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Satellite-observed changes of surface spectral reflectances due to solar farming and the implication for radiation budget

Bibliographic Data

ID15546152
AuthorsChongxing Fan (0000-0002-3434-937X, University of Michigan), Xianglei Huang (0000-0002-7129-614X, University of Michigan, corresponding author)
Year2020
Volume15
Issue11
Pages114047-114047
Publication date2020-10-02
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/abbdea
OpenAlexW3090450229
LanguageEN
Citations received2
References cited20

Increased deployment of solar farms in the last decade is coincident with continued monitoring of surface spectral reflectances by the moderate resolution imaging spectroradiometers (MODIS) aboard NASA Aqua satellite. By analyzing the surface spectral reflectances retrieved at seven MODIS shortwave bands, this study quantifies the changes of surface spectral reflectances caused by solar farms commissioned in the southwestern US. Our case study using one solar farm indicates a 20%–25% reduction of surface reflectance over the seven MODIS bands due to the solar panel installation. Radiative transfer calculation shows that such a reduction in surface spectral reflectance leads to a ∼23% decrease in the upward shortwave broadband flux at the surface and a ∼14%–18% decrease in the clear-sky reflected shortwave flux at the top of atmosphere (TOA). Though the MODIS surface reflectance retrievals can be affected by other factors such as aerosol or thin-cirrus contaminations, five out of six solar farm sites analyzed here show unambiguously detectable changes of surface reflectances due to solar panel installations. The brighter the surface is at a given MODIS band before the solar-farm construction, the larger the spectral reflectance reduction tends to be. If all the bright deserts, which occupies about 4% of the global surface, were covered with the solar panels similar to what has been studied here, the estimated instantaneous TOA shortwave radiative forcing would be no more than 1.1 W m −2

Atmospheric radiative transfer codes · Atmospheric sciences · Optics · Physics · Radiative transfer · Reflectivity · Remote sensing · Satellite · Shortwave · Shortwave radiation · Spectral bands · Spectroradiometer · Atmospheric aerosols and clouds · Atmospheric and Environmental Gas Dynamics · Atmospheric Ozone and Climate · Environmental Science · Geology · Radiation

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Unique citing works2
Citations per year1
Citation span2024 - 2025 (2)
Citation velocityrecent
Highly citedNo
Citation typesNeutral: 2

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