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What is Rainfall-Runoff Model

Handbook of Research on Predictive Modeling and Optimization Methods in Science and Engineering
The model is a mathematical model describing the rainfall-runoff relations of a rainfall catchment area, drainage basin, or watershed.
Published in Chapter:
Usage of Differential Evolution Algorithm in the Calibration of Parametric Rainfall-Runoff Modeling
Umut Okkan (Balikesir University, Turkey), Nuray Gedik (Balikesir University, Turkey), and Halil Uysal (Balikesir University, Turkey)
DOI: 10.4018/978-1-5225-4766-2.ch022
Abstract
In recent years, global optimization algorithms are used in many engineering applications. Calibration of certain parameters at conceptualization of hydrological models is one example of these. An important issue in interpreting the effects of climate change on the basin depends on selecting an appropriate hydrological model. Not only climate change impact assessment studies, but also many water resources planning studies refer to such modeling applications. In order to obtain reliable results from these hydrological models, calibration phase of the models needs to be done well. Hence, global optimization methods are utilized in the calibration process. In this chapter, the differential evolution algorithm (DEA), which has rare application in the hydrological modeling literature, was explained. As an application, the use of the DEA algorithm in the hydrological model calibration phase was mentioned. DYNWBM, a lumped model with five parameters, was selected as the hydrological model. The calibration and then validation period performances of the DEA based DYNWBM model were tested and also compared with other global optimization algorithms. According to the results derived from the study, hydrological model appropriately reflects the rainfall-runoff relation of basin for both periods.
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