Model for dry snow metamorphism by interparticle vapor flux
- 20 August 1985
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research: Atmospheres
- Vol. 90 (D5) , 8081-8092
- https://doi.org/10.1029/jd090id05p08081
Abstract
Kinetic growth metamorphism lowers the mean number of bonds between the ice particles in snow. During the beginning state of snow metamorphism, at a large mean temperature gradient, significant particle growth occurs only at preferred growth sites. Three‐dimensional approximations of the sink‐source geometry are introduced to model particle growth and shrink rates. The calculations show that enhanced growth occurs at very small and at large sink‐source distances. The consideration of growth rate enhancement by differences in radii of curvature between sink‐source particles accounts for metamorphism at very low mean temperature gradients. Final particle size distributions and the reduction of the particle number density by metamorphism are calculated and may be compared with measured distributions.Keywords
This publication has 10 references indexed in Scilit:
- Theory of metamorphism of dry snowJournal of Geophysical Research: Oceans, 1983
- Ice crystal morphology and growth rates at low supersaturations and high temperaturesJournal of Applied Physics, 1983
- Metamorphism of Dry Snow as a Result of Temperature Gradient and Vapor Density DifferencesAnnals of Glaciology, 1983
- A branch grain theory of temperature gradient metamorphism in snowJournal of Geophysical Research, 1983
- A model for crystal development in dry snowGeophysical Research Letters, 1982
- Thermodynamics of snow metamorphism due to variations in curvatureJournal of Glaciology, 1980
- Determination of the Mean Number of Bonds per snow grain And of the Dependence of the Tensile Strength of Snow on Stereological ParametersJournal of Glaciology, 1978
- Gradient Metamorphism, Zonal Weakening of the Snow-pack and Avalanche InitiationJournal of Glaciology, 1977
- The formation rate of depth hoarJournal of Geophysical Research, 1962
- The growth of snow crystals at low supersaturationsPhilosophical Magazine, 1961