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Effects of nonlinear model response on allocation of streamflow depletion: exemplified by the case of Beaver Creek,USA
Authors:David P Ahlfeld  James C Schneider  Charles P Spalding
Institution:1.Department of Civil and Environmental Engineering,University of Massachusetts Amherst,Amherst,USA;2.Olsson Associates,Lincoln,USA;3.McDonald Morrissey Associates, Inc.,Concord,USA
Abstract:Anomalies found when apportioning responsibility for streamflow depletion are examined. The anomalies arise when responsibility is assigned to the two states that contribute to depletion of Beaver Creek in the Republican River Basin in the United States. The apportioning procedure for this basin presumes that the sum of streamflow depletions, computed by comparing simulation model runs with and without groundwater pumping from individual states, approximates the streamflow depletion when both states are pumping. In the case study presented here, this presumed superposition fails dramatically. The stream drying and aquifer-storage depletion, as represented in the simulation model used for allocation, are examined in detail to understand the hydrologic and numerical basis for the severe nonlinear response. Users of apportioning procedures that rely on superposition should be aware of the presence and likely magnitude of nonlinear responses in modeling tools.
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