An investigation into the effect of storm type on precipitation in a small mountain watershed. March, J. R. W. & Swift, L. W. 1979.
Paper abstract bibtex A set of regression equations relating storm rainfall depth to watershed topography and storm type was derived for the high-density precipitation network at Coweeta Hydrologic Laboratory. The most general equation predicted storm amounts for an independent test group of gages with an average error of 0.38 cm (0.15 inches). Predictions for the air-mass or thunderstorm type had the greatest errors. The dependent variable was the ratio of rainfall at each gage site to rainfall at a base gage. Predictive variables were topographic slope, aspect, ground elevation at the gage site, and smoothed elevation.
@article{march_investigation_1979,
title = {An investigation into the effect of storm type on precipitation in a small mountain watershed.},
url = {http://cwt33.ecology.uga.edu/publications/699.pdf},
abstract = {A set of regression equations relating storm rainfall depth to watershed topography and storm type was derived for the high-density precipitation network at Coweeta Hydrologic Laboratory. The most general equation predicted storm amounts for an independent test group of gages with an average error of 0.38 cm (0.15 inches). Predictions for the air-mass or thunderstorm type had the greatest errors. The dependent variable was the ratio of rainfall at each gage site to rainfall at a base gage. Predictive variables were topographic slope, aspect, ground elevation at the gage site, and smoothed elevation.},
author = {March, J. R. Wallace, {and} L. W. Swift, Jr., W. J.},
year = {1979},
keywords = {CWT}
}
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