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Numerical simulation of droplet impingement and flow around a cylinder using RANS and LES models

机译:使用RANS和LES模型对液滴撞击和绕圆柱体流动的数值模拟

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The paper is devoted to the numerical modeling of droplet impingement on a cylinder and droplet transport behind it at a Reynolds number of 1.6 × 10~4. The objectives are to investigate the ability of different turbulence models to predict the collision efficiency and the droplet distribution in the wake in order to find the computationally most efficient way to achieve reliable results. The solutions of potential theory and four different RANS models are compared using the one obtained with Large Eddy Simulation as reference. The results show that the collision efficiency of the cylinder is predicted well by both potential theory and all considered RANS models for the given Reynolds number and droplet diameters of 13, 17, and 45 μm. However, only the RNG k-ε model with enhanced wall treatment results in the droplet flow in the wake behind the cylinder being similar to the results obtained by LES.
机译:本文专门研究了液滴在圆柱体上的撞击以及在其后部以雷诺数1.6×10〜4进行的液滴传输的数值模拟。目的是研究不同湍流模型预测尾流中碰撞效率和液滴分布的能力,以便找到计算上最有效的方法来获得可靠的结果。以大涡模拟为参考,比较了势理论和四种不同的RANS模型的解。结果表明,对于给定的雷诺数和13、17和45μm的液滴直径,通过势能理论和所有考虑的RANS模型都可以很好地预测圆柱体的碰撞效率。但是,只有经过增强的壁处理的RNGk-ε模型才能使液滴在圆柱后面的尾流中流动,类似于LES获得的结果。

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