata River on the variability of in situ remote sensing reflectance and (b) evaluate the performance of operational ocean colour chlorophyll algorithms applied to Southwestern Atlantic waters, which receive a remarkable seasonal contribution from La Plata River discharges. Data from three oceanographic cruises are used, in addition to a historical regional bio-optical dataset. Deviations found between measured and estimated concentrations of chlorophyll-a are examined in relation to surface water salinity and turbidity gradients to investigate the source of errors in satellite estimates of pigment concentrations. We observed significant seasonal variability in surface reflectance properties that are strongly driven by La Plata River plume dynamics and arise from the presence of high levels of inorganic suspended solids and coloured dissolved materials. As expected, existing operational algorithms overestimate the concentration of chlorophyll-a, especially in waters of low salinity (S<33.5) and high turbidity (Rrs(670)>0.0012 sr−1). Additionally, an updated version of the regional algorithm is presented, which clearly improves the chlorophyll estimation in those types of coastal environment. In general, the techniques presented here allow us to directly distinguish the bio-optical types of waters to be considered in algorithm studies by the ocean colour community.

CNPq (Project numbe 661102/98)

Marinha do Brasil

Identificador

http://www.producao.usp.br/handle/BDPI/43648

10.1016/j.csr.2013.04.013

http://www.sciencedirect.com/science/article/pii/S0278434313001131

Idioma(s)

eng

Publicador

New York

Relação

Continental Shelf Research

Direitos

restrictedAccess

2013 Elsevier Ltd.

Palavras-Chave #Chlorophyll-a #Remote sensing #“Case-2” waters #La Plata River plume
Tipo

article

original article

publishedVersion