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Using the Climate Forecast System Reanalysis as weather input data for watershed models

Hydrological Processes · 2013 · Vol. 28(22) · pp. 5613–5623
Daniel R. FukaM. Todd WalterCharlotte MacAlisterArthur T. DeGaetanoTammo S. SteenhuisZachary M. Easton

Abstract

Abstract Obtaining representative meteorological data for watershed‐scale hydrological modelling can be difficult and time consuming. Land‐based weather stations do not always adequately represent the weather occurring over a watershed, because they can be far from the watershed of interest and can have gaps in their data series, or recent data are not available. This study presents a method for using the Climate Forecast System Reanalysis (CFSR) global meteorological dataset to obtain historical weather data and demonstrates the application to modelling five watersheds representing different hydroclimate regimes. CFSR data are available globally for each hour since 1979 at a 38‐km resolution. Results show that utilizing the CFSR precipitation and temperature data to force a watershed model provides stream discharge simulations that are as good as or better than models forced using traditional weather gauging stations, especially when stations are more than 10 km from the watershed. These results further demonstrate that adding CFSR data to the suite of watershed modelling tools provides new opportunities for meeting the challenges of modelling un‐gauged watersheds and advancing real‐time hydrological modelling. Copyright © 2013 John Wiley & Sons, Ltd.

Hydrology and Watershed Management StudiesFlood Risk Assessment and ManagementHydrological Forecasting Using AIWatershedEnvironmental scienceClimate Forecast SystemPrecipitationHydrological modellingClimatologyMeteorologyClimate changeHydrology (agriculture)Computer science

Funding

  • Canon Foundation for Scientific Research
  • College of Agriculture and Life Sciences, Texas A and M University
Citations
420
FWCI
18.15
field-weighted impact
References
34
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99%
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References
The NCEP Climate Forecast System Reanalysis
Bulletin of the American Meteorological Society · 2010 · 5,262 citations
Do Nash values have value?
Hydrological Processes · 2007 · 706 citations
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