Article citationsMore>>
Homer, C., Dewitz, J., Fry, J., Coan, M., Hossain, N., Larson, C., Herold, N., McKerrow, A., Van Driel, J.N. and Wickham, J. (2007) Completion of the 2001 Land Cover Database for the Conterminous United States. Photogrammetric Engineering and Remote Sensing, 73, 337-341.
has been cited by the following article:
-
TITLE:
Improving Curve Number Runoff Estimates Using Dual Hydrologic Soil Classification and Potential Contributing Source Areas Delineation Methods
AUTHORS:
Katherine Miller, Katherine Folk Clancy
KEYWORDS:
Curve number, Watershed Delineation, Runoff
JOURNAL NAME:
Journal of Water Resource and Protection,
Vol.9 No.1,
January
12,
2017
ABSTRACT: Runoff models such as the Curve Number (CN) model are dependent upon land use and soil type within the watershed or contributing area. In regions with internal drainage (e.g. wetlands) watershed delineation methods that fill sinks can result in inaccurate contributing areas and estimations of runoff from models such as the CN model. Two methods to account for this inaccuracy have been 1) to adjust the initial abstraction value within the CN model; or 2) to improve the watershed delineation in order to better account for internal drainage. We used a combined approach of examining the watershed delineation, and refining the CN model by the incorporating of dual hydrologic soil classifications. For eighteen watersheds within Wisconsin, we compared the CN model results of three watershed delineation methods to USGS gaged values. We found that for large precipitation events (>100 mm) the CN model estimations are closer to observed values for watershed delineations that identify the directly connected watershed and use the undrained hydrologic soil classification.
Related Articles:
-
Ngozi Grace Emordi, Iweriolor Sunday, Onyekpe Basil Obimma
-
Julien Celestine, Arnaud Tanti, Arnaud Aubert
-
Casimir Komenan
-
Moawwad E. A. El-Mikkawy
-
Samuel Rhodes, Xiaochen Wang, Wenlang Liang, Hyoung Jin Cho, Jiyu Fang