HR: 1400h
AN: OS33A-08 [Abstracts]
TI: The Multi-sensor Improved SST (MISST) Project
AU: * Gentemann, C L
EM: gentemann@remss.com
AF: Remote Sensing Systems, 438 First St. #200, Santa Rosa, CA 95401, United States
AU: * Gentemann, C L
EM: gentemann@remss.com
AF: University of Miami - RSMAS, 4600 Rickenbacker Cswy, Miami, FL 33149, United States
AU: Wick, G A
EM: gary.a.wick@noaa.gov
AF: NOAA/ESRL/PSD, Mail Code R/PSD3
325 Broadway, Boulder, CO 80305, United States
AU: Cummings, J
EM: cummings@nrlmry.navy.mil
AF: NRL, Oceanography Division, Code 7320, Monterey, CA 93943, United States
AU: Yoe, J
EM: james.g.yoe@noaa.gov
AF: NOAA/NESDIS, E/RA2, Room 808 WWB
5200 Auth Rd, Camp Springs, MD 20746, United States
AU: Minnett, P J
EM: pminnett@rsmas.miami.edu
AF: University of Miami - RSMAS, 4600 Rickenbacker Cswy, Miami, FL 33149, United States
AB:
The MISST project focuses on (1) producing an improved global, daily, high-resolution, sea surface temperature
(SST) product through the combination of observations from complementary infrared and microwave sensors and
(2) demonstrating the impact of improved multi-sensor SST products on operational ocean models, numerical
weather prediction, and tropical cyclone intensity forecasting. Producing a high-quality multi-sensor SST requires
careful inter-calibration of different satellite sensors, calculation of sensor-specific observation errors that
consider environmental variables, location of observation, time of day, and sensor calibration problems;
development of techniques for relating and combining measurements at different depths, spatial resolutions, and
times of the day; and implementation of data fusion methodologies.
A number of new SST data sets and several blended global SSTs are currently being produced by this project.
These new SST data sets have ancillary information important for research and climate studies. The impact of
the high-resolution blended global SSTs on operational weather prediction, hurricane intensity prediction, and
radiance assimilation is being evaluated. These new products and the impact studies will be discussed in
detail. This project will make a direct US contribution to the Global Ocean Data Assimilation Experiment (GODAE)
by working within the GODAE High-Resolution SST Pilot Project (GHRSST-PP), initiated by the international
GODAE steering team, to coordinate the production of a new high-resolution SST.
UR: http:www.misst.org
DE: 1616 Climate variability (1635, 3305, 3309, 4215, 4513)
DE: 1855 Remote sensing (1640)
DE: 4260 Ocean data assimilation and reanalysis (3225)
SC: Ocean Sciences [OS]
MN: 2007 Joint Assembly