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Numerical study of unsteady flow around a cavitating hydrofoil

机译:空化翼型周围非定常流动的数值研究

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This paper presents a numerical study of the non-cavitating and cavitating flow around CAV 2003 hydrofoil. The phenomenon of cavitation is modeled through a mixture model. For the numerical solution of cavitating flow a bubble dynamics cavitation model is used to describe the generation and evaporation of vapor phase. The non-cavitating study focuses on the influence of the turbulence model and different mesh sizes used in the computation. Three turbulence models such as Spalart-Allmaras, Shear Stress Turbulence (SST) k-ω model, RNG k-ε with enhanced wall treatment are used to capture turbulent boundary layer along the hydrofoil surface. The results predicted by these models are compared with each other. The cavitating study first presented an unsteady behavior of the partial cavity attached to the foil. Then, an analysis of a supercavitating condition is performed. The predicted results show good agreement with results published by other researchers.DOI: 10.3329/jname.v7i2.5270
机译:本文对CAV 2003水翼周围的非空化和空化流动进行了数值研究。空化现象是通过混合模型建模的。对于空化流的数值解,使用气泡动力学空化模型来描述汽相的产生和蒸发。非空洞研究侧重于湍流模型和计算中使用的不同网格尺寸的影响。三种湍流模型(例如Spalart-Allmaras,剪切应力湍流(SST)k-ω模型,经过增强壁处理的RNGk-ε)用于捕获沿水翼表面的湍流边界层。这些模型预测的结果相互比较。空化研究首先提出了附着在金属箔上的部分空腔的不稳定行为。然后,进行超空化条件的分析。预测结果与其他研究人员发表的结果吻合很好.DOI:10.3329 / jname.v7i2.5270

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