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Temperature time series and physical properties of snow samples of a high-arctic permafrost site on Svalbard, Norway

Independent measurements of radiation, sensible and latent heat fluxes and the ground heat flux are used to describe the annual cycle of the surface energy budget at a high-arctic permafrost site on Svalbard. During summer, the net short-wave radiation is the dominant energy source, while well developed turbulent processes and the heat flux in the ground lead to a cooling of the surface. About 15% of the net radiation is consumed by the seasonal thawing of the active layer in July and August. The Bowen ratio is found to vary between 0.25 and 2, depending on water content of the uppermost soil layer. During the polar night in winter, the net long-wave radiation is the dominant energy loss channel for the surface, which is mainly compensated by the sensible heat flux and, to a lesser extent, by the ground heat flux, which originates from the refreezing of the active layer. The average annual sensible heat flux of -6.9 W/m2 is composed of strong positive fluxes in July and August, while negative fluxes dominate during the rest of the year. With 6.8 W/m2, the latent heat flux more or less compensates the sensible heat flux in the annual average. Strong evaporation occurs during the snow melt period and particularly during the snow-free period in summer and fall. When the ground is covered by snow, latent heat fluxes through sublimation of snow are recorded, but are insignificant for the average surface energy budget. The near-surface atmospheric stratification is found to be predominantly unstable to neutral, when the ground is snow-free, and stable to neutral for snow-covered ground. Due to long-lasting near-surface inversions in winter, an average temperature difference of approximately 3 K exists between the air temperature at 10 m height and the surface temperature of the snow.

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Westermann, Sebastian, Lüers, Johannes, Langer, Moritz, Piel, Konstanze, Boike, Julia (2009). Dataset: Temperature time series and physical properties of snow samples of a high-arctic permafrost site on Svalbard, Norway. https://doi.org/10.1594/PANGAEA.746722

DOI retrieved: 2009

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-3.0
Source https://doi.org/10.1594/PANGAEA.746722
Author Westermann, Sebastian
Given Name Sebastian
Family Name Westermann
More Authors
Lüers, Johannes
Langer, Moritz
Piel, Konstanze
Boike, Julia
Source Creation 2009
Publication Year 2009
Resource Type application/zip - filename: Westermann_2009
Subject Areas
Name: Ecology

Related Identifiers
Title: The annual surface energy budget of a high-arctic permafrost site on Svalbard, Norway
Identifier: https://doi.org/10.5194/tc-3-245-2009
Type: DOI
Relation: IsSupplementTo
Year: 2009
Source: The Cryosphere
Authors: Westermann Sebastian , Lüers Johannes , Langer Moritz , Piel Konstanze , Boike Julia .