Transfer function models of suspended sediment concentration
- 1 March 1991
- journal article
- Published by American Geophysical Union (AGU) in Water Resources Research
- Vol. 27 (3) , 293-305
- https://doi.org/10.1029/90wr01607
Abstract
The majority of past suspended sediment concentration modeling efforts have relied on simple regression analysis. Problems with these models, and in particular, sediment rating curves, have been gaining attention recently. It is argued here that many of the problems result from the fact that simple regression models are inappropriate for modeling fluvial systems because they fail to adequately represent the dynamic nature of fluvial processes. Transfer function models are system models which can account for the dynamic nature of fluvial systems. Single input‐single output and multiple input‐single output transfer function models for daily suspended sediment concentration are developed for two drainage basins in Iowa. Interpretation of the models with respect to hydrologic theory indicates that model form and parameter estimates can be related to drainage basin size, land use, and physiographic characteristics.Keywords
This publication has 23 references indexed in Scilit:
- Sediment yield and land use in tropical catchmentsPublished by Elsevier ,2003
- The sediment delivery problemPublished by Elsevier ,2003
- AN EVALUATION OF TRANSFER-FUNCTION/NOISE MODELS OF SUSPENDED SEDIMENT CONCENTRATIONThe Professional Geographer, 1990
- A time-series approach to modelling stream acidityJournal of Hydrology, 1986
- River Loads Underestimated by Rating CurvesWater Resources Research, 1986
- Box-Jenkins Transfer Function Models Applied to Suspended Sediment Concentration-Discharge Relationships in a Proglacial StreamArctic and Alpine Research, 1984
- Stochastic predictions of sediment yields from small coastal watersheds in Oregon, U.S.A.Journal of Hydrology, 1982
- Input-output model for runoff-sediment yield processesJournal of Hydrology, 1979
- THE USE OF MULTIPLE REGRESSION MODELS IN PREDICTING SEDIMENT YIELD1Jawra Journal of the American Water Resources Association, 1976
- Predicting sediment yield from climate and topographyJournal of Hydrology, 1974