Past and future forest composition and distribution in temperate mountain ranges is strongly influenced by temperature and snowpack. We used LANDCLIM, a spatially explicit, dynamic vegetation model, to simulate forest dynamics for the last 16,000 years and compared the simulation results to pollen and macrofossil records at five sites on the Olympic Peninsula (Washington, USA). To address the hydrological effects of climate-driven variations in snowpack on simulated forest dynamics, we added a simple snow accumulation-and-melt module to the vegetation model and compared simulations with and without the module. LANDCLIM produced realistic present-day species composition with respect to elevation and precipitation gradients. Over the last 16,...
The global vegetation response to climate and atmospheric CO<sub>2</sub> changes between the last gl...
A general snow accumulation and melt model was developed to (1)determine how accurately snow accumul...
Future vegetation shifts under changing climate are uncertain for forests with infrequent stand-repl...
The mode and tempo of forest compositional change during periods of rapid climate change, including ...
The mode and tempo of forest compositional change during periods of rapid climate change, including ...
Explanations for areas of endemism often involve relative climatic stability, or low climate velocit...
Explanations for areas of endemism often involve relative climatic stability, or low climate velocit...
Mountain vegetation is strongly affected by temperature and is expected to shift upwards with climat...
In mountainous regions of the western United States, snow is a primary control on ecohydrological pr...
Abstract A full global atmosphere-ocean-land vegetation model is used to examine the coupled climate...
Thesis (Master's)--University of Washington, 2021At the end of glacial periods, warmer temperatures ...
Reconstructions of the mid-Holocene climate, 6000 years before present, suggest that spring temperat...
The global vegetation response to climate and atmospheric CO₂ changes between the last glacial maxim...
Warming temperatures are projected to greatly alter many forests in the Pacific Northwest. MC2 is a ...
Future vegetation shifts under changing climate are uncertain for forests with infrequent stand-repl...
The global vegetation response to climate and atmospheric CO<sub>2</sub> changes between the last gl...
A general snow accumulation and melt model was developed to (1)determine how accurately snow accumul...
Future vegetation shifts under changing climate are uncertain for forests with infrequent stand-repl...
The mode and tempo of forest compositional change during periods of rapid climate change, including ...
The mode and tempo of forest compositional change during periods of rapid climate change, including ...
Explanations for areas of endemism often involve relative climatic stability, or low climate velocit...
Explanations for areas of endemism often involve relative climatic stability, or low climate velocit...
Mountain vegetation is strongly affected by temperature and is expected to shift upwards with climat...
In mountainous regions of the western United States, snow is a primary control on ecohydrological pr...
Abstract A full global atmosphere-ocean-land vegetation model is used to examine the coupled climate...
Thesis (Master's)--University of Washington, 2021At the end of glacial periods, warmer temperatures ...
Reconstructions of the mid-Holocene climate, 6000 years before present, suggest that spring temperat...
The global vegetation response to climate and atmospheric CO₂ changes between the last glacial maxim...
Warming temperatures are projected to greatly alter many forests in the Pacific Northwest. MC2 is a ...
Future vegetation shifts under changing climate are uncertain for forests with infrequent stand-repl...
The global vegetation response to climate and atmospheric CO<sub>2</sub> changes between the last gl...
A general snow accumulation and melt model was developed to (1)determine how accurately snow accumul...
Future vegetation shifts under changing climate are uncertain for forests with infrequent stand-repl...