Journal of Geophysical Research Atmospheres · 2010 · 209 citations · 30 references
ClimatologyMeteorologyHydrometeorologyGeophysicsEngineeringWind InfluenceMountain RegionsGeomorphologyGlacierGlaciologyGeographyAlpine TopographySnow RedistributionCryosphereGlacial ProcessIce LoadEarth ScienceSnow Avalanche
In mountain regions wind is known to cause snow redistribution. While physically based models of snow redistribution have been developed for flat to gently rolling terrain, extension of these findings to steep terrain has been limited by the complexity of wind fields in such areas. In this study, we applied a nonhydrostatic and compressible atmospheric prediction model to steep alpine topography and compared the results to a fully distributed data set of snow depth estimations. The results show reduced horizontal wind velocity as well as an increasing downward vertical wind velocity over areas with the largest winter accumulation, which are mostly glacierized. We show that the wind velocity normal to the local surface, which should be zero in a nondivergent flow field and is a direct measure of increased or decreased local deposition, is a function of small‐scale features of local topography. The correlation between wind fields, snow accumulation, and glacierization suggests that accurate modeling of wind fields over glacierized areas in complex terrain is a key factor for understanding the mass balance distribution of glaciers.
30
New, improved version of generic mapping tools released
Paul Wessel, Walter H. F. Smith · Eos · 1998 · 7.4K citations · Full text
Ming Xue, Kelvin K. Droegemeier, Vince Wong · Meteorology and Atmospheric Physics · 2000 · 955 citations
Prediction Model, Meteorology, Numerical Weather Prediction +11
Ming Xue, Kelvin K. Droegemeier, Vince Wong et al. · Meteorology and Atmospheric Physics · 2001 · 539 citations
Meteorology, Numerical Weather Prediction, Data Assimilation +11
A snow-transport model for complex terrain
Glen E. Liston, Matthew Sturm · Journal of Glaciology · 1998 · 429 citations
Glacier, Engineering, Geomorphology +17