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Simulation of exchange flow between open water and floating vegetation using a modified RNG k-ε turbulence model

机译:使用改进的RNG型开放水和浮植物之间的交换流动模拟<重点型=“斜体”> K /重点> - <重点型=“斜体”>ε湍流模型

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摘要

Abstract The paper focuses on the numerical simulation of the exchange flow between open water and floating vegetation, which plays an important role in maintaining the ecological balance by transporting nutrient matter. The simulation was conducted using a new solver developed upon OpenFOAM. A modified RNG k-ε turbulence model, which is expected to model both the high- and low-Reynolds number flows correctly, was used to determine the eddy viscosity. Several particular terms were added into the momentum equations and turbulence model equations to model the effects of vegetation and buoyancy. Among these terms, the term for the effect of vegetation in the ε-equation was re-modelled. The model was validated by properly predicting the profiles of mean velocity and turbulent kinetic energy for flows through suspended canopies. The density flow between open and vegetated water was simulated with the same conditions as those of the experiment conducted by Zhang and Nepf. The predicted results agreed well with the experimental data and provided more detailed information of such exchange flow. The convection between the root layer and the layer beneath the roots, which was not observed in the experiment, was observed in the numerical simulation.]]>
机译:<![cdata [<标题>抽象 ara id =“par1”>本文重点介绍了开放水与浮植植被之间的交换流动的数值模拟,这在维持生态平衡方面起着重要作用运输营养物质。使用在OpenFoam上开发的新求解器进行仿真。修改的RNG <重点类型=“斜体”> K - <重点类型=“斜体”>ε湍流模型,预计将正确模拟高雷诺数流量,用于确定涡流粘度。将几个特定的​​术语添加到动量方程和湍流模型方程中,以模拟植被​​和浮力的影响。在这些术语中,重新建模植被植被植被影响<重点=“斜体”>ε -Equation。通过适当地预测通过悬浮的檐篷流量流动的平均速度和湍流动能的曲线来验证该模型。用Zhang和Nepf进行的实验,模拟开放和植被水之间的密度流量。预测结果与实验数据相加得很好,并提供了这种交换流程的更详细信息。在数值模拟中观察到在实验中未观察到的根层和在实验中未观察到的根部之间的对流。]]>

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