Eucalyptus plantations play an important role in the timber supply and global warming mitigation around the world. Forest age is a critical factor for evaluating and modeling forest structure (e.g., diameter at breast height (DBH), height (H), aboveground carbon stocks (ACS)) and their dynamics. Recently, the spatial distribution of forest age at different scales based on time series remote sensing data has been widely investigated. However, it is unclear whether such data can effectively support the simulation and assessment of forest structure, especially in fast-growing plantation forests. In this study, the physiological principles in predicting growth (3-PG) model was firstly optimized and calibrated using survey and UAV lidar data at ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
The role of managed forests will be essential in addressing the challenges of climate change mitigat...
Abstract Background LiDAR remote sensing is a rapidly...
Forests are an important component in the earth system. They cover nearly one third of the land surf...
The collection of spatial information to quantify changes to the state and condition of the environm...
Eucalyptus grows rapidly and can grow up to 10 m per year, making them an important source of wood s...
Forest age serves as an essential factor in determining the accuracy of historical and future carbon...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Labeled as a fast-growing tree species, eucalyptus has outstanding carbon sequestration capacity. Fo...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
The role of managed forests will be essential in addressing the challenges of climate change mitigat...
Abstract Background LiDAR remote sensing is a rapidly...
Forests are an important component in the earth system. They cover nearly one third of the land surf...
The collection of spatial information to quantify changes to the state and condition of the environm...
Eucalyptus grows rapidly and can grow up to 10 m per year, making them an important source of wood s...
Forest age serves as an essential factor in determining the accuracy of historical and future carbon...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Labeled as a fast-growing tree species, eucalyptus has outstanding carbon sequestration capacity. Fo...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...
Global vegetation models (GVMs) simulate CO2, water and energy fluxes at large scales, typically no ...