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首页> 外文期刊>Journal of irrigation and drainage engineering >Analytical Steady-State Solution for a Three-Dimensional Partially Penetrating Ditch Drainage System Receiving Water from an Uneven Ponding Field
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Analytical Steady-State Solution for a Three-Dimensional Partially Penetrating Ditch Drainage System Receiving Water from an Uneven Ponding Field

机译:三维部分穿透排水系统从不均匀铺设场接收水的分析稳态解决方案

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摘要

A steady-state analytical solution is proposed for computing three-dimensional seepage into a partially penetrating ditch drainage system receiving water from an uneven ponding field of finite size. The draining soil is assumed to be saturated, homogeneous, and aniso-tropic, resting on an impervious stratum. The correctness of the proposed model was checked with the analytical and experimental results for a simplified case. A numerical comparison was also carried out between the proposed analytical model and the corresponding finite-difference model for a given flow condition. The study highlights the significance of drain width, penetration depth, ponding distribution, and anisotropic ratio on the discharge distribution from the side and bottom face of the drains. In ditches of shallow depth, a significant rise in the percentage of bottom flow was found in soil with a low anisotropic ratio. With the introduction of the uneven ponding field, considerable enhancement in the contribution of flow discharge from the bottom face of the drain was observed. Travel time and orientation of flow paths were found sensitive to the point of release at the soil surface. Moreover, partially penetrating ditches promote a highly curved flow path from the surface to the recipient drain which in turn increases the travel time of the water particle.
机译:提出了一种稳态分析解决方案,用于将三维渗漏到部分穿透的沟槽排水系统中,从有限尺寸的不均匀探测领域接收水。假设排出的土壤是饱和的,均匀的和抗性的,在不透水层上休息。通过分析和实验结果检查所提出的模型的正确性,以进行简化的情况。在所提出的分析模型和给定流量条件的相应有限差模范之间还进行了数值比较。该研究突出了排水宽度,渗透深度,探测分布和各向异性比在排水沟的侧面和底面上的排出分布的重要性。在浅度深度的沟渠中,在具有低各向异性比率的土壤中发现了底部流量百分比的显着增加。随着不均匀探测器的引入,观察到从排水管底面的流量排出的贡献中的相当大的增强。发现流动路径的旅行时间和定向对土壤表面的释放点敏感。此外,部分穿透的沟渠从表面促进从表面到接收者漏极的高弯曲流动路径,这又增加了水颗粒的行驶时间。

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