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Numerical simulation of unsteady flow characteristics for cavitation around a 3-D hydrofoil

机译:三维水翼空化空化流动特性的数值模拟

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At present it is possible to predict more accurately by various numerical methods established for cavitation simulation around a hydrofoil. However, for the solution of the complex unsteady cavity flow, it is still marginal. In this paper, numerical method is adopted to simulate cavitation around 3-D NACA0015 hydrofoil with homogeneous two-phase flow calculation using commercial code CFX-solver with two turbulence models, the standard RNG k-ε turbulence model and the modified RNG k-ε turbulence model respectively. First, pressure coefficient for non-cavitating flow, time averaged values of unsteady cavity flow around a hydrofoil are verified to simulate more closely to an actual cavity flow. And then frequency analysis is performed with Fast Fourier Transform. The results show that the calculation results with modified RNG k-ε turbulence model agree with experimental results in terms of mean cavity length and pressure drop, but the unsteady flow characteristics of oscillating cavitation still deviate slightly in terms of unsteady cavity flow.
机译:目前,可以通过建立用于围绕水翼的空化模拟的各种数值方法来预测更准确的。然而,对于复杂的不稳定腔流量的溶液,它仍然是边缘的。在本文中,采用数值方法来使用商业代码CFX求解器进行均匀两相流量计算,使用具有两个湍流模型,标准RNG K-ε湍流模型和改进的RNG k-ε在均匀的两相流量计算围绕3-d NaCA0015水翼进行均匀两相流量计算。湍流模型。首先,验证水膜周围的不稳定腔流量的时间平均值的压力系数,以更接近地模拟实际腔流量。然后使用快速傅里叶变换进行频率分析。结果表明,通过改进的RNG k-ε湍流模型的计算结果与平均腔长和压降方面的实验结果一致,但振荡空化的非定常流动特性仍然略微偏离不稳定的腔流量。

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