Journal of Glaciology · 1999 · 475 citations · 22 references
GlacierEngineeringRadiation IndexMelt SeasonsGlacial ProcessEarth ScienceGeophysicsFreeze-thaw CyclingAtmospheric ScienceNumerical SimulationThermodynamicsClimate ChangeMeteorologyDistributed Temperature-index Ice-Ice-water SystemAtmospheric IcingGeographyRadiation MeasurementCryosphereIce LoadSpace WeatherClimatologyAbstract Hourly MeltIce-structure InteractionPeriglacial ProcessClimate Modelling
Abstract Hourly melt and discharge of Storglaciären, a small glacier in Sweden, were computed for two melt seasons, applying temperature-index methods to a 30 m resolution grid for the melt component. The classical degree-day method yielded a good simulation of the seasonal patient of discharge, but the pronounced melt-induced daily discharge cycles were not captured. Modelled degree-day factors calculated for every hour and each gridcell from melt obtained from a distributed energy-balance model varied substantially, both diurnally and spatially. A new distributed temperature-index model is suggested, attempting to capture both the pronounced diurnal melt cycles and the spatial variations in melt due to the effects of surrounding topography. This is accomplished by including a radiation index in terms of potential clear-sky direct solar radiation, and thus, without the need for other data besides air temperature. This approach improved considerably the simulation of diurnal discharge fluctuations and yielded a more realistic spatial distribution of melt rates. The incorporation of measured global radiation to account for the reduction in direct solar radiation due to cloudiness did not lead to additional improvement in model performance.
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An Energy and Mass Model of Snow Cover Suitable for Operational Avalanche Forecasting
E. Brun, Vitor Hugo Simon, C. Gendre et al. · Journal of Glaciology · 1989 · 491 citations · Full text
Climate at the Equilibrium Line of Glaciers
Atsumu Ohmura, Peter Kasser, Martin Funk · Journal of Glaciology · 1992 · 370 citations