Although forest management is one of the instruments proposed to mitigate climate change, the relationship between forest management and canopy albedo has been ignored so far by climate models. Here we develop an approach that could be implemented in Earth system models. A stand-level forest gap model is combined with a canopy radiation transfer model and satellite-derived model parameters to quantify the effects of forest thinning on summertime canopy albedo. This approach reveals which parameter has the largest affect on summer canopy albedo: we examined the effects of three forest species (pine, beech, oak) and four thinning strategies with a constant forest floor albedo (light to intense thinning regimes) and five different solar zenith...
Predicting the surface albedo of a forest of a given species composition or plant functional type is...
International audienceSome climate scientists are questioning whether the practice of converting of ...
Uncertainties in estimation of albedo-related radiative forcing cause ambiguity in evaluation of net...
Although forest management is one of the instruments proposed to mitigate climate change, the relati...
Although forest management is one of the instruments proposed to mitigate climate change, the relati...
Despite an emerging body of literature linking canopy albedo to forest management, understanding of ...
International audienceForest management is considered to be one of the key instruments available to ...
Vegetation cover and land-use changes induced by human activities have changed the global surface al...
Albedo and fraction of absorbed photosynthetically active radiation (FAPAR) determine the shortwave ...
Forests are critical in regulating climate by altering the Earth's surface albedo. Therefore, there ...
Albedo and fraction of absorbed photosynthetically active radiation (FAPAR) determine the shortwave ...
Vegetation albedo is a critical component of the Earth's climate system, yet efforts to evaluate and...
Land surface albedo is an essential climate variable controlling the planetary radiative energy budg...
The surface albedo significantly modulates the atmospheric energy budget and, thus, vertical radiati...
Predicting the surface albedo of a forest of a given species composition or plant functional type is...
International audienceSome climate scientists are questioning whether the practice of converting of ...
Uncertainties in estimation of albedo-related radiative forcing cause ambiguity in evaluation of net...
Although forest management is one of the instruments proposed to mitigate climate change, the relati...
Although forest management is one of the instruments proposed to mitigate climate change, the relati...
Despite an emerging body of literature linking canopy albedo to forest management, understanding of ...
International audienceForest management is considered to be one of the key instruments available to ...
Vegetation cover and land-use changes induced by human activities have changed the global surface al...
Albedo and fraction of absorbed photosynthetically active radiation (FAPAR) determine the shortwave ...
Forests are critical in regulating climate by altering the Earth's surface albedo. Therefore, there ...
Albedo and fraction of absorbed photosynthetically active radiation (FAPAR) determine the shortwave ...
Vegetation albedo is a critical component of the Earth's climate system, yet efforts to evaluate and...
Land surface albedo is an essential climate variable controlling the planetary radiative energy budg...
The surface albedo significantly modulates the atmospheric energy budget and, thus, vertical radiati...
Predicting the surface albedo of a forest of a given species composition or plant functional type is...
International audienceSome climate scientists are questioning whether the practice of converting of ...
Uncertainties in estimation of albedo-related radiative forcing cause ambiguity in evaluation of net...