A geometry-dependent surface Lambertian-equivalent reflectivity product for UV–Vis retrievals – Part 2: Evaluation over open ocean

Author:

Fasnacht ZacharyORCID,Vasilkov Alexander,Haffner DavidORCID,Qin Wenhan,Joiner Joanna,Krotkov NickolayORCID,Sayer Andrew M.ORCID,Spurr Robert

Abstract

Abstract. Satellite-based cloud, aerosol, and trace-gas retrievals from ultraviolet (UV) and visible (Vis) wavelengths depend on the accurate representation of surface reflectivity. Current UV and Vis retrieval algorithms typically use surface reflectivity climatologies that do not account for variation in satellite viewing geometry or surface roughness. The concept of geometry-dependent surface Lambertian-equivalent reflectivity (GLER) is implemented for water surfaces to account for surface anisotropy using a Case 1 water optical model and the Cox–Munk slope distribution for ocean surface roughness. GLER is compared with Lambertian-Equivalent reflectivity (LER) derived from the Ozone Monitoring Instrument (OMI) for clear scenes at 354, 388, 440, and 466 nm. We show that GLER compares well with the measured LER data over the open ocean and captures the directionality effects not accounted for in climatological LER databases. Small biases are seen when GLER and the OMI-derived LER are compared. GLER is biased low by up to 0.01–0.02 at Vis wavelengths and biased high by around 0.01 in the UV, particularly at 354 nm. Our evaluation shows that GLER is an improvement upon climatological LER databases as it compares well with OMI measurements and captures the directionality effects of surface reflectance.

Publisher

Copernicus GmbH

Subject

Atmospheric Science

Reference71 articles.

1. Ahn, C., Torres, O., and Jethva, H.: Assessment of OMI near-UV aerosol optical depth over land, J. Geophys. Res.-Atmos., 119, 2457–2473, https://doi.org/10.1002/2013JD020188, 2014. a

2. Austin, R. W.: The remote sensing of spectral radiance from below the ocean surface, Optical Aspects of Oceanography, edited by: Jerlov, N. G. and Nielsen, E. S., Academic Press, London, 317–344, 1974. a

3. Cetinic, I., McClain, C. R., and Werdell, P. J.: Pre-Aerosol, Clouds, and Ocean Ecosystem (PACE) Mission Science Definition Team Report, Volume 2, PACE Technical Report Series, 2018. a

4. Cox, C. and Munk, W.: Statistics of the sea surface derived from sun glitter, J. Mar. Res., 13, 198–227, 1954. a, b, c

5. Dave, J. V.: Effect of aerosol on the estimation of total ozone in an atmospheric column from the measurements of the ultraviolet radiance, J. Atmos. Sci., 35, 899–911, https://doi.org/10.1175/1520-0469(1978)035<0899:EOAOTE>2.0.CO;2, 1978. a

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