Skip to main content
U.S. flag

An official website of the United States government

Combining binary decision tree and geostatistical methods to estimate snow distribution in a mountain watershed

January 1, 2000

We model the spatial distribution of snow across a mountain basin using an approach that combines binary decision tree and geostatistical techniques. In April 1997 and 1998, intensive snow surveys were conducted in the 6.9‐km2 Loch Vale watershed (LVWS), Rocky Mountain National Park, Colorado. Binary decision trees were used to model the large‐scale variations in snow depth, while the small‐scale variations were modeled through kriging interpolation methods. Binary decision trees related depth to the physically based independent variables of net solar radiation, elevation, slope, and vegetation cover type. These decision tree models explained 54–65% of the observed variance in the depth measurements. The tree‐based modeled depths were then subtracted from the measured depths, and the resulting residuals were spatially distributed across LVWS through kriging techniques. The kriged estimates of the residuals were added to the tree‐based modeled depths to produce a combined depth model. The combined depth estimates explained 60–85% of the variance in the measured depths. Snow densities were mapped across LVWS using regression analysis. Snow‐covered area was determined from high‐resolution aerial photographs. Combining the modeled depths and densities with a snow cover map produced estimates of the spatial distribution of snow water equivalence (SWE). This modeling approach offers improvement over previous methods of estimating SWE distribution in mountain basins.

Publication Year 2000
Title Combining binary decision tree and geostatistical methods to estimate snow distribution in a mountain watershed
DOI 10.1029/1999WR900251
Authors Benjamin Balk, Kelly Elder
Publication Type Article
Publication Subtype Journal Article
Series Title Water Resources Research
Index ID 1015323
Record Source USGS Publications Warehouse
USGS Organization Fort Collins Science Center