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Evapotranspiration from Wetland and Open-Water Sites at Upper Klamath Lake, Oreg (Paperback): Marshall W Gannett, Daniel J... Evapotranspiration from Wetland and Open-Water Sites at Upper Klamath Lake, Oreg (Paperback)
Marshall W Gannett, Daniel J Polette, David I Stannard
R508 Discovery Miles 5 080 Ships in 10 - 15 working days
Analysis of 1997-2008 Groundwater Level Changes in the Upper Deschutes Basin, Central Oregon (Paperback): Kenneth E. Lite,... Analysis of 1997-2008 Groundwater Level Changes in the Upper Deschutes Basin, Central Oregon (Paperback)
Kenneth E. Lite, Marshall W Gannett
R493 Discovery Miles 4 930 Ships in 10 - 15 working days
Evapotranspiration from Marsh and Open-Water Sites at Upper Klamath Lake, Oregon, 2008-2010 - Usgs Scientific Investigations... Evapotranspiration from Marsh and Open-Water Sites at Upper Klamath Lake, Oregon, 2008-2010 - Usgs Scientific Investigations Report 2013-5014 (Paperback)
et al; David I Stannard, Marshall W Gannett
R420 R388 Discovery Miles 3 880 Save R32 (8%) Ships in 10 - 15 working days

Water allocation in the Upper Klamath Basin has become difficult in recent years due to the increase in occurrence of drought coupled with continued high water demand. Upper Klamath Lake is a central component of water distribution, supplying water downstream to the Klamath River, supplying water for irrigation diversions, and providing habitat for various species within the lake and surrounding wetlands. Evapotranspiration (ET) is a major component of the hydrologic budget of the lake and wetlands, and yet estimates of ET have been elusive-quantified only as part of a lumped term including other substantial water-budget components. To improve understanding of ET losses from the lake and wetlands, measurements of ET were made from May 2008 through September 2010. The eddy-covariance method was used to monitor ET at two wetland sites continuously during this study period and the Bowen-ratio energy-balance method was used to monitor open-water lake evaporation at two sites during the warmer months of the 3 study years. Vegetation at one wetland site (the bulrush site) consists of a virtual monoculture of hardstem bulrush (formerly Scirpus acutus, now Schoenoplectus acutus), and at the other site (the mixed site) consists of a mix of about 70 percent bulrush, 15 percent cattail (Typha latifolia), and 15 percent wocus (Nuphar polysepalum). Measured ET at these two sites was very similar (means were 2.5 percent) and mean wetland ET is computed as a 70 to 30 percent weighted average of the bulrush and mixed sites, respectively, based on community type distribution estimated from satellite imagery.

Groundwater Simulation and Management Models for the Upper Klamath Basin, Oregon and California (Paperback): Brian J. Wagner,... Groundwater Simulation and Management Models for the Upper Klamath Basin, Oregon and California (Paperback)
Brian J. Wagner, Kenneth E Light Jr, Marshall W Gannett
R500 Discovery Miles 5 000 Ships in 10 - 15 working days
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