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A well-balanced FV scheme for compound channels with complex geometry and movable bed

机译:具有复杂几何形状和可移动床的复合通道的均衡FV方案

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摘要

This work focuses on the implementation of a Shallow Water-Exner model for compound natural channels with complex geometry and movable bed within the finite volume framework. The model is devised for compound channels modeling: cross-section overbanks are treated with fixed bed conditions, while the main channel is left free to modify its morphology. A capacitive approach is used for bed load transport modeling, in which the solid flow rates are estimated with bed load transport formulas. The model equations pose some numerical issues in the case of natural channels, where bed load transport may occur for both subcritical and supercritical flows and geometry varies in space. An explicit path-conservative scheme, designed to overcome all these issues, is presented in the paper. The scheme solves liquid and solid phases dynamics in a coupled manner, in order to correctly model near critical currents/channel interactions and is well-balanced, that is able to properly reproduce steady states. The Roe and Osher Riemann solvers are implemented, so as to take into account the spatial geometry variations of natural channels. The scheme reaches up to second-order accuracy. Validation is performed with fixed and movable bed test cases whose analytical solution is known, and with flume experimental data. An application of the model to a real case study is also shown.
机译:这项工作的重点是在有限体积的框架内为具有复杂几何形状和可移动床的复合自然通道实施浅水模型。该模型专为复合通道建模而设计:横断面溢流采用固定床条件处理,而主通道则可以随意修改其形态。电容方法用于床载运输模型,其中固体流速通过床载运输公式估算。在自然通道的情况下,模型方程式会带来一些数值问题,在这种情况下,亚临界和超临界流都可能发生床荷传递,并且空间几何形状会发生变化。本文提出了一种明确的路径保守方案,旨在解决所有这些问题。该方案以耦合的方式解决了液相和固相动力学,以便正确地模拟接近临界电流/通道相互作用并且平衡良好,从而能够正确地再现稳态。实现了Roe和Osher Riemann求解器,以便考虑自然通道的空间几何变化。该方案可达到二阶精度。使用已知分析解决方案的固定床和移动床测试用例以及水槽实验数据进行验证。还显示了该模型在实际案例研究中的应用。

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  • 来源
    《Water resources research》 |2015年第8期|6564-6585|共22页
  • 作者

    Minatti L.;

  • 作者单位

    Univ Florence, Dept Civil & Environm Engn, Florence, Italy;

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  • 正文语种 eng
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