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首页> 外文期刊>Environmental fluid mechanics >Applying the discrete vortex method in environmental fluid mechanics: A study of the time-averaged near wake behind a circular cylinder
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Applying the discrete vortex method in environmental fluid mechanics: A study of the time-averaged near wake behind a circular cylinder

机译:离散涡旋方法在环境流体力学中的应用:圆柱后面的平均近尾流时间的研究

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This work illustrates the discrete vortex method (DVM) as a tool for simulating environmental fluid mechanics problems involving transport in the wake of a bluff body. The DVM was used to model both the long-time-averaged and instantaneous features of flow past a circular cylinder. Simulations were performed for Re = 140, 000. Verification testing was accomplished by refining time-step and vortex element circulation. The DVM was validated through comparison with experimental data from Cantwell and Coles. Verification testing demonstrated that, while global convergence is not possible for an unsteady flow simulation, it is possible to have convergence to physical results. This verification entails identifying a range of parameters in which a flow containing coherent structures and matching physical conditions is attainable. Validation tests demonstrated excellent agreement between experimental and simulated results for time-averaged velocity and shear stress profiles, as well as Strouhal number.
机译:这项工作说明了离散涡旋方法(DVM)作为一种用于模拟环境流体力学问题的工具,该问题涉及在钝体尾流中的传输。 DVM用于对流经圆柱的流量的长时间平均和瞬时特征进行建模。对Re = 140,000进行了仿真。通过细化时间步长和涡旋元素循环来完成验证测试。通过与Cantwell和Coles的实验数据进行比较,验证了DVM。验证测试表明,虽然对于不稳定的流动模拟而言不可能实现全局收敛,但可以收敛到物理结果。该验证需要确定一系列参数,在该参数范围内可获得包含相干结构和匹配物理条件的流。验证测试表明,时间平均速度和切应力曲线以及Strouhal数在实验结果和模拟结果之间具有极好的一致性。

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