HR: 0830h
AN: C41B-0951 [PDF]
TI: Distribution of Soil Dynamics in a Small Mountain Catchment
AU: * Grant, L
EM: LauraGrant@mail.boisestate.edu
AF: Boise State University, Department of Geosciences
1910 University Dr, Boise, ID 83725 United States
AU: Seyfried, M
EM: mseyfrie@nwrc.ars.usda.gov
AF: USDA-ARS-NWRC, 800 Park Blvd., Plaza IV, Suite 105, Boise, ID 83712 United States
AU: Marks, D
EM: Danny@nwrc.ars.usda.gov
AF: USDA-ARS-NWRC, 800 Park Blvd., Plaza IV, Suite 105, Boise, ID 83712 United States
AU: Winstral, A
EM: awinstra@nwrc.ars.usda.gov
AF: USDA-ARS-NWRC, 800 Park Blvd., Plaza IV, Suite 105, Boise, ID 83712 United States
AU: McNamara, J
EM: JMCNAMAR@boisestate.edu
AF: Boise State University, Department of Geosciences
1910 University Dr, Boise, ID 83725 United States
AU: Murdock, M
EM: mmurdock@nwrc.ars.usda.gov
AF: USDA-ARS-NWRC, 800 Park Blvd., Plaza IV, Suite 105, Boise, ID 83712 United States
AB:
Soil moisture in semi-arid regions dominated by winter precipitation is recharged as a bulk influx during spring melt and
dries down quickly during the ensuing months. This timing in combination with various spatially distributed landscape
properties produces distinct spatial soil moisture patterns. The patterns must be recognized in a distributed manner to
account for hydrologic processes of storage and redistribution. This research investigates the spatial correlation among
distributed point measurements of soil moisture, and between soil moisture patterns and landscape properties such as
topography, vegetation, and the spatial snowmelt patterns. We also evaluated data using a combined snowmelt-soil water model
to provide spatially and temporally continuous estimates of net recharge and evapotranspirtation across the watershed.
Recharge estimates were compared with measured streamflow measured at a weir at the base of the watershed. Reynolds Mountain
East (RME) subcatchment in Southwestern Idaho is in an intermountain region exhibiting high variability in topography,
vegetation, and snow distribution. RME encompasses an area of 0.6 km2 with 19 neutron probe access tubes distributed
throughout the catchment. Two years of soil moisture data were collected with supporting climate and snow distribution data.
In addition, leaf area index was measured for different vegetation types. The soil water regime is typically characterized
by two regimes: the spring snow melt and summer dry down with a variable degree of recharge prior to snow fall in the during
the fall. Distributed patterns of soil moisture have distinct correlation to snow and vegetation distribution.
DE: 1818 Evapotranspiration
DE: 1863 Snow and ice (1827)
DE: 1866 Soil moisture
DE: 1894 Instruments and techniques
SC: Cryosphere [C]
MN: 2003 Fall Meeting