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Hydrologic Analysis of the Cache la Poudre River Basin

Hydrologic Analysis of the Cache la Poudre River Basin
Author: United States. Army. Corps of Engineers. Omaha District
Publisher:
Total Pages: 40
Release: 1988
Genre: Cache la Poudre River Watershed (Colo.)
ISBN:

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Calibration of Watershed Models

Calibration of Watershed Models
Author: Qingyun Duan
Publisher: John Wiley & Sons
Total Pages: 356
Release: 2003-01-10
Genre: Science
ISBN: 087590355X

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Published by the American Geophysical Union as part of the Water Science and Application Series, Volume 6. During the past four decades, computer-based mathematical models of watershed hydrology have been widely used for a variety of applications including hydrologic forecasting, hydrologic design, and water resources management. These models are based on general mathematical descriptions of the watershed processes that transform natural forcing (e.g., rainfall over the landscape) into response (e.g., runoff in the rivers). The user of a watershed hydrology model must specify the model parameters before the model is able to properly simulate the watershed behavior.


Colorado Water

Colorado Water
Author:
Publisher:
Total Pages: 42
Release: 2013
Genre: Water resources development
ISBN:

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The scope of [Colorado Water] is devoted to enhancing communication between Colorado water users and managers and faculty at the research universities in the state.


Cache River Basin

Cache River Basin
Author: Misganaw Demissie
Publisher:
Total Pages: 110
Release: 1990
Genre: Cache River Watershed (Ill.)
ISBN:

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Hydrological Modeling of the Upper South Saskatchewan River Basin

Hydrological Modeling of the Upper South Saskatchewan River Basin
Author: Cameron Dunning
Publisher:
Total Pages: 96
Release: 2009
Genre:
ISBN:

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This thesis presents a method for calibrating regional scale hydrologic models using the upper South Saskatchewan River watershed as a case study. Regional scale hydrologic models can be very difficult to calibrate due to the spatial diversity of their land types. To deal with this diversity, both a manual calibration method and a multi-basin automated calibration method were applied to a WATFLOOD hydrologic model of the watershed. Manual calibration was used to determine the effect of each model parameter on modeling results. A parameter set that heavily influenced modeling results was selected. Each influential parameter was also assigned an initial value and a parameter range to be used during automated calibration. This manual calibration approach was found to be very effective for improving modeling results over the entire watershed. Automated calibration was performed using a weighted multi-basin objective function based on the average streamflow from six sub-basins. The initial parameter set and ranges found during manual calibration were subjected to the optimization search algorithm DDS to automatically calibrate the model. Sub-basin results not involved in the objective function were considered for validation purposes. Automatic calibration was deemed successful in providing watershed-wide modeling improvements. The calibrated model was then used as a basis for determining the effect of altering rain gauge density on model outputs for both a local (sub-basin) and global (watershed) scale. Four de-clustered precipitation data sets were used as input to the model and automated calibration was performed using the multi-basin objective function. It was found that more accurate results were obtained from models with higher rain gauge density. Adding a rain gauge did not necessarily improve modeled results over the entire watershed, but typically improved predictions in the sub-basin in which the gauge was located.


Cache River Basin Study

Cache River Basin Study
Author: Misganaw Demissie
Publisher:
Total Pages: 46
Release: 1985
Genre: Cache River (Ill.)
ISBN:

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