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15 Apr 2025 - 23:19 EDT
16 Apr 2025 - 03:19 UTC
GOES-West CONUS - Air Mass
1 hour loop - 12 images - 5 minute update
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Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0216 UTC
Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0221 UTC
Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0226 UTC
Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0231 UTC
Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0236 UTC
Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0241 UTC
Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0246 UTC
Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0251 UTC
Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0256 UTC
Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0301 UTC
Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0306 UTC
Air Mass - RGB based on data from IR & water vapor - 16 Apr 2025 - 0311 UTC
Key for AirMass RGB:
1 - Jet stream / potential vorticity (PV) / deformation zones / dry upper level (dark red / orange)
2 - Cold air mass (dark blue/purple)
3 - Warm air mass (green)
4 - Warm air mass, less moisture (olive/dark orange)
5 - High thick cloud (white)
6 - Mid level cloud (tan/salmon)
7 - Low level cloud (green, dark blue)
8 - Limb effects (purple/blue)
Air Mass RGB is used to diagnose the environment surrounding synoptic systems by enhancing temperature and moisture characteristics of airmasses. Cyclogenesis can be inferred by the identification of warm, dry, ozone-rich descending stratospheric air associated with jet streams and potential vorticity (PV) anomalies. The RGB can be used to validate the location of PV anomalies in model data. Additionally, this RGB can distinguish between polar and tropical airmasses, especially along upper-level frontal boundaries and identify high-, mid-, and low-level clouds.