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Stage‐discharge uncertainty derived with a non‐stationary rating curve in the Choluteca River,Honduras
Authors:I Westerberg  J‐L Guerrero  J Seibert  K J Beven  S Halldin
Institution:1. Department of Earth Sciences, Uppsala University, Villav?gen 16, SE‐752 36 Uppsala, Sweden;2. IVL Swedish Environmental Research Institute, Stockholm, Sweden;3. Civil Engineering Department, National Autonomous University of Honduras, Blv. Suyapa Ciudad Universitaria, F. M. Tegucigalpa, Honduras;4. Department of Geography, University of Zurich, Winterthurerstrasse 190, CH‐8057 Zurich, Switzerland;5. Department of Physical Geography and Quaternary Geology, Stockholm University, SE‐106 91 Stockholm, Sweden;6. Lancaster Environment Centre, Lancaster University, Lancaster LA1 4YQ, UK
Abstract:Uncertainty in discharge data must be critically assessed before data can be used in, e.g. water resources estimation or hydrological modelling. In the alluvial Choluteca River in Honduras, the river‐bed characteristics change over time as fill, scour and other processes occur in the channel, leading to a non‐stationary stage‐discharge relationship and difficulties in deriving consistent rating curves. Few studies have investigated the uncertainties related to non‐stationarity in the stage‐discharge relationship. We calculated discharge and the associated uncertainty with a weighted fuzzy regression of rating curves applied within a moving time window, based on estimated uncertainties in the observed rating data. An 18‐year‐long dataset with unusually frequent ratings (1268 in total) was the basis of this study. A large temporal variability in the stage‐discharge relationship was found especially for low flows. The time‐variable rating curve resulted in discharge estimate differences of ? 60 to + 90% for low flows and ± 20% for medium to high flows when compared to a constant rating curve. The final estimated uncertainty in discharge was substantial and the uncertainty limits varied between ? 43 to + 73% of the best discharge estimate. Copyright © 2010 John Wiley & Sons, Ltd.
Keywords:discharge  uncertainty  alluvial river  stage‐discharge  rating curve  fuzzy regression
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