HR: 0800h
AN: H31C-0401    [Abstracts]
TI: Reynolds Mountain East and Upper Sheep Creek: Experimental Catchments for Cold Season Hydrologic Research
AU: * Seyfried, M
EM: mseyfrie@nwrc.ars.usda.gov
AF: USDA-ARS Northwest Watershed Research Center, 800 Park Blvd, Boise, ID 83712 United States
AU: Marks, D
EM: dmarks@nwrc.ars.usda.gov
AF: USDA-ARS Northwest Watershed Research Center, 800 Park Blvd, Boise, ID 83712 United States
AU: Flerchinger, G
EM: gflerchi@nwrc.ars.usda.gov
AF: USDA-ARS Northwest Watershed Research Center, 800 Park Blvd, Boise, ID 83712 United States
AU: Winstral, A
EM: awinstra@nwrc.ars.usda.gov
AF: USDA-ARS Northwest Watershed Research Center, 800 Park Blvd, Boise, ID 83712 United States
AU: Murdock, M
EM: mmurdock@nwrc.ars.usda.gov
AF: USDA-ARS Northwest Watershed Research Center, 800 Park Blvd, Boise, ID 83712 United States
AB: Two snow-dominated, headwater catchments within the Reynolds Creek Experimental Watershed (RCEW) were established and in the mid-1960's and continue to be maintained for long-term cold season hydrologic research. Reynolds Mountain East (RME) is a 39 ha in extent ranging in elevation from 2024 to 2139 m in elevation with a mean annual precipitation of about 994 mm, and 523 mm of stream discharge. Streamflow monitoring at RME has been continuous since 1963. Upper Sheep Creek is 26 ha in extent ranging in elevation from 1836 to 2015 m with a mean annual precipitation of 435 mm, and 91 mm of stream discharge. Streamflow was monitored from 1970 to 1975 and from 1983 to present. Precipitation in both catchments is predominately snow. They represent conditions at the source area for stream flow in the semi-arid intermountain west of the USA. Since 1996 more than 60 research papers have been published, and 20 PhD and masters thesis completed describing a broad range of cold season hydrologic process investigations. Current research is directed toward detailed analysis of snow deposition and melt processes as affected by topography and vegetation, and linkages to both atmospheric and below ground water and energy fluxes, groundwater recharge and streamflow generation. The instrumentation and measurement plan, and results from past and current research will be presented. In the near future a prescribed fire at USC will be used to study fire effects on snow hydrology. These experimental catchments represent extensive and carefully instrumented facilities for cold season hydrology research, and can be used as examples for the development of new experimental watersheds.
DE: 1818 Evapotranspiration
DE: 1860 Runoff and streamflow
DE: 1863 Snow and ice (1827)
DE: 1866 Soil moisture
DE: 1884 Water supply
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting