2018
DOI: 10.5194/amt-11-4153-2018
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Correction of CCI cloud data over the Swiss Alps using ground-based radiation measurements

Abstract: Abstract. The validation of long-term cloud data sets retrieved from satellites is challenging due to their worldwide coverage going back as far as the 1980s. A trustworthy reference cannot be found easily at every location and every time. Mountainous regions present a particular problem since ground-based measurements are sparse. Moreover, as retrievals from passive satellite radiometers are difficult in winter due to the presence of snow on the ground, it is particularly important to develop new ways to eval… Show more

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“…NOAA-19 flies in a sun-synchronous orbit in an ascending node, having an approximate Equator crossing time of 13:30 local time when it was launched. Previously, validation of the Cloud_CCI dataset has typically focused on latitudes outside of the Arctic (see Jeanneret et al, 2018). In this study, ground-based measurements from one sub-Arctic site at Hyytiälä, Finland (61.84 • N, 24.29 • E), and three Arctic sites at NSA (North Slope of Alaska), USA (71.32 (Rutan et al, 2001;Ji and Shi, 2012;Sporre et al, 2016).…”
Section: Introductionmentioning
confidence: 99%
“…NOAA-19 flies in a sun-synchronous orbit in an ascending node, having an approximate Equator crossing time of 13:30 local time when it was launched. Previously, validation of the Cloud_CCI dataset has typically focused on latitudes outside of the Arctic (see Jeanneret et al, 2018). In this study, ground-based measurements from one sub-Arctic site at Hyytiälä, Finland (61.84 • N, 24.29 • E), and three Arctic sites at NSA (North Slope of Alaska), USA (71.32 (Rutan et al, 2001;Ji and Shi, 2012;Sporre et al, 2016).…”
Section: Introductionmentioning
confidence: 99%