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Hydrodynamic analysis of storm movement effects on runoff hydrographs and loop-rating curves of a V-shaped watershed

机译:暴雨运动对V形流域径流水文和流率曲线的影响的水动力分析

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摘要

[1] The effects of storm movement on rainfall-runoff processes through a V-shaped watershed are investigated using a dynamic wave model based on shallow water equations. The governing equations are solved by a fourth-order accurate finite volume method to obtain accurate computational results. Once the numerical model is verified, a series of rainfall-runoff events on a V-shaped watershed are simulated. To investigate the contribution of each term in the depth-averaged momentum equation, a scale analysis, and quantitative assessment are conducted on the basis of the computational results. As a result, it is found that the speed and the direction of storm movement can play an important role in determining peak discharge and peak arrival time. In addition, the storm movement can generate loop in the stage-discharge relationship curve. Finally, it is revealed that the rating curve depends on the watershed characteristics rather than the rainfall conditions, at least in the idealized V-shaped watershed.
机译:[1]使用基于浅水方程的动态波模型,研究了风暴运动对通过V型流域的降雨径流过程的影响。用四阶精确有限体积法求解控制方程,以获得精确的计算结果。一旦数值模型得到验证,就可以模拟V形分水岭上的一系列降雨径流事件。为了研究每个项在深度平均动量方程中的贡献,在计算结果的基础上进行了尺度分析和定量评估。结果,发现风暴运动的速度和方向可以在确定峰值流量和峰值到达时间方面发挥重要作用。另外,风暴运动可以在阶段-排放关系曲线中产生循环。最后,揭示了额定曲线至少在理想的V形流域中取决于分水岭特征而不是降雨条件。

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  • 来源
    《Water resources research》 |2013年第10期|6613-6623|共11页
  • 作者

    Dae-Hong Kim; Yongwon Seo;

  • 作者单位

    Department of Civil Engineering, University of Seoul, Rm. 3317, Jeonnong-dong, Dongdaemoon-gu, Seoul 130-743, South Korea;

    Department of Civil and Environmental Engineering, Dankook University, Yongin Yongin, Gyunggi-Do, South Korea;

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