[1] Surface radiative fluxes are a key driver of the land surface hydrological cycle, but because in situ measurements are sparse, relatively little attention has been focused on their space‐time variations. Recent satellite data and atmospheric model reanalysis products have resulted in data sets that predict most or all terms in the surface energy budget and offer the opportunity to investigate variations in surface radiative fluxes. This study contributes the NASA Energy and Water Cycle Study (NEWS), which is intended to improve estimates of the terrestrial energy budget components for the hydrologic and ecological communities. We analyzed surface downward shortwave (DSW) and longwave radiation (DLW) and albedo over the pan‐Arctic domain...
Using the Variable Infiltration Capacity (VIC) land surface model forced with gridded climatic obser...
Satellite-derived surface radiative fluxes have been recently improved and extended. However, the ac...
This observational study compares seasonal variations of surface fluxes (turbulent, radiative, and s...
[1] Surface radiative fluxes are a key driver of the land surface hydrological cycle, but because in...
Surface radiative fluxes are a key driver of the land surface hydrological cycle, but because in sit...
This study focused on surface radiation budget, one of the essential factors for understanding clima...
We analyze snow cover extent (SCE) trends in the National Oceanic and Atmospheric Administration's (...
Thesis (Ph.D.)--University of Washington, 2012Over the pan-Arctic land area, surface air temperature...
International audienceReanalysis datasets from atmospheric models and satellite products are often u...
The Arctic has become generally a warmer place over the past decades leading to earlier snow melt, p...
Despite the importance of surface energy budgets (SEBs) for land-climate interactions in the Arctic,...
The Arctic climate has changed significantly in the last decades, experiencing a dramatic loss of se...
This study analyzes diurnal and seasonal variations of snow albedo at four Baseline Surface Radiatio...
The climate is warming two to three times faster in the Arctic than in other places on the globe. As...
Using the Variable Infiltration Capacity (VIC) land surface model forced with gridded climatic obser...
Using the Variable Infiltration Capacity (VIC) land surface model forced with gridded climatic obser...
Satellite-derived surface radiative fluxes have been recently improved and extended. However, the ac...
This observational study compares seasonal variations of surface fluxes (turbulent, radiative, and s...
[1] Surface radiative fluxes are a key driver of the land surface hydrological cycle, but because in...
Surface radiative fluxes are a key driver of the land surface hydrological cycle, but because in sit...
This study focused on surface radiation budget, one of the essential factors for understanding clima...
We analyze snow cover extent (SCE) trends in the National Oceanic and Atmospheric Administration's (...
Thesis (Ph.D.)--University of Washington, 2012Over the pan-Arctic land area, surface air temperature...
International audienceReanalysis datasets from atmospheric models and satellite products are often u...
The Arctic has become generally a warmer place over the past decades leading to earlier snow melt, p...
Despite the importance of surface energy budgets (SEBs) for land-climate interactions in the Arctic,...
The Arctic climate has changed significantly in the last decades, experiencing a dramatic loss of se...
This study analyzes diurnal and seasonal variations of snow albedo at four Baseline Surface Radiatio...
The climate is warming two to three times faster in the Arctic than in other places on the globe. As...
Using the Variable Infiltration Capacity (VIC) land surface model forced with gridded climatic obser...
Using the Variable Infiltration Capacity (VIC) land surface model forced with gridded climatic obser...
Satellite-derived surface radiative fluxes have been recently improved and extended. However, the ac...
This observational study compares seasonal variations of surface fluxes (turbulent, radiative, and s...