Published March 1994 | Version v1
Journal article

Quasi-steady temperature gradient metamorphism in idealized, dry snow

  • 1. Lawrence Livermore National Lab., CA (United States). Methods Development Group
  • 2. Colorado State Univ., Fort Collins, CO (United States). Dept. of Mechanical Engineering
  • 3. Rocky Mountain Forest and Range Experiment Station, Fort Collins, CO (United States)

Description

A three-dimensional model for heat and mass transport in microscale ice lattices of dry snow is formulated consistent with conservation laws and solid-vapor interface constraints. A finite element model that employs continuous mesh deformation is developed, and calculation of the effective diffusion rates in snow, metamorphosing under a temperature gradient, is performed. Results of the research provide basic insight into the movement of heat and water vapor in seasonal snowcovers. Agreement between the numerical results and measured data of effective thermal conductivity is excellent. The enhancement to the water vapor diffusion rate in snow is bracketed in the range of 1.05--2.0 times that of water vapor in dry air

Additional details

Publishing Information

Journal Title
Numerical Heat Transfer. Part A, Applications
Journal Volume
25
Journal Issue
3
Journal Page Range
p. 259-278.
ISSN
1040-7782
CODEN
NHAAES

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
25057993
Subject category
S54: ENVIRONMENTAL SCIENCES; S42: ENGINEERING; S01: COAL, LIGNITE, AND PEAT;
Descriptors DEI
ACID RAIN; ENVIRONMENTAL TRANSPORT; HEAT TRANSFER; MASS TRANSFER; POLLUTANTS; SNOW
Descriptors DEC
ATMOSPHERIC PRECIPITATIONS; ENERGY TRANSFER; RAIN