JOURNAL ARTICLE

Real-Time Data Assimilation for Operational Ensemble Streamflow Forecasting

Jasper A. VrugtHoshin V. GuptaB. Ó. NualláinWillem Bouten

Year: 2006 Journal:   Journal of Hydrometeorology Vol: 7 (3)Pages: 548-565   Publisher: American Meteorological Society

Abstract

Abstract Operational flood forecasting requires that accurate estimates of the uncertainty associated with model-generated streamflow forecasts be provided along with the probable flow levels. This paper demonstrates a stochastic ensemble implementation of the Sacramento model used routinely by the National Weather Service for deterministic streamflow forecasting. The approach, the simultaneous optimization and data assimilation method (SODA), uses an ensemble Kalman filter (EnKF) for recursive state estimation allowing for treatment of streamflow data error, model structural error, and parameter uncertainty, while enabling implementation of the Sacramento model without major modification to its current structural form. Model parameters are estimated in batch using the shuffled complex evolution metropolis stochastic-ensemble optimization approach (SCEM-UA). The SODA approach was implemented using parallel computing to handle the increased computational requirements. Studies using data from the Leaf River, Mississippi, indicate that forecast performance improvements on the order of 30% to 50% can be realized even with a suboptimal implementation of the filter. Further, the SODA parameter estimates appear to be less biased, which may increase the prospects for finding useful regionalization relationships.

Keywords:
Data assimilation Ensemble Kalman filter Streamflow Kalman filter Computer science Flood forecasting Ensemble forecasting National weather service Flood myth Environmental science Meteorology Extended Kalman filter Machine learning Drainage basin Artificial intelligence

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Citation History

Topics

Hydrology and Watershed Management Studies
Physical Sciences →  Environmental Science →  Water Science and Technology
Flood Risk Assessment and Management
Physical Sciences →  Environmental Science →  Global and Planetary Change
Meteorological Phenomena and Simulations
Physical Sciences →  Earth and Planetary Sciences →  Atmospheric Science
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