On the nonlinearity of the catchment instantaneous response function: Insights obtained from dynamic wave modeling

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초록

In the unit hydrograph theory, the catchment response function f to a unit rainfall is described invariant. However, real catchment response is nonlinear in that f varies with rainfall excess rate i e . In particular, the peak f ( t p ) and peak time t p of f are known to follow power functional relationships with i e . We investigated two fundamental knowledge gaps in the emergence of the nonlinearity: (1) the role of hydrodynamics and (2) the linkage with the linear convolution principle. Employing a sophisticated hydrodynamic model of the tRIBS-FEaST, the power-law nonlinearity was captured in simulations for a series of catchments. We found further that the time of concentration decreases with i e , again following a power law. Nevertheless, we found significant limitations in f obtained by deconvoluting S-hydrographs, as it fails to capture the known tendency of the growing skewness with i e . Further, the hydrographs reproduced with the linear convolution, even the nonlinearity is seen in f , deviates from the continuous simulation results. Alternatively, a series of f was directly simulated as hydrographs from the hydrodynamic model, initiated with varying initial water depth h o all over the catchment, but no additional water or rainfall imposed. This alternative method successfully reproduces not only the nonlinear peak variation but also the skewness variation with h o , which is attributed to the relaxation of the linear convolution framework.

키워드

Dynamic wave model; Rainfall-runoff; Nonlinearity; Unit hydrograph; UNIT-HYDROGRAPH; RUNOFF; WATER; TIME; GEOMORPHOLOGY; DISPERSION; DERIVATION
제목
On the nonlinearity of the catchment instantaneous response function: Insights obtained from dynamic wave modeling
저자
Paik, Kyungrock; Jeong, Minyeob; Kim, Jongho; Kim, Dae-Hong
DOI
10.1016/j.jhydrol.2024.131413
발행일
2024-06
유형
Article
저널명
Journal of Hydrology
권
637