HR: 1340h
AN: H23C-1440 [Abstracts]
TI: Soil moisture patterns and streamflow source areas in semi-arid catchment
AU: * Williams, C J
EM: christopherwilliams1@mail.boisestate.edu
AF: Department of Geosciences, 1910 University Dr
Boise State University, Boise, ID 83725
United States
AU: McNamara, J P
EM: jmcnamar@boisestate.edu
AF: Department of Geosciences, 1910 University Dr
Boise State University, Boise, ID 83725
United States
AU: Chandler, D
EM: david.chandler@usu.edu
AF: Department of Plant, Soils, and Biometeorology, Utah State University
4820 Old Main Hall, Logan, UT 83712
AB:
Hydrologists are challenged with partitioning processes controlling hillslope hydrology and stream responses over various
scales. Several topographic and wetness indices have been proposed for use in distributed hydrologic models. This study
both investigated hillslope flowpaths and tested available terrain and wetness based indices for modeling soil moisture
patterns and hillslope hydrologic processes in semi-arid headwater catchments. Soil moisture patterns were characterized from
soil moisture content measurements from the near-surface and simulated (SHAW model) soil moisture contents at depth. Weekly
soil moisture maps for the 2005 water year show a saturated subsurface source area near the channel head early in the fall
wet-up period and apparently maintained base flow for the ephemeral stream. Statistical analyses of the controls on soil
moisture concurred with the development and later reduction of the saturated subsurface source area and respective subsequent
initiation and cessation of streamflow at the site.
Seasonal soil moisture patterns were statistically compared with site physical and biological characteristics to assess the
temporal and spatial variability of controls on soil moisture. Results suggest that controls on soil moisture patterns and
hillslope processes at the site vary with hydrologic regime and are different from hydrologic controls commonly observed
under humid, steady state conditions. Modified topographic wetness indices were created to characterize the observed
hydrologic controls. Observed soil moisture patterns were more positively correlated with modified indices than indices
commonly reported in literature. Additionally, the performance of modified and commonly used indices exhibited seasonality
indicating that a multi-index approach to distributed modeling may be necessary to accurately simulate seasonal variation in
soil moisture patterns in semi-arid climates.
DE: 1804 Catchment
DE: 1860 Streamflow
SC: Hydrology [H]
MN: Fall Meeting 2005