Data · dataset · 2026
On the radiative impact of biomass-burning aerosols in the Arctic: The August 2017 case study
Listed in National Center for Atmospheric Research
Boreal fires have increased during the last years and are projected to become more intense and frequent as a consequence of climate change.
Description
Wildfires produce a wide range of effects on the Arctic climate and ecosystem, and understanding these effects is crucial for predicting the future evolution of the Arctic region. This study focuses on the impact of the long-range transport of biomass-burning aerosol into the atmosphere and the corresponding radiative perturbation in the shortwave frequency range.
As a case study, we investigate an intense biomass-burning (BB) event which took place in summer 2017 in Canada and subsequent northeastward transport of gases and particles in the plume leading to exceptionally high values (0.86) of Aerosol Optical Depth (AOD) at 500 nm measured in northwestern Greenland on 21 August 2017. This work characterizes the BB plume measured at the Thule High Arctic Atmospheric Observatory (THAAO; 76.53âN, 68.74âW) in August 2017 by assessing the associated shortwave aerosol direct radiative impact over the THAAO and extending this evaluation over the broader region (60âNâ80âN, 110âWâ0âE).
Read the rest (2 more)
The radiative transfer simulations with MODTRAN6.0 estimated an aerosol heating rate of up to 0.5 K/day in the upper aerosol layer (8â12 km). The direct aerosol radiative effect (ARE) vertical profile shows a maximum negative value of â45.4 Wmâ2 for a 78â solar zenith angle above THAAO at 3 km altitude. A cumulative surface ARE of â127.5 TW is estimated to have occurred on 21 August 2017 over a portion (â¼3.1Ã106 km2) of the considered domain (60âNâ80âN, 110âWâ0âE).
ARE regional mean daily values over the same portion of the domain vary between â65 and â25 Wmâ2. Although this is a limited temporal event, this effect can have significant influence on the Arctic radiative budget, especially in the anticipated scenario of increasing wildfires.
Links
Get the data
- Publisher page n2t.org/ark:/85065/d7mc93jb ↗
documentation · download · from data ucar edu
Where it is published
- data.ucar.edu /dataset/on-the-radiative-impact-of-biomass-burning-aerosols-in… ↗
National Center for Atmospheric Research dataset page
landing page · from data ucar edu
Catalogue records · 1
- CKAN API data.ucar.edu/api/3/action/package_show?id=4a0352e0-69e9-43bd-9c44-f2972b202… ↗
metadata API · from data ucar edu
Topics
- From keywords
- Earth & Environmental Science · Ocean & Atmospheric Science
Provenance · 1 source records, 7 field assertions
| Source | Key | Last seen | Raw |
|---|---|---|---|
| National Center for Atmospheric Research | 4a0352e0-69e9-43bd-9c44-f2972b20281f | 10 d ago | JSON v1 |
| Field | Assertion | Extractor | Evidence |
|---|---|---|---|
| concepts[field].local:field:earth-environmental | mapping · data ucar edu | connector:data_ucar_edu@1.0.0 | |
| concepts[field].local:field:ocean-atmospheric | mapping · data ucar edu | connector:data_ucar_edu@1.0.0 | |
| created_date | source · data ucar edu | connector:data_ucar_edu@1.0.0 | |
| description | source · data ucar edu | connector:data_ucar_edu@1.0.0 | /notes |
| publication_date | source · data ucar edu | connector:data_ucar_edu@1.0.0 | |
| title | source · data ucar edu | connector:data_ucar_edu@1.0.0 | /title |
| updated_date | source · data ucar edu | connector:data_ucar_edu@1.0.0 |