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A hybrid finite volume-finite element model for the numerical analysis of furrow irrigation and fertigation

机译:一种混合有限体积有限元模型,用于沟灌灌溉灌溉的数值分析

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摘要

This study presents a hybrid Finite Volume - Finite Element (FV-FE) model that describes the coupled surface-subsurface flow processes occurring during furrow irrigation and fertigation. The numerical approach combines a one-dimensional description of water flow and solute transport in an open channel with a two-dimensional description of water flow and solute transport in a subsurface soil domain, thus reducing the dimensionality of the problem and the computational cost. The modeling framework includes the widely used hydrological model, HYDRUS, which can simulate the movement of water and solutes, as well as root water and nutrient uptake in variably-saturated soils. The robustness of the proposed model was examined and confirmed by mesh and time step sensitivity analyses. The model was theoretically validated by comparison with simulations conducted with the well-established model WinSRFR and experimentally validated by comparison with field-measured data from a furrow fertigation experiment conducted in the US.
机译:该研究介绍了混合有限体积 - 有限元(FV-FE)模型,其描述了在沟灌和灌溉过程中发生的耦合表面地下流程。数值方法结合了水流的一维描述,并在开放通道中溶质运输,在地下土壤域中的水流和溶质运输的二维描述,从而降低了问题的维度和计算成本。建模框架包括广泛使用的水文模型,水性模型,可以模拟水和溶质的运动,以及可变饱和土壤中的根水和养分吸收。通过网状和时间步长敏感性分析检查并确认了所提出的模型的鲁棒性。通过与使用良好的模型WinSRFR进行的模拟进行理论上验证了该模型,并通过与美国进行的沟槽灌溉实验相比,通过与现场测量的数据进行实验验证。

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