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Numerical Simulation of an Air-Core Vortex and Its Suppression at an Intake Using OpenFOAM

机译:空心涡流的数值模拟及其在摄入型工厂的抑制作用

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A common challenge faced by engineers in the hydraulic industry is the formation of free surface vortices at pump and power intakes. This undesirable phenomenon which sometimes entrains air could result in several operational problems: noise, vibration, cavitation, surging, structural damage to turbines and pumps, energy losses, efficiency losses, etc. This paper investigates the numerical simulation of an experimentally observed air-core vortex at an intake using the LTSInterFoam solver in OpenFOAM. The solver uses local time-stepping integration. In simulating the air-core vortex, the standard k ? ε, realizable k ? ε, renormalization group (RNG) k ? ε and the shear stress transport (SST) k ? ω models were used. The free surface was modelled using the volume of fluid (VOF) model. The simulation was validated using a set of analytical models and experimental data. The SST k ? ω model provided the best results compared to the other turbulence models. The study was extended to simulate the effect of installing an anti-vortex device on the formation of a free surface vortex. The LTSInterFoam solver proved to be a reliable solver for the steady state simulation of a free surface vortex in OpenFOAM.
机译:工程师面临的常见挑战是液压工业中面临的普遍形成泵和电力摄入量的自由表面涡旋。有时纳入空气的这种不良现象可能导致若干操作问题:噪音,振动,空化,汹涌,对涡轮机和泵的结构损坏,能量损失,效率损失等。本文研究了实验观察到的空心核的数值模拟使用OpenFoam中的Ltsinterfoam Solver Atake的Intrake涡旋。求解器使用本地时间步进集成。在模拟空心涡流,标准k? ε,可实现的k? ε,重整化组(RNG)K? ε和剪切应力运输(SST)k?使用ω模型。使用流体(VOF)模型的体积进行建模自由表面。使用一组分析模型和实验数据进行验证仿真。 sst k?与其他湍流模型相比,提供了最佳效果。该研究扩展了模拟在自由表面涡旋形成上安装防涡装置的效果。 LTSInterfoam Solver证明是可靠的求解器,用于悬垂的OpenFoam中自由表面涡流的稳态模拟。

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