Abstract
In this paper we implement a degree day snowmelt and glacier melt model in the Dynamic fluxEs and ConnectIvity for Predictions of HydRology (DECIPHeR) model. The purpose is to develop a hydrological model that can be applied to large glaciated and snow-fed catchments yet is computationally efficient enough to include model uncertainty in streamflow predictions. The model is evaluated by simulating monthly discharge at six gauging stations in the Naryn River catchment (57g833gkm2) in central Asia over the period 1951 to a variable end date between 1980 and 1995 depending on the availability of discharge observations. The spatial distribution of simulated snow cover is validated against MODIS weekly snow extent for the years 2001-2007. Discharge is calibrated by selecting parameter sets using Latin hypercube sampling and assessing the model performance using six evaluation metrics. The model shows good performance in simulating monthly discharge for the calibration period (NSE is 0.74
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CITATION STYLE
Shannon, S., Payne, A., Freer, J., Coxon, G., Kauzlaric, M., Kriegel, D., & Harrison, S. (2023). A snow and glacier hydrological model for large catchments-case study for the Naryn River, central Asia. Hydrology and Earth System Sciences, 27(2), 453–480. https://doi.org/10.5194/hess-27-453-2023
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