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Numerical and experimental study of the fundamental flow characteristics of a 3D gully box under drainage

机译:排水下3D沟壑箱的基本流动特性的数值和实验研究

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Numerical studies regarding the influence of entrapped air on the hydraulic performance of gullies are nonexistent. This is due to the lack of a model that simulates the air-entrainment phenomena and consequently the entrapped air. In this work, we used experimental data to validate an air-entrainment model that uses a Volume-of-Fluid based method to detect the interface and the Shearstress transport k-omega turbulence model. The air is detected in a sub-grid scale, generated by a source term and transported using a slip velocity formulation. Results are shown in terms of free-surface elevation, velocity profiles, turbulent kinetic energy and discharge coefficients. The air-entrainment model allied to the turbulence model showed a good accuracy in the prediction of the zones of the gully where the air is more concentrated.
机译:关于捕获空气对沟渠液压性能影响的数值研究是不存在的。 这是由于缺乏模型来模拟空气夹带现象,因此夹带空气。 在这项工作中,我们使用实验数据来验证使用基于流体体积的方法来验证空气夹带模型来检测界面和Shearstress传输K-Omega湍流模型。 空气被检测以子网格刻度,由源术语产生并使用滑动速度制剂运输。 结果显示在自由表面升高,速度型材,湍流动力学能量和放电系数方面。 涉及到湍流模型的空气夹带模型在沟壑的区域预测到空气更浓缩的地方的预测方案良好。

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