Improving satellite-retrieved surface radiative fluxes in polar regions using a smart sampling approach

This study presents a data set of daily, 1 km resolution Greenland ice sheet (GrIS) surface mass balance (SMB) covering the period 1958–2015. Applying corrections for elevation, bare ice albedo and accumulation bias, the high-resolution product is statistically downscaled from the native daily outpu...

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Bibliographic Details
Published in:The Cryosphere
Main Authors: Van Tricht, Kristof (author), Lhermitte, S.L.M. (author), Gorodetskaya, Irina V. (author), van Lipzig, Nicole P. M. (author)
Format: Article in Journal/Newspaper
Language:English
Published: 2016
Subjects:
Online Access:http://resolver.tudelft.nl/uuid:cf0e0e66-1b50-490e-9eb8-13f9ecf22073
https://doi.org/10.5194/tc-10-2379-2016
Description
Summary:This study presents a data set of daily, 1 km resolution Greenland ice sheet (GrIS) surface mass balance (SMB) covering the period 1958–2015. Applying corrections for elevation, bare ice albedo and accumulation bias, the high-resolution product is statistically downscaled from the native daily output of the polar regional climate model RACMO2.3 at 11 km. The data set includes all individual SMB components projected to a down-sampled version of the Greenland Ice Mapping Project (GIMP) digital elevation model and ice mask. The 1 km mask better resolves narrow ablation zones, valley glaciers, fjords and disconnected ice caps. Relative to the 11 km product, the more detailed representation of isolated glaciated areas leads to increased precipitation over the southeastern GrIS. In addition, the downscaled product shows a significant increase in runoff owing to better resolved low-lying marginal glaciated regions. The combined corrections for elevation and bare ice albedo markedly improve model agreement with a newly compiled data set of ablation measurements. Mathematical Geodesy and Positioning