Accurate determination of radiative energy fluxes over the Arctic is of crucial importance for understanding atmosphere-surface interactions, melt and refreezing cycles of the snow and ice cover, and the role of the Arctic in the global energy budget. Satellite-based estimates can provide comprehensive spatiotemporal coverage, but the accuracy and comparability of the existing data sets must be ascertained to facilitate their use. Here we compare radiative flux estimates from Clouds and the Earth's Radiant Energy System (CERES) Synoptic 1-degree (SYN1deg)/Energy Balanced and Filled, Global Energy and Water Cycle Experiment (GEWEX) surface energy budget, and our own experimental FluxNet / Satellite Application Facility on Climate Monitoring cLoud, Albedo and RAdiation (CLARA) data against in situ observations over Arctic sea ice and the Greenland Ice Sheet during summer of 2007. In general, CERES SYN1deg flux estimates agree best with in situ measurements, although with two particular limitations: (1) over sea ice the upwelling shortwave flux in CERES SYN1deg appears to be underestimated because of an underestimated surface albedo and (2) the CERES SYN1deg upwelling longwave flux over sea ice saturates during midsummer. The Advanced Very High Resolution Radiometer-based GEWEX and FluxNet-CLARA flux estimates generally show a larger range in retrieval errors relative to CERES, with contrasting tendencies relative to each other. The largest source of retrieval error in the FluxNet-CLARA downwelling shortwave flux is shown to be an overestimated cloud optical thickness. The results illustrate that satellite-based flux estimates over the Arctic are not yet homogeneous and that further efforts are necessary to investigate the differences in the surface and cloud properties which lead to disagreements in flux retrievals. Plain Language Summary The amounts of solar and thermal radiative energies toward and away from the Earth's surface over the Arctic are the main driver of, e.g., the annual melt and freezing cycle of ice and snow. In this paper, we investigate how state-of-the-art satellite-based data sets of these radiative energy fluxes agree, or disagree, with each other and reference measurements made in the Arctic Ocean and on the Greenland Ice Sheet. We found that different data sets have not only individual strengths but also individual weaknesses which should be improved upon to enable a cohesive investigation of the radiative energy balance at annual and decadal time scales.
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Natl Inst Space Res, Satellite & Meteorol Sensors Div DISSM, Cachoeira Paulista, SP, BrazilNatl Inst Space Res, Satellite & Meteorol Sensors Div DISSM, Cachoeira Paulista, SP, Brazil
Gava, Maria Livia L. M.
Costa, Simone M. S.
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Natl Inst Space Res, Satellite & Meteorol Sensors Div DISSM, Cachoeira Paulista, SP, BrazilNatl Inst Space Res, Satellite & Meteorol Sensors Div DISSM, Cachoeira Paulista, SP, Brazil
Costa, Simone M. S.
Porfirio, Anthony C. S.
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Res Inst Meteorol & Water Resources, Meteorol Dept, Monitoring Unit GEMET NUMON, Fortaleza, Ceara, BrazilNatl Inst Space Res, Satellite & Meteorol Sensors Div DISSM, Cachoeira Paulista, SP, Brazil
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Finnish Meteorol Inst, Erik Palmenin Aukio 1,POB 503, FI-00101 Helsinki, FinlandFinnish Meteorol Inst, Erik Palmenin Aukio 1,POB 503, FI-00101 Helsinki, Finland
Riihela, Aku
Kallio, Viivi
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Finnish Meteorol Inst, Erik Palmenin Aukio 1,POB 503, FI-00101 Helsinki, FinlandFinnish Meteorol Inst, Erik Palmenin Aukio 1,POB 503, FI-00101 Helsinki, Finland
Kallio, Viivi
Devraj, Sarvesh
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Energy & Resources Inst, Darbari Seth Block,IHC Complex,Lodhi Rd, New Delhi 110003, IndiaFinnish Meteorol Inst, Erik Palmenin Aukio 1,POB 503, FI-00101 Helsinki, Finland
Devraj, Sarvesh
Sharma, Anu
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TERI Sch Adv Studies, Vasant Kunj Inst Area 10, New Delhi 110070, IndiaFinnish Meteorol Inst, Erik Palmenin Aukio 1,POB 503, FI-00101 Helsinki, Finland
Sharma, Anu
Lindfors, Anders V.
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Finnish Meteorol Inst, Erik Palmenin Aukio 1,POB 503, FI-00101 Helsinki, FinlandFinnish Meteorol Inst, Erik Palmenin Aukio 1,POB 503, FI-00101 Helsinki, Finland
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Univ Colorado Boulder, Mortenson Ctr Global Engn, Boulder, CO 80309 USA
Reg Ctr Mapping Resources Dev, Nairobi, KenyaUniv Colorado Boulder, Mortenson Ctr Global Engn, Boulder, CO 80309 USA
Macharia, Denis
Fankhauser, Katie
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Univ Colorado Boulder, Mortenson Ctr Global Engn, Boulder, CO 80309 USAUniv Colorado Boulder, Mortenson Ctr Global Engn, Boulder, CO 80309 USA
Fankhauser, Katie
Selker, John S.
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Oregon State Univ, Dept Biol & Ecol Engn c, Corvallis, OR USAUniv Colorado Boulder, Mortenson Ctr Global Engn, Boulder, CO 80309 USA
Selker, John S.
Neff, Jason C.
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Univ Colorado Boulder, Dept Environm Studies, Sustainabil Innovat Lab Colorado, Boulder, CO USAUniv Colorado Boulder, Mortenson Ctr Global Engn, Boulder, CO 80309 USA
Neff, Jason C.
Thomas, Evan A.
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Univ Colorado Boulder, Mortenson Ctr Global Engn, Boulder, CO 80309 USAUniv Colorado Boulder, Mortenson Ctr Global Engn, Boulder, CO 80309 USA