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Cloud Remote Sensing with EPIC/DSCOVR Observations: A Sensitivity Study with Radiative Transfer SimulationsThe Earth Polychromatic Imaging Camera (EPIC) onboard the Deep Space Climate Observatory (DSCOVR) views nearly the whole sunlit face of the Earth with 10 spectral bands ranging from the UV to the near-infrared, including two oxygen absorbing bands centered at 764 nm (A-band) and 687.75 nm (B-band). Clouds are among the primary remote sensing targets using EPIC images because of their important impacts on the Earth’s radiation budget. In order to facilitate the EPIC cloud data product development, we have built a radiative transfer simulator featuring flexible cloud microphysical parameters, gas absorptions, and the instrument line shape functions for each EPIC band. The radiative transfer simulator is used to explore the sensitivity of EPIC observations on liquid-phase cloud microphysical parameters, including optical depth, geometric thickness, and cloud top height. We found that the ratios of the reflectances in the oxygen A and B bands to their respective continuum measurements can be used to increase the confidence level of cloud masking over scenes with sun-glint. In addition, the 388 nm band can be used to differentiate low and high clouds with the uncertainty of roughly 2–3 km. Combining this information with the oxygen absorption bands, the cloud geometric thickness can be obtained with the rough uncertainty of 3–4 km.
Document ID
20190025331
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Meng Gao
(Science Systems and Applications (United States) Lanham, Maryland, United States)
Peng-Wang Zhai
(University of Maryland, Baltimore County Baltimore, Maryland, United States)
Yuekui Yang
(Goddard Space Flight Center Greenbelt, Maryland, United States)
Yongxiang Hu
(Langley Research Center Hampton, Virginia, United States)
Date Acquired
May 23, 2019
Publication Date
March 29, 2019
Publication Information
Publication: Journal of Quantitative Spectroscopy and Radiative Transfer
Publisher: Elsevier / Pergamon
Volume: 230
Issue Publication Date: June 1, 2019
ISSN: 0022-4073
Subject Category
Earth Resources And Remote Sensing
Report/Patent Number
GSFC-E-DAA-TN68949
Report Number: GSFC-E-DAA-TN68949
ISSN: 0022-4073
Funding Number(s)
CONTRACT_GRANT: NNG15HQ01C
CONTRACT_GRANT: NNX15AK87G
CONTRACT_GRANT: 80NSSC18K0345
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
Single Expert
Keywords
atmospheric and ocean optics
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