• Title of article

    Snow distribution in a steep mid-latitude alpine catchment

  • Author/Authors

    Tim Kerra، نويسنده , , Martyn Clarka، نويسنده , , 1، نويسنده , , Jordy Hendrikxa، نويسنده , , 2، نويسنده , , Brian Andersonb، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    8
  • From page
    17
  • To page
    24
  • Abstract
    Snow distribution patterns are still poorly understood in steep alpine catchments because of mass redistribution from wind and avalanching. Snow models rarely operate with sufficient resolution, physics or input data to resolve this issue explicitly, and existing sub-grid parameterisations are rarely tested in this type of terrain. To address this issue daily snow cover observations, obtained from a ground-based camera, are combined with a snow melt model to estimate the spatial distribution of snow water equivalent (SWE) in a mountainous alpine catchment. Results show the importance of slope in controlling the spatial distribution of SWE and snow duration. This distribution is linked to the physical process of gravitational transport, where there is removal of snow from steep slopes and preferential deposition on moderate-angle slopes. From a modelling perspective, if sub-grid snow variability is parameterised using a log-normal probability distribution (as is common in hydrological and land-use models) then ignoring steep/shallow slope differences leads to an overestimation of melt at the beginning of the melt season, and a premature end to the snow melt season. When modelling SWE in complex terrain, care should be taken to consider reduced SWE on steep slopes.
  • Keywords
    Spatial variability , melt , New Zealand , Alpine , Snow , Modelling
  • Journal title
    Advances in Water Resources
  • Serial Year
    2013
  • Journal title
    Advances in Water Resources
  • Record number

    1272721