Interannual Consistency in Fractal Snow Depth Patterns at Two Colorado Mountain Sites

Author:

Deems Jeffrey S.1,Fassnacht Steven R.2,Elder Kelly J.3

Affiliation:

1. Department of Civil and Environmental Engineering, University of Washington, Seattle, Washington

2. Watershed Science, Colorado State University, Fort Collins, Colorado

3. Rocky Mountain Research Station, USDA Forest Service, Fort Collins, Colorado

Abstract

Abstract Fractal dimensions derived from log–log variograms are useful for characterizing spatial structure and scaling behavior in snow depth distributions. This study examines the temporal consistency of snow depth scaling features at two sites using snow depth distributions derived from lidar datasets collected in 2003 and 2005. The temporal snow accumulation patterns in these two years were substantially different, but both years represent nearly average 1 April accumulation depths for these sites, with consistent statistical distributions. Two distinct fractal regions are observed in each log–log variogram, separated by a scale break, which indicates a length scale at which a substantial change in the driving processes exists. The lag distance of the scale break is 15 m at the Walton Creek site and 40 m at the Alpine site. The datasets show consistent fractal dimensions and scale break distances between the two years, suggesting that the scaling features observed in spatial snow depth distributions are largely determined by physiography and vegetation characteristics and are relatively insensitive to annual variations in snowfall. Directional variograms also show consistent patterns between years, with smaller fractal dimensions aligned with the dominant wind direction at each site.

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference34 articles.

1. Airborne laser scanning: Basic relations and formulas.;Baltsavias;J. Photogramm. Remote Sens.,1999

2. Scaling issues in snow hydrology.;Blöschl;Hydrol. Processes,1999

3. Snowpack controls on nitrogen cycling and export in seasonally snow-covered catchments.;Brooks;Hydrol. Processes,1999

4. Cline, D., R.Armstrong, R.Davis, K. J.Elder, and G.Liston, cited. 2001: NASA Cold Land Processes Field Experiment plan. [Available online at http://www.nohrsc.nws.gov/~cline/clpx.html.].

5. Cline, D. , and Coauthors, 2003: An overview of the NASA Cold Land Processes Field Experiment (CLPX-2002). Microwave Remote Sensing of the Atmosphere and Environment III (SPIE Proceedings, Vol. 4894), 361–372.

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