HR: 14:40h
AN: B32C-04 [PDF]
TI: Upland wildfires and fluvial processes: the response of tree populations along a gravel-bed watershed
in the Canadian Rocky Mountains.
AU: * Charron, I
EM: icharron@ucalgary.ca
AF: University of Calgary, Department of Biological Sciences, Calgary, AB T2N 1N4
Canada
AU: Johnson, E A
EM: johnsone@ucalgary.ca
AF: University of Calgary, Department of Biological Sciences, Calgary, AB T2N 1N4
Canada
AB:
In order to better predict the influence of upland processes on watershed responses, we must first understand how forested
systems change along drainage basins. Riparian vegetation studies tend to only consider fluvial disturbances to be of
importance and ignore the impact of other disturbances, such as wildfires. This is partly due to the fact that riparian
research typically only focus on high-order reaches, while little is known about larger, basin-scale processes. The
objective of our research was to determine the relative importance of floods and fires on riparian forests along a drainage
basin. The study was conducted along a gravel-bed river in a small mountainous watershed of the Canadian Rocky Mountains.
Sites were chosen to represent first, second, and third order reaches. At each site, we constructed flood and fire frequency
distributions as well as age structures of the vegetation. The results show that location within the watershed and reach
type (straight or meandering) both dictate whether fires or floods dominated. First, fires dominate on all low-order
reaches, creating even-aged forests. With an increase in drainage area and the onset of meandering, point bars are formed
and the relative importance of floods is increased. Floods dominate on meandering reaches, where bi-modal age distributions
are observed, with young trees found on fluvially-disturbed bars and old trees on older, fire-disturbed surfaces. Along
straight reaches, even-aged distributions tend to occur since floods are typically not large enough to overflow the banks and
fires therefore dominate. The shift in the relative importance of disturbances along the basin indicates that terrestrial
processes differ along a basin, causing changes in forest structure and composition. Incorporating these changes in
watershed models will lead to better predictions of large-scale hydrological processes.
DE: 0400 Biogeosciences
DE: 1824 Geomorphology (1625)
DE: 1851 Plant ecology
SC: Biogeosciences [B]
MN: 2003 Fall Meeting