Title
Temporal dynamics of model parameter sensitivity for computationally expensive models with the Fourier amplitude sensitivity test
Date Issued
12 August 2011
Access level
open access
Resource Type
journal article
Author(s)
Imperial College London
Abstract
The quest for improved hydrological models is one of the big challenges in hydrology. When discrepancies are observed between simulated and measured discharge, it is essential to identify which algorithms may be responsible for poor model behavior. Particularly in complex hydrological models, different process representations may dominate at different moments and interact with each other, thus highly complicating this task. This paper investigates the analysis of the temporal dynamics of parameter sensitivity as a way to disentangle the simulation of a hydrological model and identify dominant parameterizations. Three existing methods (the Fourier amplitude sensitivity test, the extended Fourier amplitude sensitivity test, and Sobol's method) are compared by applying them to a TOPMODEL implementation in a small mountainous catchment in the tropics. For the major part of the simulation period, the three methods give comparable results, while the Fourier amplitude sensitivity test is much more computationally efficient. This method is also applied to the complex hydrological model WaSiM-ETH implemented in the Weisseritz catchment, Germany. A qualitative model validation was performed on the basis of the identification of relevant model components. The validation revealed that the saturation deficit parameterization of WaSiM-ETH is highly susceptible to parameter interaction and lack of identifiability. We conclude that temporal dynamics of model parameter sensitivity can be a powerful tool for hydrological model analysis, especially to identify parameter interaction as well as the dominant hydrological response modes. Finally, an open source implementation of the Fourier amplitude sensitivity test is provided. Copyright 2011 by the American Geophysical Union.
Volume
47
Issue
7
Number
W07551
Language
English
OCDE Knowledge area
Ciencias del medio ambiente
Oceanografía, Hidrología, Recursos hídricos
Scopus EID
2-s2.0-79961227203
Source
Water Resources Research
ISSN of the container
00431397
Sources of information:
Directorio de Producción Científica
Scopus