HR: 1340h
AN: H13A-0963 [Abstracts]
TI: The Sierra Nevada-San Joaquin Hydrologic Observatory (SNSJHO): A WATERS Network Test
Bed
AU: * Fisher, J
EM: jfisher@ucmerced.edu
AF: Environmental Systems Program and Sierra Nevada Research Institute, University of
California, Merced, Merced, CA 95340, United States
AU: Meng, X
EM: xmeng@ucmerced.edu
AF: Environmental Systems Program and Sierra Nevada Research Institute, University of
California, Merced, Merced, CA 95340, United States
AU: Rice, R
EM: rrice@ucmerced.edu
AF: Environmental Systems Program and Sierra Nevada Research Institute, University of
California, Merced, Merced, CA 95340, United States
AU: Butler, C
EM: cbutler@ucmerced.edu
AF: Environmental Systems Program and Sierra Nevada Research Institute, University of
California, Merced, Merced, CA 95340, United States
AU: Molotch, N
EM: molotch@seas.ucla.edu
AF: Department of Civil & Environmental Engineering, UCLA, Los Angeles, CA 90095, United
States
AU: Harmon, T C
EM: tharmon@ucmerced.edu
AF: Environmental Systems Program and Sierra Nevada Research Institute, University of
California, Merced, Merced, CA 95340, United States
AU: Bales, R
EM: rbales@ucmerced.edu
AF: Environmental Systems Program and Sierra Nevada Research Institute, University of
California, Merced, Merced, CA 95340, United States
AB:
A mountain-to-valley virtual hydrologic observatory in Central California provides a focus for data and information
in support of hydrologic research, a testbed for prototype measurement systems, and guidance for development
of measurement and cyber infrastructure in an actual observatory. The multiple rivers and watersheds making up
the 60,000 km2 greater San Joaquin drainage are physically disconnected by mountain-front dams that provide
flood control, hydropower, seasonal water delivery and recreation. However, the mountain and valley portions are
institutionally connected in multiple ways. For example, each year the winter snowpack and watershed conditions
determine the magnitude of annual runoff. Errors in snowpack measurements and runoff forecasts have huge
economic implications for valley water users. Second, valley flood control, water quality, irrigation demand and
hydropower operations have a very strong interest in influencing mountain watershed management. The
broader aim of the Sierra Nevada-San Joaquin Hydrologic Observatory is to build research infrastructure and
promote research for improving the knowledge base for sound hydrologic management in the Sierra Nevada,
San Joaquin Valley and across the Western U.S. In the Sierra Nevada the current focus is on developing spatially
distributed instrument clusters that, when blended with remotely sensed data, will improve water balance
closure from hillslope to watershed scales. Five instrument clusters at or just above the rain-snow transition are
in place and under development. In the San Joaquin Valley, the focus is on sensor systems for observing
fertilizer application rates in agriculture, groundwater-surface water exchanges in rivers, and flow and mixing in
the confluence zones between the main stem San Joaquin and tributary Merced Rivers. A common digital library
and analysis framework further links the mountain and valley portions of the virtual observatory (see
https://eng.ucmerced.edu/dev00/snsjno).
DE: 1848 Monitoring networks
SC: Hydrology [H]
MN: 2007 Fall Meeting