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Publication Additional Information Download
Publication Type
Journal Article
Authorship
Pomeroy, J. W., Brown, T., Fang, X., Shook, K. R., Pradhananga, D., Armstrong, R., ... & Moreno, J. L.
Title
The Cold Regions Hydrological Modelling Platform for hydrological diagnosis and prediction based on process understanding
Year
2022
Publication Outlet
Journal of Hydrology, 128711
DOI
https://doi.org/10.1016/j.jhydrol.2022.128711
Citation
Pomeroy, J. W., Brown, T., Fang, X., Shook, K. R., Pradhananga, D., Armstrong, R., ... & Moreno, J. L. (2022). The Cold Regions Hydrological Modelling Platform for hydrological diagnosis and prediction based on process understanding. Journal of Hydrology, 128711. https://doi.org/10.1016/j.jhydrol.2022.128711
Abstract
Cold regions involve hydrological processes that are not often addressed appropriately in hydrological models. The Cold Regions Hydrological Modelling platform (CRHM) was initially developed in 1998 to assemble and explore the hydrological understanding developed from a series of research basins spanning Canada and international cold regions. Hydrological processes and basin response in cold regions are simulated in a flexible, modular, object-oriented, multiphysics platform. The CRHM platform allows for multiple representations of forcing data interpolation and extrapolation, hydrological model spatial and physical process structures, and parameter values. It is well suited for model falsification, algorithm intercomparison and benchmarking, and has been deployed for basin hydrology diagnosis, prediction, land use change and water quality analysis, climate impact analysis and flood forecasting around the world. This paper describes CRHM’s capabilities, and the insights derived by applying the model in concert with process hydrology research and using the combined information and understanding from research basins to predict hydrological variables, diagnose hydrological change and determine the appropriateness of model structure and parameterisations. Highlights • Snow, glaciers, wetlands, frozen ground and permafrost needed in hydrological models. • Water quality export by coupling biochemical transformations to cold regions processes. • Hydrological sensitivity to land use depends on cold regions processes. • Strong cold regions hydrological sensitivity to climate warming.
Program Affiliations
GWF: Global Water Futures
INARCH: International Network of Alpine Research Catchment Hydrology
Project Affiliations
GWF-IMPC: Integrated Modelling Program for Canada
INARCH1: International Network of Alpine Research Catchment Hydrology (Phase 1)
Publication Stage
N/A
Additional Information
INARCH
Download Links
https://doi.org/10.1016/j.jhydrol.2022.128711
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