Difference between revisions of "GEOSS AIP Air Quality"

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===What's New for the Ad Hoc Advisory Committee ===
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===What's New===
 
* 2008-09-15: Set up workspace for GEOSS AIP AQ Scenario
 
* 2008-09-15: Set up workspace for GEOSS AIP AQ Scenario
  
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=== Session Agenda===
 
=== Session Agenda===
 
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* Primary Participants: EPA, ESIP AQ Cluster, ICT4EO, ISPRA, Northrop Grumman, VIEWS, Washington Univ
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* Contributing Participants: CIESIN, Compusult, ESA, ESRI, GOES-R and GMU, INCOSE, NASA World Wind, NOAA NCDC GOSIC, NOAA SNAAP
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* Topics
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** Air Quality and Human Health
 +
** Proposing formation of a GEOSS Air Quality Community of  Practice
 +
** Wildland fire example
 +
** AIRNow system proposed with interoperable interfaces
 +
** user-defined areas for selected variables calculated by WPS
 +
** SensorWeb which might apply best to AirQuality if the air sensors
 +
** State of environment, emissions, and human health.
 +
** intercontinental pollutant transport model
 +
** Decision system pattern for AQ
 +
** Global surfaces of population counts, densities, and quality measure of population-weighted mean geographic unit area, at two scales.
 +
** Development of RM-ODP viewpoint descriptions

Revision as of 10:02, September 15, 2008

What's New

  • 2008-09-15: Set up workspace for GEOSS AIP AQ Scenario

Resources (See all..)

GEO: Home | About | Chairs Letter | Meetings | Brochure | Documents
GEOSS: Architecture and Data | Science and Technology | User Interface | Capacity Building | GEOSS AIP AQ Scenario | Core AI Report | Other Resources

Session Agenda

  • Primary Participants: EPA, ESIP AQ Cluster, ICT4EO, ISPRA, Northrop Grumman, VIEWS, Washington Univ
  • Contributing Participants: CIESIN, Compusult, ESA, ESRI, GOES-R and GMU, INCOSE, NASA World Wind, NOAA NCDC GOSIC, NOAA SNAAP
  • Topics
    • Air Quality and Human Health
    • Proposing formation of a GEOSS Air Quality Community of Practice
    • Wildland fire example
    • AIRNow system proposed with interoperable interfaces
    • user-defined areas for selected variables calculated by WPS
    • SensorWeb which might apply best to AirQuality if the air sensors
    • State of environment, emissions, and human health.
    • intercontinental pollutant transport model
    • Decision system pattern for AQ
    • Global surfaces of population counts, densities, and quality measure of population-weighted mean geographic unit area, at two scales.
    • Development of RM-ODP viewpoint descriptions