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RiverWare simulated daily averaged surface water permit requested diversions and diversions modeled in the spatially refined model region within the Red River Basin. Values reported are for 18 different climate projection scenarios and a historical scenario, from 2010 through 2099 and 1976 through 2005, respectively. The RiverWare model was used to determine the impacts on regulated flows, resevoir levels, and water permit reliability. RiverWare was used for this project because of its ability to simulate water use, reservoir operations, and local/interstate regulations.
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Simulated daily averaged surface water permit requested diversions and diversions modeled in the spatially refined model region within the Canadian River Basin RiverWare model. Values reported are for forty-six (46) scenarios implementing combinations of 1) three various climate model outputs for three various representative concentration pathways, 2) three various reservoir water right policy assumptions, and 3) three various projected future demands from 1983 through 2099. The RiverWare model was used to determine the impacts on regulated flows, reservoir levels, and water permit diversions. RiverWare software was used for this project because of its ability to simulate water use, reservoir operations, water right...
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During the severe drought of 2010-2015, several communities in southeast Oklahoma almost ran out of water. Some of these communities rely on streams and rivers as their sole source of water and when these sources almost ran dry, it left them searching for alternatives and wondering how to continue growing, economically, with this water uncertainty. The possibility of climate change has these communities further concerned, primarily because they do not know what to expect. Previously, the USGS, both Chickasaw and Choctaw Nations collaborated on a project to apply a range of possible climate change scenarios to the Red River watershed to determine future water availability. This study will focus specifically on southeast...
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RiverWare simulated daily regulated streamflow data for modeled locations in the spatially refined model region within the Red River Basin. Values reported are for 18 different climate projection scenarios and a historical scenario, from 2010 through 2099 and 1976 through 2005, respectively. The RiverWare model was used to determine the impacts on regulated flows, lake levels and water permit reliability. RiverWare was used for this project because of its ability to simulate water use, reservoir operations, and local/interstate regulations.
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RiverWare simulated daily reservoir volumes for modeled locations in the spatially refined model region within the Red River Basin. Values reported are for 18 different climate projection scenarios and a historical scenario, from 2010 through 2099 and 1976 through 2005, respectively. The RiverWare model was used to determine the impacts on regulated flows, resevoir levels, and water permit reliability. RiverWare was used for this project because of its ability to simulate water use, reservoir operations, and local/interstate regulations.


    map background search result map search result map Evaluation of Sustainable Water Availability in Drought Prone Watersheds in Southeastern Oklahoma Simulated Daily Regulated Flow Data for Southeast Oklahoma Simulated Daily Reservoir Volume Data for Southeast Oklahoma Simulated Daily Surface Water Permit Requested Diversions and Diversions for Southeast Oklahoma Simulated Daily Requested Diversions and Diversions for Surface Water Permits in the Canadian River Basin of Oklahoma during the years 1983 – 2099 Simulated Daily Requested Diversions and Diversions for Surface Water Permits in the Canadian River Basin of Oklahoma during the years 1983 – 2099 Simulated Daily Regulated Flow Data for Southeast Oklahoma Simulated Daily Reservoir Volume Data for Southeast Oklahoma Simulated Daily Surface Water Permit Requested Diversions and Diversions for Southeast Oklahoma Evaluation of Sustainable Water Availability in Drought Prone Watersheds in Southeastern Oklahoma