Welcome to the new version of CaltechAUTHORS. Login is currently restricted to library staff. If you notice any issues, please email coda@library.caltech.edu
Published August 1, 1999 | public
Journal Article Open

Cylindrically symmetric Green's function approach for modeling the crystal growth morphology of ice

Abstract

We describe a front-tracking Green's function approach to modeling cylindrically symmetric crystal growth. This method is simple to implement, and with little computer power can adequately model a wide range of physical situations. We apply the method to modeling the hexagonal prism growth of ice crystals, which is governed primarily by diffusion along with anisotropic surface kinetic processes. From ice crystal growth observations in air, we derive measurements of the kinetic growth coefficients for the basal and prism faces as a function of temperature, for supersaturations near the water saturation level. These measurements are interpreted in the context of a model for the nucleation and growth of ice, in which the growth dynamics are dominated by the structure of a disordered layer on the ice surfaces.

Additional Information

©1999 The American Physical Society Received 1 March 1999

Files

LIBpre99a.pdf
Files (189.8 kB)
Name Size Download all
md5:f5726216408f5804e6500ac9568db5c6
189.8 kB Preview Download

Additional details

Created:
August 22, 2023
Modified:
October 16, 2023