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A numerical model for simulating Hortonian overland flow on tropical hillslopes with vegetation elements

机译:植被要素在热带山坡上霍顿陆流模拟的数值模型

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This paper describes a two-dimensional hydrodynamic model that characterizes surface runoff process resulting from a varying rainfall intensity event, on an infiltrating soil surface. The soil surface has spatially varied soil physical, hydraulic and microtopographic characteristics. Infiltration process is modelled with the Philip two-term equation and the time before ponding approximated with the time compression algorithm. Vegetation is modelled as a dynamic component with the modified Gash model. The equation is solved with a modified second order Leapfrog explicit finite difference scheme with centred time and space derivatives. The model was validated with standard analytical solutions. Evaluation with results from field campaigns in the Volta Basin of West Africa during the 2002 rainfall season indicates good agreement, with r~2 values ranging from 0·89 to 0·96. The developed method will be useful in studying the dynamics of surface runoff generation under complex microtopographic conditions, spatially varying soil hydraulic characteristics and temporally dynamic rainfall intensity, as found in many tropical catchments.
机译:本文描述了一个二维水动力模型,该模型描述了在降雨的土壤表面上降雨强度变化事件导致的地表径流过程。土壤表面具有空间变化的土壤物理,水力和微观地形特征。利用菲利普二项方程对入渗过程进行建模,并采用时间压缩算法对入池前的时间进行近似。修改后的Gash模型将植被建模为动态组件。该方程是使用带有中心时间和空间导数的改进的二阶Leapfrog显式有限差分格式求解的。该模型已通过标准分析解决方案进行了验证。根据2002年雨季在西非伏尔塔盆地进行的野外调查的结果进行的评估显示出很好的一致性,r〜2的值在0·89到0·96之间。如在许多热带流域中所发现的那样,所开发的方法将有助于研究复杂的微地形条件,空间变化的土壤水力特征和时间动态降雨强度在地表径流产生的动力学。

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