A NEW LOOK AT FLOOD RISK DETERMINATION1
- 1 October 1989
- journal article
- Published by Wiley in Jawra Journal of the American Water Resources Association
- Vol. 25 (5) , 933-943
- https://doi.org/10.1111/j.1752-1688.1989.tb05407.x
Abstract
The probability distributions of annual peak flows used in flood risk analysis quantify the risk that a design flood will be exceeded. But the parameters of these distributions are themselves to a degree uncertain and this uncertainty increases the risk that the flood protection provided will in fact prove to be inadequate. The increase in flood risk due to parameter uncertainty is small when a fairly long record of data is available and the annual flood peaks are serially independent, which is the standard assumption in flood frequency analysis. But standard tests for serial independence are insensitive to the type of grouping of high and low values in a time series, which is measured by the Hurst coefficient. This grouping increases the parameter uncertainty considerably. A study of 49 annual peak flow series for Canadian rivers shows that many have a high Hurst coefficient. The corresponding increase in flood risk due to parameter uncertainty is shown to be substantial even for rivers with a long record, and therefore should not be neglected. The paper presents a method of rationally combining parameter uncertainty due to serial correlation, and the stochastic variability of peak flows in a single risk assessment. In addition, a relatively simple time series model that is capable of reproducing the observed serial correlation of flood peaks is presented.Keywords
This publication has 14 references indexed in Scilit:
- Accumulated basin storage as a factor in the correlation structure of annual peak flows on the Red RiverCanadian Journal of Civil Engineering, 1986
- CORRELATION OF ANNUAL PEAK FLOWS FOR PENNSYLVANIA STREAMSJawra Journal of the American Water Resources Association, 1985
- The effect of clustering of flood peaks on a flood risk analysis for the Red RiverCanadian Journal of Civil Engineering, 1985
- Operational assessment of hydrologic models of long‐term persistenceWater Resources Research, 1977
- Bayesian inference and decision making for extreme hydrologic eventsWater Resources Research, 1975
- A Bayesian framework for the use of regional information in hydrologyWater Resources Research, 1975
- The Hurst Phenomenon: A puzzle?Water Resources Research, 1974
- FIRM RESERVOIR YIELD—HOW RELIABLE ARE HISTORIC HYDROLOGICAL RECORDS?Hydrological Sciences Bulletin, 1973
- Broken line process derived as an approximation to fractional noiseWater Resources Research, 1972
- A Fast Fractional Gaussian Noise GeneratorWater Resources Research, 1971