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Numerical modeling of basin irrigation with an upwind scheme

机译:逆流方式的流域灌溉数值模拟。

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摘要

In recent years, upwind techniques have been successfully applied in hydrology to simulate two-dimensional free surface flows. Basin irrigation is a surface irrigation system characterized by its potential to use water very efficiently. In basin irrigation, the field is leveled to zero slope and flooded from a point source. The quality of land leveling has been shown to influence irrigation performance drastically. Recently, two-dimensional numerical models have been developed as tools to design and manage basin irrigation systems. In this work, a finite volume-based upwind scheme is used to build a simulation model considering differences in bottom level. The discretization is made on triangular or quadrilateral unstructured grids and the source terms of the equations are given a special treatment. The model is applied to the simulation of two field experiments. Simulation results resulted in a clear improvement over previous simulation efforts and in a close agreement with experimental data. The proposed model has proved its ability to simulate overland flow in the presence of undulated bottom elevations, inflow hydrographs, and colliding fronts.
机译:近年来,逆风技术已成功应用于水文学中,以模拟二维自由面流。盆地灌溉是一种地表灌溉系统,其特点是可以非常有效地利用水。在流域灌溉中,田地平整到零坡度并从点源淹没。土地平整的质量已被证明会严重影响灌溉性能。最近,二维数值模型已被开发为设计和管理流域灌溉系统的工具。在这项工作中,基于有限体积的迎风方案用于构建考虑底部水平差异的仿真模型。离散化是在三角形或四边形非结构化网格上进行的,方程的源项得到了特殊处理。该模型应用于两个现场实验的仿真。仿真结果比以前的仿真工作有了明显的改进,并且与实验数据非常吻合。所提出的模型已经证明了它在存在起伏的底部标高,流入的水文图和碰撞的锋面的情况下模拟陆上水流的能力。

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