An Approximately Semi-Analytical Model for Describing Surface Runoff of Rainwater Over Sloped Land

被引:0
作者
Ting Yang
Quanjiu Wang
Lijun Su
Laosheng Wu
Guangxu Zhao
Yanli Liu
Pengyu Zhang
机构
[1] Xi’an University of Technology,State Key Laboratory Base of Eco
[2] University of California,hydraulic engineering in Arid Area
[3] Northwest Agriculture&Forestry University,Department of Environmental Sciences
来源
Water Resources Management | 2016年 / 30卷
关键词
Rainfall; Kinematic wave equation; Overland flow; Infiltration; Analytical method;
D O I
暂无
中图分类号
学科分类号
摘要
Accurate prediction of surface runoff is critical to watershed management. In this research a semi-analytical model was adopted to solve the kinematic wave equation based on the assumption that the rate of overland-flow depth change is proportional to the rainfall excess. Simulations were compared with the results from laboratory experiments at various rain intensities. Parameters of infiltration rate and Manning’s roughness coefficient were determined. The accuracy of the semi-analytical model was evaluated by numerical simulations. The predicted outflow rates from the numerical simulations agreed well with the observed data. Further, our study indicated that the ratio (c) of the overland-flow depth change to the rainfall excess was a power function of the rain intensity. The depth and velocity of water flow at any time and distance could be calculated with the semi-analytical model. Hydraulic parameters including Reynolds number, Froude number, hydraulic shear stress, stream power and Darcy-Weisbach friction factor characterizing the dynamic features of overland flow of rainwater were calculated based on calculated overland-flow depth and velocity. The proposed analytical method can provide a new way to predict infiltration and runoff over sloped land.
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页码:3935 / 3948
页数:13
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