Canopy and aerodynamic conductances (gC and gA) are two of the key land surface biophysical variables that control the land surface response of land surface schemes in climate models. Their representation is crucial for predicting transpiration (λET) and evaporation (λEE) flux components of the terrestrial latent heat flux (λE), which has important implications for global climate change and water resource management. By physical integration of radiometric surface temperature (TR) into an integrated framework of the Penman–Monteith and Shuttleworth–Wallace models, we present a novel approach to directly quantify the canopy-scale biophysical controls on λET and λEE over multiple plant functional types (PFTs) in the Amazon Basin...
We investigated the seasonal patterns of water vapor and sensible heat flux along a tropical biome g...
We investigated the seasonal patterns of Amazonian forest photosynthetic activity, and the effects t...
Earth System Models project a wide range of rainfall changes in the Amazon rainforest, and hence cha...
<p>Canopy and aerodynamic conductances (g<sub>C</sub> and g<sub>A</sub>) are two of the key land sur...
Canopy and aerodynamic conductances (gC and gA) are two of the key land surface biophysical variable...
Tropical forests are an important part of global water and energy cycles, but the mechanisms that dr...
Tropical forests are an important part of global water and energy cycles, but the mechanisms that dr...
Tropical vegetation is a major source of global land surface evapotranspiration, and can thus play a...
Tropical forests are an important part of global water and energy cycles, but the mechanisms that dr...
Tropical vegetation is a major source of global land surface evapotranspiration, and can thus play a...
tEvapotranspiration (E) in the Amazon connects forest function and regional climate via its role in ...
Abstract This work studied the behavior and seasonality of evapotranspiration influenced by biotic a...
Abstract We investigate the atmospheric diurnal variability inside and above the Amazonian rainfores...
LBA research has deepened our understanding of the role of soil water storage, clouds and aerosols i...
We investigated the seasonal patterns of water vapor and sensible heat flux along a tropical biome g...
We investigated the seasonal patterns of Amazonian forest photosynthetic activity, and the effects t...
Earth System Models project a wide range of rainfall changes in the Amazon rainforest, and hence cha...
<p>Canopy and aerodynamic conductances (g<sub>C</sub> and g<sub>A</sub>) are two of the key land sur...
Canopy and aerodynamic conductances (gC and gA) are two of the key land surface biophysical variable...
Tropical forests are an important part of global water and energy cycles, but the mechanisms that dr...
Tropical forests are an important part of global water and energy cycles, but the mechanisms that dr...
Tropical vegetation is a major source of global land surface evapotranspiration, and can thus play a...
Tropical forests are an important part of global water and energy cycles, but the mechanisms that dr...
Tropical vegetation is a major source of global land surface evapotranspiration, and can thus play a...
tEvapotranspiration (E) in the Amazon connects forest function and regional climate via its role in ...
Abstract This work studied the behavior and seasonality of evapotranspiration influenced by biotic a...
Abstract We investigate the atmospheric diurnal variability inside and above the Amazonian rainfores...
LBA research has deepened our understanding of the role of soil water storage, clouds and aerosols i...
We investigated the seasonal patterns of water vapor and sensible heat flux along a tropical biome g...
We investigated the seasonal patterns of Amazonian forest photosynthetic activity, and the effects t...
Earth System Models project a wide range of rainfall changes in the Amazon rainforest, and hence cha...