File:Smoky Mountain West (8164317820).jpg
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Summary
DescriptionSmoky Mountain West (8164317820).jpg |
Along the Rocky Mountain range, there has been a dearth of snow cover, insect stress in the forests, and a hot spring that has turned into a hot summer. The result by late June 2012 was a surplus of smoke from many dangerous fires raging across the western United States. The map above depicts the relative concentration of aerosols in the skies above the continental United States on June 26, 2012. The map was assembled from data acquired by the Ozone Mapper Profiler Suite (OMPS) on the new Suomi National Polar-orbiting Partnership (S-NPP) satellite. Aerosol are tiny solid and liquid particles that have an outsized impact on weather and climate. Their concentrations are represented above in shades of red and yellow, with the highest concentrations in deep red and the lowest in light yellow. Grays represent clouds or areas where no reliable data were available. In addition to measuring ozone levels in the atmosphere, OMPS can track aerosols (such as smoke particles) as they are lofted and transported by winds. The instrument measures the light scattered and reflected by the atmosphere. Specifically, it observes the difference between the amount of ultraviolet (UV) light the smoke- and dust-filled atmosphere scatters back to the satellite compared to the amount of UV the atmosphere would scatter back if skies were clear. In the image, the aerosol signal is strong to the north and east of the North Schell, Dump, and Wood Hollow fires in Nevada and Utah. Thick smoke plumes from wildfires across Colorado moved east and south into the plains states. Further south in Texas, New Mexico, and Mexico, it is unclear if the aerosols were blown in from distant fires, if there is local burning, or if they are dust storms, which are also a result of hot, dry, and windy weather. The researchers who write “The Smog Blog”—hosted by the University of Maryland–Baltimore County—noted that much of the smoke in the midsection of the country is likely due to fires. Their reading of various instruments suggest that the aerosols lingering in the atmosphere are finer and smaller than the usual signature for dust. Earlier in the week, they noted, western fires were affecting air quality as far away as the U.S. East Coast. NASA image by Jesse Allen, using OMPS data provided courtesy of Colin Seftor (SSAI). Caption by Michael Carlowicz. Instrument: Suomi NPP - OMPS Credit: NASA Earth Observatory NASA Goddard Space Flight Center enables NASA’s mission through four scientific endeavors: Earth Science, Heliophysics, Solar System Exploration, and Astrophysics. Goddard plays a leading role in NASA’s accomplishments by contributing compelling scientific knowledge to advance the Agency’s mission. Follow us on Twitter Like us on Facebook Find us on Instagram |
Date | |
Source | Smoky Mountain West |
Author | NASA Goddard Space Flight Center from Greenbelt, MD, USA |
Licensing
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This image was originally posted to Flickr by NASA Goddard Photo and Video at https://flickr.com/photos/24662369@N07/8164317820. It was reviewed on 17 September 2016 by FlickreviewR and was confirmed to be licensed under the terms of the cc-by-2.0. |
17 September 2016
Public domainPublic domainfalsefalse |
This file is in the public domain in the United States because it was solely created by NASA. NASA copyright policy states that "NASA material is not protected by copyright unless noted". (See Template:PD-USGov, NASA copyright policy page or JPL Image Use Policy.) | ||
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7 November 2012
File history
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 21:27, 17 September 2016 | 720 × 536 (116 KB) | Vanished Account Byeznhpyxeuztibuo | Transferred from Flickr via Flickr2Commons |
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Image title |
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Orientation | Normal |
Horizontal resolution | 72 dpi |
Vertical resolution | 72 dpi |
Software used | Adobe Photoshop CS5 Macintosh |
File change date and time | 11:15, 7 November 2012 |
Color space | sRGB |
Date and time of digitizing | 06:13, 7 November 2012 |
Date metadata was last modified | 06:15, 7 November 2012 |
Unique ID of original document | xmp.did:0380117407206811871F8D587F9D6F22 |