An ecological process model (BIOME-BGC) was used to assess boreal forest regional net primary production (NPP) and response to short-term, year-to-year weather fluctuations based on spatially explicit, land cover and biomass maps derived by radar remote sensing, as well as soil, terrain and daily weather information. Simulations were conducted at a 30-m spatial resolution, over a 1205 km2 portion of the BOREAS Southern Study Area of central Saskatchewan, Canada, over a 3-year period (1994–1996). Simulations of NPP for the study region were spatially and temporally complex, averaging 2.2 (± 0.6), 1.8 (± 0.5) and 1.7 (± 0.5) Mg C ha−1 year−1 for 1994, 1995 and 1996, respectively. Spatial variability of NPP was strongly controlled by the amoun...
The objective of this study was to assess the performance of the simulated start of the photosynthet...
Freezehaw transitions in boreal landscapes drive critical dynamics in ecosystem and hydrologic activ...
We evaluate the potential of using a process-based ecosystem model (BEPS) for crop biomass mapping a...
Ground and remotely sensed data were collected between 1994 and 1998 as part of the BOReal Ecosystem...
The BOREAS RSS-8 team performed research to evaluate the effect of seasonal weather and landcover he...
We used a terrestrial ecosystem process model, BIOME-BGC, to investigate historical climate change a...
Understanding the processes driving terrestrial vegetation productivity dynamics in boreal ecosystem...
We evaluated whether satellite radar remote sensing of landscape seasonal freeze–thaw cycles provide...
We evaluated whether satellite radar remote sensing of landscape seasonal freeze–thaw cycles provide...
The process-level ecosystem simulation model Biome-BGC was run aspatially for a highly managed fores...
This study used the Biome Biogeochemical Cycles (Biome-BGC) process model to simulate boreal forest ...
This study used the Biome Biogeochemical Cycles (Biome-BGC) process model to simulate boreal forest ...
Over the last century Canadian boreal forests have warmed by 2-3° C, causing growing seasons to leng...
Biogeochemical process models are increasingly employed to simulate current and future forest dynami...
The impact of cold climate on physical and biological processes, especially the role of air and soil...
The objective of this study was to assess the performance of the simulated start of the photosynthet...
Freezehaw transitions in boreal landscapes drive critical dynamics in ecosystem and hydrologic activ...
We evaluate the potential of using a process-based ecosystem model (BEPS) for crop biomass mapping a...
Ground and remotely sensed data were collected between 1994 and 1998 as part of the BOReal Ecosystem...
The BOREAS RSS-8 team performed research to evaluate the effect of seasonal weather and landcover he...
We used a terrestrial ecosystem process model, BIOME-BGC, to investigate historical climate change a...
Understanding the processes driving terrestrial vegetation productivity dynamics in boreal ecosystem...
We evaluated whether satellite radar remote sensing of landscape seasonal freeze–thaw cycles provide...
We evaluated whether satellite radar remote sensing of landscape seasonal freeze–thaw cycles provide...
The process-level ecosystem simulation model Biome-BGC was run aspatially for a highly managed fores...
This study used the Biome Biogeochemical Cycles (Biome-BGC) process model to simulate boreal forest ...
This study used the Biome Biogeochemical Cycles (Biome-BGC) process model to simulate boreal forest ...
Over the last century Canadian boreal forests have warmed by 2-3° C, causing growing seasons to leng...
Biogeochemical process models are increasingly employed to simulate current and future forest dynami...
The impact of cold climate on physical and biological processes, especially the role of air and soil...
The objective of this study was to assess the performance of the simulated start of the photosynthet...
Freezehaw transitions in boreal landscapes drive critical dynamics in ecosystem and hydrologic activ...
We evaluate the potential of using a process-based ecosystem model (BEPS) for crop biomass mapping a...