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首页> 外文期刊>Journal of Hydrology >Coupled simulation of surface runoff and soil water flow using multi-objective parameter estimation
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Coupled simulation of surface runoff and soil water flow using multi-objective parameter estimation

机译:基于多目标参数估计的地表径流与土壤水流耦合模拟

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摘要

A comprehensive description of water flow in environmental and agricultural systems requires an account of both surface and subsurface pathways. We present a new model which combines a 1D overland flow model and the 2D subsurface flow HYDRUS-2D model, and uses the multi-objective global search method AMALGAM for inverse parameter estimation. Furthermore, we present data from bench-scale flow experiments which were conducted with two 5-m long replicate soil channels. While rainfall was applied, surface runoff was recorded at the downstream end of the soil channel, subsurface drainage waters were sampled at three positions equally spaced along the channels, and pressure heads were recorded at five depths. The experimental observations were used to evaluate the performance of our modeling system. The complexity of the modeling approach was increased in three steps. First, only runoff and total drainage were simulated, then drainage flows from individual compartments were additionally evaluated, and finally a surface crust and immobile soil water were also considered. The results showed that a good match between measured and observed surface runoff and total drainage does not guarantee accurate representation of the flow process. An inspection of the Pareto results of different multiobjective calibration runs revealed a significant trade-off between individual objectives, showing that no single solution existed to match spatial variability in the flow. In spite of the observed crust formation, its consideration in the more complex model structure did not significantly improve the fit between the model and measurements. Accounting for immobile water regions only slightly improved the fit for one of the two replicate soil channels. Discrepancies between relatively complex model simulations and seemingly simple soil channel experiments suggest the presence of additional unknowns, such as heterogeneity of the soil hydraulic properties. Nevertheless, with its versatile subsurface options and powerful inverse method, the model system shows promise for studying hillslope flow problems involving both surface runoff and subsurface flow.
机译:对环境和农业系统中水流的全面描述需要同时考虑地面和地下路径。我们提出了一个新模型,该模型结合了1D地面流模型和2D地下流HYDRUS-2D模型,并使用多目标全局搜索方法AMALGAM进行反参数估计。此外,我们介绍了使用两个5 m长的重复土壤通道进行的台架规模流量实验的数据。在施加降雨的同时,在土壤通道的下游端记录了地表径流,在沿通道等距分布的三个位置对地下排水进行了采样,并在五个深度处记录了压头。实验观察用于评估我们的建模系统的性能。分三步增加了建模方法的复杂性。首先,仅模拟径流和总排水,然后另外评估各个隔间的排水流量,最后还要考虑地表结皮和不动的土壤水。结果表明,实测和观察到的地表径流与总排水量之间的良好匹配不能保证流量过程的准确表示。对不同的多目标校准运行的帕累托结果进行的检查显示,各个目标之间存在重大折衷,这表明不存在能够匹配流量中空间变异性的单一解决方案。尽管观察到地壳形成,但在更复杂的模型结构中进行考虑并不能显着改善模型与测量值之间的拟合度。考虑到不流动的水域,仅略微改善了两个重复土壤通道之一的拟合度。相对复杂的模型模拟与看似简单的土壤通道实验之间的差异表明存在其他未知因素,例如土壤水力特性的不均匀性。然而,凭借其通用的地下选项和强大的反演方法,该模型系统为研究涉及地表径流和地下流的山坡渗流问题显示了希望。

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