首页> 外文期刊>Journal of Hydrology >The hillslope-storage Boussinesq model for non-constant bedrock slope
【24h】

The hillslope-storage Boussinesq model for non-constant bedrock slope

机译:非恒定基岩边坡的坡坡-存储Boussinesq模型

获取原文
获取原文并翻译 | 示例
           

摘要

In this study the recently introduced hill slope-storage Boussinesq (hsB) model is cast in a generalized formulation enabling the model to handle non-constant bedrock slopes (i.e. bedrock profile curvature). This generalization extends the analysis of hydrological behavior to hillslopes of arbitrary geometrical shape, including hillslopes having curved profile shapes. The generalized hsB model performance for a free drainage scenario is evaluated by comparison to a full three-dimensional Richards equation (RE) based model. The rnodel results are presented in the form of dimensionless storage profiles and dimensionless outflow hydrographs. In addition, comparison of both models to a storage based kinematic wave (KW) model enables us to assess the relative importance of diffusion processes for different hillslope shapes, and to analyze the influence of profile curvature on storage and flow patterns specifically. The comparison setup consists of a set of nine gentle (5% bedrock slope) and nine steep (30% bedrock slope) hillslopes of varying plan shape and profile curvature. Interpretation of the results shows that for highly conductive soils the simulated storage profiles and outflow hydrographs of the generalized hsB model and RE model match remarkably for 5% bedrock slope and for all plan and profile curvatures. The match is slightly poorer on average for 30% bedrock slope, in particular, on divergently shaped hillslopes. In the assessment of the influence of hydraulic diffusion, we find good agreement in Simulation results for the KW model compared to results from the generalized hsB model and the RE model for steep divergent and uniform hillslopes, due to a relatively low ratio between water table gradient and bedrock slope compared to convergent or gentle hillslopes. Overall, we demonstrate that, in addition to bedrock slope, hillslope shape as represented by plan and profile curvature is an important control on subsurface flow response. (C) 2004 Elsevier B.V. All rights reserved.
机译:在这项研究中,最近引入的山坡坡度存储Boussinesq(hsB)模型以通用公式表示,该模型使该模型能够处理非恒定的基岩坡度(即基岩剖面曲率)。这种概括将水文行为的分析扩展到任意几何形状的山坡,包括具有弯曲轮廓形状的山坡。通过与基于三维Richards方程(RE)的完整模型进行比较,评估了免费排水情况下的hsB模型广义性能。 rnodel结果以无因次存储分布图和无因次流出水文图的形式呈现。另外,将这两个模型与基于存储的运动波(KW)模型进行比较,使我们能够评估不同坡度形状的扩散过程的相对重要性,并可以分析轮廓曲率对存储和流动模式的影响。比较设置由一组九个平缓(基岩坡度为5%)和九个陡峭(基岩坡度为30%)的山坡组成,它们的平面形状和轮廓曲率各不相同。结果的解释表明,对于高导电性土壤,模拟的存储剖面和广义hsB模型和RE模型的流出水线图在5%的基岩坡度以及所有平面曲率和剖面曲率上均显着匹配。对于30%的基岩坡度,尤其是在形状不同的山坡上,匹配程度略差。在评估水力扩散的影响时,由于地下水位梯度之间的比率相对较低,因此,KW模型的模拟结果与广义hsB模型和RE模型的陡峭发散和均质坡度的结果相比,具有很好的一致性。与收敛或平缓的山坡相比,基岩坡度更高。总体而言,我们证明,除了基岩坡度以外,以平面和剖面曲率表示的山坡形状也是对地下流动响应的重要控制。 (C)2004 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号