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Quantification of Surface Suspended Sediments along a River Dominated Coast with NOAA AVHRR and SeaWiFS Measurements: Louisiana, USAThe ability to quantify suspended sediment concentrations accurately over both time and space using satellite data has been a goal of many environmental researchers over the past few decades This study utilizes data acquired by the NOAA Advanced Very High Resolution Radiometer (AVHRR) and the Orbview-2 Sea-viewing wide field-of-view (SeaWiFS) ocean colour sensor, coupled with field measurements to develop statistical models for the estimation of near-surface suspended sediment and suspended solids "Ground truth" water samples were obtained via helicopter, small boat and automatic water sampler within a few hours of satellite overpasses The NOAA AVHRR atmospheric correction was modified for the high levels of turbidity along the Louisiana coast. Models were developed based on the field measurements and reflectance/radiance measurements in the visible and near infrared Channels of NOAA-14 and Orbview-2 SeaWiFS. The best models for predicting surface suspended sediment concentrations were obtained with a NOAA AVHRR Channel 1 (580-680nm) cubic model, Channel 2 (725-1100 nm) linear mod$ and SeaWiFs Channel 6 (660-68Onm) power modeL The suspended sediment models developed using SeaWiFS Channel 5 (545-565 nm) were inferior, a result that we attribute mainly to the atmospheric correction technique, the shallow depth of the water samples and absorption effects from non-sediment water constituents.
Document ID
20050060954
Acquisition Source
Headquarters
Document Type
Reprint (Version printed in journal)
Authors
Myint, S. W.
(Oklahoma Univ. Norman, OK, United States)
Walker, N. D.
(Louisiana State Univ. Baton Rouge, LA, United States)
Date Acquired
August 22, 2013
Publication Date
January 1, 2002
Publication Information
Publication: International Journal of Remote Sensing
Publisher: Taylor and Francis Ltd.
Volume: 23
Issue: 16
ISSN: 0143-1161
Subject Category
Oceanography
Funding Number(s)
CONTRACT_GRANT: NAG5-9688
Distribution Limits
Public
Copyright
Other

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