HR: 0800h
AN: A21B-0846 [Abstracts]
TI: Fire and Smoke Monitoring at NOAA' Satellite Service; Applications to Smoke Forecasting
AU: * Stephens, G
EM: george.stephens@noaa.gov
AF: NOAA/NESDIS, 5200 Auth Rd. rm 510, Camp Springs, MD 20746
United States
AU: Ruminski, M
EM: mark.ruminski@noaa.gov
AF: NOAA/NESDIS, 5200 Auth Rd. rm 510, Camp Springs, MD 20746
United States
AB:
The Hazard Mapping System (HMS), developed and run operationally by NOAA's Satellite Services Division (SSD), is a
multiplatform remote sensing approach to detecting fires and smoke over the US and adjacent areas of Canada and Mexico. The
system utilizes sensors on 7 different NOAA and NASA satellites. Automated detection algorithms are employed for each of the
satellites for the fire detects while smoke is delineated by an image analyst. Analyses are quality control by an analyst who
inspects all available imagery and automated fire detects, deleting suspected false detects and adding fires that the
automated routines miss. Graphical, text, and GIS compatible analyses are posted to a web site as soon as updates are
performed, and a final product for a given day is posted early the following morning. All products are archived at NOAA's
National Geophysical Data Center.
Areal extent of detectable smoke is outlined using animated visible imagery, for input to a dispersion and transport model,
the HYbrid Single-Particle Lagrangian Integrated Trajectory (HYSPLIT), developed by NOAA's Air Resources Laboratory (ARL).
Resulting smoke forecasts will soon be used as input to NOAA's Air Quality forecasts. The GOES Aerosol and Smoke Product
(GASP) is an experimental GOES imagery based aerosol optical depth (AOD) product developed by the NESDIS Office of Research
and Applications, being implemented for evaluation by the NESDIS Satellite Analysis Branch for use in smoke and volcanic ash
monitoring. Currently, research is underway in NESDIS' Office of Research and Applications to objectivize smoke delineation
using GASP and MODIS AOD retrievals. NOAA's Operational Significant Event Imagery (OSEI) program processes satellite imagery
of environmentally significant events, including fire, smoke and volcanic ash, visible in operational satellite data. This
imagery is often referred to by fire managers and air quality agencies.
Future plans include the integration of high resolution global data from the European Space Agency's MetOp satellite and
global geostationary satellites.
UR: http://www.ssd.noaa.gov/PS/FIRE/hms.html
DE: 0305 Aerosols and particles (0345, 4801, 4906)
DE: 0345 Pollution: urban and regional (0305, 0478, 4251)
SC: Atmospheric Sciences [A]
MN: Fall Meeting 2005