NOAA GOES Image Viewer website
27 Sep 2021 - 19:13 EDT
27 Sep 2021 - 23:13 UTC

GOES-West - Sector view: Pacific Southwest - Nighttime Microphysics*

2 hour loop - 24 images - 5 minute update

To enlarge, pause animation & click the image. Hover over popups to zoom. Use slider to navigate.

  

  
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2111 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2111 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2116 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2116 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2121 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2121 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2126 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2126 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2131 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2131 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2136 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2136 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2141 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2141 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2146 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2146 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2151 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2151 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2156 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2156 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2201 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2201 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2206 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2206 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2211 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2211 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2216 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2216 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2221 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2221 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2226 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2226 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2231 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2231 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2236 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2236 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2241 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2241 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2246 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2246 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2251 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2251 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2256 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2256 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2301 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2301 UTC Latitude / Longitude grid
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2306 UTC
Nighttime Microphysics - RGB to distinguish clouds from fog - 27 Sep 2021 - 2306 UTC Latitude / Longitude grid
 

About Nighttime Microphysics

Nighttime Microphysics RGB The distinction between low clouds and fog in satellite imagery is challenging. While the difference between the 10.4 and 3.9 μm channels has been a regularly applied product to meet aviation forecast needs, the Nighttime Microphysics (NtMicro) RGB adds another channel difference (12.4- 10.4 μm) as a proxy to cloud thickness and repeats the use of the 10.4 μm thermal channel to enhance areas of warm (i.e. low) clouds where fog is more likely. The NtMicro RGB is also an efficient tool to quickly identify other cloud types in the mid and upper atmosphere.

• For more details, see the Nighttime Microphysics RGB Quick Guide, (PDF, 1.41 MB)

*GOES-17 Infrared Image Quality

During post-launch testing of the GOES-17 ABI instrument, an issue with the instrument's cooling system was discovered. The loop heat pipe (LHP) subsystem, which transfers heat from the ABI electronics to the radiator, is not operating at its designed capacity. The consequence of this is that the ABI detectors cannot be maintained at their intended temperatures under certain orbital conditions. This is preventing adequate cooling for some of the infrared (IR) channels on the instrument during parts of the night, leading to partial loss of ABI imagery. Learn more.

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