首页> 外文期刊>Water resources research >A simple and efficient unstructured finite volume scheme for solving the shallow water equations in overland flow applications
【24h】

A simple and efficient unstructured finite volume scheme for solving the shallow water equations in overland flow applications

机译:一种简单有效的非结构化有限体积方案,用于求解陆上流动应用中的浅水方程

获取原文
获取原文并翻译 | 示例
       

摘要

This paper presents the decoupled hydrological discretization (DHD) scheme for solving the shallow water equations in hydrological applications involving surface runoff in rural and urban basins. The name of the scheme is motivated by the fact that the three equations which form the two-dimensional shallow water system are discretized independently from each other and thus, the numerical scheme is decoupled in a mathematical sense. Its main advantages compared to other classic finite volume schemes for the shallow water equations are its simplicity to code and the lower computational cost per time step. The validation of the scheme is presented in five test cases involving overland flow and rainfall-runoff transformation over topographies of different complexity. The scheme is compared to the finite volume scheme of Roe (1986), to the simple inertia formulation, and to the diffusive wave model. The test cases show that the DHD scheme is able to compute subcritical and supercritical flows in rural and urban environments, and that in overland flow applications it gives similar results to the second-order scheme of Roe with a lower computational cost. The results obtained with the simple inertia and diffusive wave models are very similar to those obtained with the DHD scheme in rural basins in which the bed friction and topography dominate the flow hydrodynamics but they deteriorate in typical urban configurations in which the presence of supercritical flow conditions and small-scale patterns boost the relevance of the inertial terms in the momentum equations.
机译:本文提出了一种在农村和城市流域涉及地表径流的水文应用中求解浅水方程的解耦水文离散化(DHD)方案。该方案的名称是受以下事实影响的:构成二维浅水系统的三个方程式相互独立离散,因此,数值方案在数学上是解耦的。与其他经典的浅水方程式有限体积方案相比,它的主要优点是编码简单且每时间步的计算成本较低。在五个测试案例中对该方案进行了验证,这些案例涉及不同复杂地形上的陆上流量和降雨径流转换。将该方案与Roe(1986)的有限体积方案,简单惯性公式以及扩散波模型进行了比较。测试案例表明,DHD方案能够在农村和城市环境中计算亚临界和超临界流量,并且在陆上流量应用中,它以较低的计算成本提供了与Roe的二阶方案相似的结果。简单的惯性和扩散波模型获得的结果与DHD方案在农村流域获得的结果非常相似,在农村流域中,床层摩擦和地形主导着流动的水动力,但是在典型的城市配置中,当超临界流动条件存在时,它们会恶化小尺度的模式提高了惯性项在动量方程中的相关性。

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