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Numerical investigation of cavitation vortex dynamics in unsteady cavitating flow with shock wave propagation

机译:具有冲击波传播的非定常空化流中空化涡动力学的数值研究

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The objective of this paper is to study the cavitation vortex dynamics in compressible turbulent cavitating flow, around a NACA66 hydrofoil. The simulations are conducted based on the open source software OpenFOAM, solving the compressible governing equations together with the Tait state equation for water and ideal gas state equation for vapor. The Saito cavitation model is used to model the cavitation phase change process and SAS SST turbulence model is adopted to account for the turbulence effects. The numerical results showed a good agreement with the experiments. The cavity evolution presents quasi-periodic behaviors, and the alternative re-entrant flow movement and shock wave dynamics play an important role in cavitation vortex dynamics. Strong coherent relationship between cavitation behaviors and vortex dynamics is illustrated. Based on the budget analysis of vorticity transport equation, it shows that during the attached cavity growth, the re-entrant flow development and the cloud cavity being shed stages, the baroclinic torque term dominates the vorticity transport process. During the shock wave propagation stage, the vortex dilatation term dominates in the attached cavity sheet region. Besides, the baroclinic torque term has strong influence on vorticity transport characteristics.
机译:本文的目的是研究围绕NACA66水翼的可压缩湍流空化流中的空化涡动力学。仿真是基于开源软件OpenFOAM进行的,求解了可压缩控制方程以及水的Tait状态方程和蒸气的理想气体状态方程。使用Saito空化模型对空化相变过程进行建模,并采用SAS SST湍流模型来说明湍流效应。数值结果与实验结果吻合良好。腔演化呈现准周期行为,而可替代的折返流运动和冲击波动力学在空化涡旋动力学中起着重要作用。说明了空化行为与涡旋动力学之间的强相关关系。基于旋涡输运方程的预算分析,表明在附着腔增长,折返流发展和云腔脱落阶段,斜压扭矩项主导了旋涡的输送过程。在冲击波传播阶段,涡旋膨胀项在附着的空腔片区域中占主导地位。此外,斜压扭矩项对涡旋传输特性有很大的影响。

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