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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Numerical investigation of dynamics of unsteady sheet/cloud cavitating flow using a compressible fluid model
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Numerical investigation of dynamics of unsteady sheet/cloud cavitating flow using a compressible fluid model

机译:基于可压缩流体模型的非稳态片/云空化流动力学数值研究

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摘要

In this paper, a compressible fluid model is proposed to investigate dynamics of the turbulent cavitating flow over a Clark-Y hydrofoil. The numerical simulation is based on the homogeneous mixture approach coupled with filter-based density correction model (FBDCM) turbulence model and Zwart cavitation model. Considering the compressibility effect, the equation of state of each phase is introduced into the numerical model. The results show that the predicted results agree well with experimental data concerning the time-averaged lift/drag coefficient and shedding frequency. The quasi-periodic evolution of sheet/cloud cavitation and the resulting lift and drag are discussed in detail. Especially, the present compressible-mixture numerical model is capable of simulating the shock waves in the final stage of cavity collapse. It is found that the shock waves may cause the transient significant increase and decrease in lift and drag if the cavity collapses near the foil surface.
机译:在本文中,提出了一种可压缩流体模型,以研究Clark-Y水翼上的湍流空化流动力学。数值模拟基于均质混合方法,基于滤波器的密度校正模型(FBDCM)湍流模型和Zwart空化模型。考虑到压缩性的影响,将各相的状态方程式引入到数值模型中。结果表明,预测结果与时间平均升力/阻力系数和脱落频率的实验数据吻合良好。详细讨论了片/云空化的准周期演化以及由此产生的升力和阻力。特别地,本发明的可压缩混合物数值模型能够模拟腔塌陷最后阶段的冲击波。已经发现,如果空腔在箔片表面附近塌陷,则冲击波可能会引起瞬态显着增加和减小的升力和阻力。

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