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<br />\, <br />13:? <br />14. South Platte at Julesburg <br />15. Irrigation Depletion <br /> above Korty <br />16. Flow at Korty <br />17. Flow at Paxton <br />18. Net Sectional Gain <br />19. Flow at North Platte <br />20. Diversion at Keystone <br /> Diversion Dam <br /> <br />. 21. Diversion at Korty <br />Diversion Dam <br /> <br />'22. Sutherland' System Losses <br /> <br />23. North Platte Hydro.Return , <br /> <br />24. Total Demand at North <br />Platte <br /> <br />25. Total Flow at North Platte - <br /> <br />26. Diversions at Maxwell <br /> <br />27. Minimum Demand at Maxwell <br /> <br />* <br />Input data - historic flow. <br /> <br />Input data - USBR Present Condition <br />Depletion for the Julesburg-Korty <br />Section, including Western Canal. <br /> <br />Flow at Julesburg minus Irrigation <br />Depletions above Korty. <br /> <br />Flow at Korty minus the Diversions <br />to the Sutherland System at Korty. <br /> <br />. <br />* <br />Input data. <br /> <br />Flow at Paxton plus the Sectional Gain. <br /> <br />The Releases plus the Spills from <br />McConaughy minus Irrigation Diversions <br />in the Keystone-North Platte Section. <br />Also limited to Canal Capacity. <br /> <br />Is the Flow at Korty minus 500 ACrFt. <br />Bypass (Gate Seepage). Also limited <br />to Canal Capacity. <br /> <br />Average monthly seepage and evaporation <br />losses plus any storage depletions of <br />preceding month. <br /> <br />Sum of Korty and Keystone Diversions <br />minus Sutherland System Losses. <br /> <br />Minimum Demand at Maxwell plus Down <br />River Demand below Maxwell. <br /> <br />Flow of the North Platte at North <br />Platte plus Flow of the South Platte <br />at North Platte plus the North Platte <br />Hydro. Return. <br /> <br />Is equal to the Total Flow at North <br />Platte or limited to Canal Capacity. <br /> <br />Irrigation Demands at Tri-County plus <br />Tri-County Losses (or) (1) set to a <br />maximum power demand when McConaughy <br />is at high content; (2) set to a minimum <br />power demand plus losses at low content, <br />with the irrigation demand greater th~n <br /> <br />2 <br />