Multiscale parameter regionalization of a grid‐based hydrologic model at the mesoscale
Helmholtz Centre for Environmental Research · Friedrich Schiller University Jena
Abstract
The requirements for hydrological models have increased considerably during the previous decades to cope with the resolution of extensive remotely sensed data sets and a number of demanding applications. Existing models exhibit deficiencies such as overparameterization, the lack of an effective technique to integrate the spatial heterogeneity of physiographic characteristics, and the nontransferability of parameters across scales and locations. A multiscale parameter regionalization (MPR) technique is proposed as a way to address these issues simultaneously. Using this technique, parameters at a coarser scale, in which the dominant hydrological processes are represented, are linked with their corresponding…
Citation impact
- FWCI
- 10.93
- Percentile
- 100%
- References
- 61
Authors
3Topics & keywords
- Scale (ratio)
- Grid
- Linkage (software)
- Mesoscale meteorology
- Hydrological modelling
- Calibration
- Transferability
- Structural basin