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Strategies for cutting management of riparian vegetation

机译:河岸植被削减管理的策略

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This study presents the numerical predictions on the detailed hydrodynamic and habitat quality characteristics of riparian vegetation by using a depth-averaged two-dimensional flow model. The model solves the depth-averaged Reynolds Averaged Navier-Stokes Equation. The vegetative effect is considered by a drag force exerted by the flow on the vegetation, resulting in extra source terms included in the momentum equations. Simulated results of flows in a rectangular and a compound channel with vegetation along one side are coincided with the previous experimental data. Furthermore, the model is used to simulate the cutting management of riparian vegetation. Five different scenarios are proposed in this study, including original, as well as cutting along main-channel side, cutting along bank side, alternative cutting and reducing vegetative density. The influence of the proposed scenarios on hydrodynamic behaviors is investigated in a rectangular channel. Simulated results suggest that cutting along the main-channel side is the most effectively scenario among others in reducing the water depths and flow velocities of the original one.
机译:本研究提出了利用深度平均二维流动模型对河岸植被的详细流体动力学和栖息地特征的数值预测。该模型解决了深度平均雷诺平均revier-stokes方程。通过植被上流动施加的拖曳力来考虑营养效果,从而产生额外的源方程。矩形和复合通道中流动的模拟结果与一侧植被均匀的实验数据恰逢其一致。此外,该模型用于模拟河岸植被的切割管理。五个不同的场景中提出了本研究中,包括原始的,沿主通道侧,以及切割,沿着银行侧,替代切割切割和减少营养密度。在矩形通道中研究了所提出的情况对水动力行为的影响。模拟结果表明,沿着主沟道侧切割是减少原始水深和流速的最有效的场景。

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