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Proceedings Paper

Relationship between sea surface salinity from L-band radiometer and optical features in the East China Sea
Author(s): Bumjun Kil; Derek Burrage; Joel Wesson; Stephan Howden
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Paper Abstract

The East China Sea (ECS) is often obscured from space in the visible and near-visible bands by cloud cover, which prevents remote sensing retrieval of optical properties. However, clouds are transparent to microwaves, and satellites with L-band radiometers have recently been put into orbit to monitor sea surface salinity (SSS). Previous studies have used the mixing of fluvial colored dissolved organic matter (CDOM) near coasts, where the mixing is approximately conservative over short time scales, to estimate SSS. In this study, the usual relationship between CDOM and salinity in the ECS has been used in reverse to estimate CDOM from remotely sensed SSS in the ECS and compare that CDOM with MODIS data. The SSS data used are 7 day composites from NASA’s Aquarius/SAC-D satellite which has an L-band radiometer. The challenges in using this approach are that 1) Aquarius SSS has coarse spatial resolution (150 km), and 2) the ECS has numerous anthropogenic sources of radiofrequency interference which adds noise to the L-band signal for the SSS retrievals. Despite the limits in the method, CDOM distribution in the ECS can be estimated under cloudy conditions. In addition to all-weather retrievals, an additional advantage of the approach is that the algorithm provides an estimate of CDOM absorption that is unaffected by the spectrally similar detritus absorption that can confound optical remote sensing estimates of CDOM.

Paper Details

Date Published: 23 May 2014
PDF: 12 pages
Proc. SPIE 9111, Ocean Sensing and Monitoring VI, 91110A (23 May 2014); doi: 10.1117/12.2052951
Show Author Affiliations
Bumjun Kil, The Univ. of Southern Mississippi (United States)
Derek Burrage, U.S. Naval Research Lab. (United States)
Joel Wesson, U.S. Naval Research Lab. (United States)
Stephan Howden, The Univ. of Southern Mississippi (United States)


Published in SPIE Proceedings Vol. 9111:
Ocean Sensing and Monitoring VI
Weilin W. Hou; Robert A. Arnone, Editor(s)

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