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Simulating water flow in variably saturated soils: a comparison of a 3D model with approximation-based formulations

机译:模拟可变饱和土壤中的水流:3D模型与基于近似公式的比较

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摘要

In hydrological models, variably saturated flow is often described using the Richards equation, either in a fully three-dimensional (3D) implementation or using a quasi-3D framework based on the 1D Richards equation for vertical flow and a flow-approximation for the other two dimensions. However, it is unclear in which configuration or under which boundary conditions these approximations can produce adequate estimates. In this study, two formulations with a quasi-3D approach are benchmarked against a fully 3D model (HYDRUS-3D). The formulations are: the Real-time Integrated Basin Simulator + VEGetation Generator for Interactive Evolution (tRIBS + VEGGIE) model that uses the Dupuit-Forchheimer assumption and the Tethys & Chloris (T&C) model that implements the kinematic approach. Effects of domain slope, hillslope size, event size and initial moisture conditions on simulated runoff and soil moisture dynamics are examined in event-based simulations at the hillslope scale. The Dupuit-Forchheimer assumption (tRIBS-VEGGIE) produces deviations from the HYDRUS-3D solutions only for simulations with initially dry soil. Using the kinematic approach (T&C) results in deviations from the 3D solution primarily for the small hillslope domain in combination with a gentle slope angle. This applies especially to the partition between subsurface and surface runoff production, with T&C being biased towards the latter. For all other cases investigated, the simpler formulations provide reasonable approximations of the 3D model.
机译:在水文模型中,经常使用Richards方程描述可变饱和流,或者在完全三维(3D)实现中使用,或者基于一维Richards方程使用基于垂直方向的1D Richards方程的准3D框架,而对于另一方向使用近似的流量二维。但是,尚不清楚这些近似值在哪种配置或什么边界条件下可以产生足够的估计。在这项研究中,两种采用准3D方法的配方相对于完全3D模型(HYDRUS-3D)进行了基准测试。公式为:使用Dupuit-Forchheimer假设的实时集成海盆模拟器+交互式演化VEGetation Generator(tRIBS + VEGGIE)模型和实现运动学方法的Tethys&Chloris(T&C)模型。在基于事件的模拟中,以坡度为尺度,研究了域坡度,坡度,事件大小和初始湿度条件对模拟径流和土壤水分动力学的影响。 Dupuit-Forchheimer假设(tRIBS-VEGGIE)仅在初始土壤干燥的情况下才会产生与HYDRUS-3D解决方案的偏差。使用运动学方法(T&C)会导致与3D解的偏差,主要是针对小坡度域以及平缓的坡度角。这尤其适用于地下和地表径流生产之间的划分,而T&C偏向后者。对于所有其他情况,较简单的公式可以提供3D模型的合理近似值。

著录项

  • 来源
    《Nordic hydrology》 |2016年第2期|274-290|共17页
  • 作者单位

    Department of Forest Engineering, Resources and Management, Oregon State University, Corvallis, OR 97331-5706, USA Department of Hydrology, University of Bayreuth, 95440 Bayreuth, Germany;

    Institute of Environmental Engineering, ETH Zuerich, 8093 Zuerich, Switzerland;

    Department of Civil and Environmental Engineering, University of Michigan, Ann Arbor, MI 48109-2125, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hillslope hydrology; hydrologic modeling; parsimonious approximation; surface-subsurface hydrology;

    机译:山坡水文水文模拟;简约近似地表-地下水文学;

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