JOURNAL ARTICLE

Uncertainty of Flood Forecasting Based on Radar Rainfall Data Assimilation

Xinchi ChenLiping ZhangChristopher J. GippelLijie ShanShaodan ChenWei Yang

Year: 2016 Journal:   Advances in Meteorology Vol: 2016 Pages: 1-12   Publisher: Hindawi Publishing Corporation

Abstract

Precipitation is the core data input to hydrological forecasting. The uncertainty in precipitation forecast data can lead to poor performance of predictive hydrological models. Radar-based precipitation measurement offers advantages over ground-based measurement in the quantitative estimation of temporal and spatial aspects of precipitation, but errors inherent in this method will still act to reduce the performance. Using data from White Lotus River of Hubei Province, China, five methods were used to assimilate radar rainfall data transformed from the classifiedZ-Rrelationship, and the postassimilation data were compared with precipitation measured by rain gauges. The five sets of assimilated rainfall data were then used as input to the Xinanjiang model. The effect of precipitation data input error on runoff simulation was analyzed quantitatively by disturbing the input data using the Breeding of Growing Modes method. The results of practical application demonstrated that the statistical weight integration and variational assimilation methods were superior. The corresponding performance in flood hydrograph prediction was also better using the statistical weight integration and variational methods compared to the others. It was found that the errors of radar rainfall data disturbed by the Breeding of Growing Modes had a tendency to accumulate through the hydrological model.

Keywords:
Data assimilation Precipitation Radar Quantitative precipitation forecast Flood myth Meteorology Flood forecasting Environmental science Surface runoff Computer science Climatology Geography Geology

Metrics

14
Cited By
1.47
FWCI (Field Weighted Citation Impact)
36
Refs
0.84
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Precipitation Measurement and Analysis
Physical Sciences →  Earth and Planetary Sciences →  Atmospheric Science
Hydrology and Watershed Management Studies
Physical Sciences →  Environmental Science →  Water Science and Technology
Meteorological Phenomena and Simulations
Physical Sciences →  Earth and Planetary Sciences →  Atmospheric Science

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