Vegetation cover and land-use changes induced by human activities have changed the global surface albedo, or the extent to which incoming solar radiation is reflected back to the atmosphere. Forest albedo is a critical variable affecting the Earth's climate, and is still among the main uncertainties of the radiation budget in climate modelling. A synthesis of current research results clearly indicates a need for more reliable quantitative predictions of the effect of forest structure on the global albedo. This paper reports a case study on the application of a forest radiative transfer model in shortwave albedo simulations: we simulate the blue-sky and black-sky albedos of coniferous stands in Finland, and link forest albedo to stand struct...
Uncertainties in estimation of albedo-related radiative forcing cause ambiguity in evaluation of net...
We estimated the magnitude of the radiative forcing (RF) due to changes in albedo following the fore...
Boreal forests are considered as a global carbon (C) sink and are utilized for climate-change mitiga...
Albedo and fraction of absorbed photosynthetically active radiation (FAPAR) determine the shortwave ...
International audienceAlthough forest management is one of the instruments proposed to mitigate clim...
Although forest management is one of the instruments proposed to mitigate climate change, the relati...
Albedo and fraction of absorbed photosynthetically active radiation (FAPAR) determine the shortwave ...
Despite an emerging body of literature linking canopy albedo to forest management, understanding of ...
Predicting the surface albedo of a forest of a given species composition or plant functional type is...
International audienceForest management is considered to be one of the key instruments available to ...
The importance to consider changes in surface albedo and go beyond simple carbon accounting when ass...
Uncertainties in estimation of albedo-related radiative forcing cause ambiguity in evaluation of net...
Land surface albedo is an essential climate variable controlling the planetary radiative energy budg...
Uncertainties in estimation of albedo-related radiative forcing cause ambiguity in evaluation of net...
We estimated the magnitude of the radiative forcing (RF) due to changes in albedo following the fore...
Boreal forests are considered as a global carbon (C) sink and are utilized for climate-change mitiga...
Albedo and fraction of absorbed photosynthetically active radiation (FAPAR) determine the shortwave ...
International audienceAlthough forest management is one of the instruments proposed to mitigate clim...
Although forest management is one of the instruments proposed to mitigate climate change, the relati...
Albedo and fraction of absorbed photosynthetically active radiation (FAPAR) determine the shortwave ...
Despite an emerging body of literature linking canopy albedo to forest management, understanding of ...
Predicting the surface albedo of a forest of a given species composition or plant functional type is...
International audienceForest management is considered to be one of the key instruments available to ...
The importance to consider changes in surface albedo and go beyond simple carbon accounting when ass...
Uncertainties in estimation of albedo-related radiative forcing cause ambiguity in evaluation of net...
Land surface albedo is an essential climate variable controlling the planetary radiative energy budg...
Uncertainties in estimation of albedo-related radiative forcing cause ambiguity in evaluation of net...
We estimated the magnitude of the radiative forcing (RF) due to changes in albedo following the fore...
Boreal forests are considered as a global carbon (C) sink and are utilized for climate-change mitiga...