Despite the importance of high-latitude surface energy budgets (SEBs) for land-climate interactions in the rapidly changing Arctic, uncertainties in their prediction persist. Here, we harmonize SEB observations across a network of vegetated and glaciated sites at circumpolar scale (1994-2021). Our variance-partitioning analysis identifies vegetation type as an important predictor for SEB-components during Arctic summer (June-August), compared to other SEB-drivers including climate, latitude and permafrost characteristics. Differences among vegetation types can be of similar magnitude as between vegetation and glacier surfaces and are especially high for summer sensible and latent heat fluxes. The timing of SEB-flux summer-regimes (when dail...
This paper summarizes and analyses available data on the surface energy balance of Arctic tundra and...
This is the final version. Available from Elsevier via the DOI in this record. Changes in plant cove...
Arctic ecosystems have been afflicted by vast changes in recent decades. Changes in temperature, as ...
Despite the importance of high-latitude surface energy budgets (SEBs) for land-climate interactions ...
Despite the importance of surface energy budgets (SEBs) for land-climate interactions in the Arctic,...
Despite the importance of surface energy budgets (SEBs) for land-climate interactions in the Arctic,...
Global warming will bring about changes in surface energy balance of Arctic ecosystems, which will h...
Despite the importance of surface energy budgets (SEBs) for land-climate interactions in the Arctic,...
Despite the importance of surface energy budgets (SEBs) for land-climate interactions in the Arctic,...
Arctic warming is affecting snow cover and soil hydrology, with consequences for carbon sequestratio...
As global temperatures rise, vegetation types will change, particularly in the northern high latitud...
This paper summarizes and analyses available data on the surface energy balance of Arctic tundra and...
This is the final version. Available from Elsevier via the DOI in this record. Changes in plant cove...
Arctic ecosystems have been afflicted by vast changes in recent decades. Changes in temperature, as ...
Despite the importance of high-latitude surface energy budgets (SEBs) for land-climate interactions ...
Despite the importance of surface energy budgets (SEBs) for land-climate interactions in the Arctic,...
Despite the importance of surface energy budgets (SEBs) for land-climate interactions in the Arctic,...
Global warming will bring about changes in surface energy balance of Arctic ecosystems, which will h...
Despite the importance of surface energy budgets (SEBs) for land-climate interactions in the Arctic,...
Despite the importance of surface energy budgets (SEBs) for land-climate interactions in the Arctic,...
Arctic warming is affecting snow cover and soil hydrology, with consequences for carbon sequestratio...
As global temperatures rise, vegetation types will change, particularly in the northern high latitud...
This paper summarizes and analyses available data on the surface energy balance of Arctic tundra and...
This is the final version. Available from Elsevier via the DOI in this record. Changes in plant cove...
Arctic ecosystems have been afflicted by vast changes in recent decades. Changes in temperature, as ...