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Large Eddy Simulations of a confined tip-leakage cavitating flow with special emphasis on vortex dynamics

机译:具有特别强调涡流动态的密闭尖漏空腔的大型涡流模拟

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In current paper, Large Eddy Simulations are conducted to investigate the tip-leakage cavitating flow around a NACA0009 hydrofoil with a gap. The numerical result is compared with experimental data and a reasonable agreement is obtained. The vortex structures in the tip-leakage cavitating flow are well reproduced. Three types of vortex structures in tip-leakage cavitating flow are observed near the gap, the tip-leakage vortex, tip-separation vortex and induced vortexes. Compared with the tip-separation and induced vortexes, the tip-leakage vortex is much stronger and impacts significantly the development of the formers. The simplified vorticity transport equation suggests that the dilation term dominates in the whole process of vortex development, while the stretching term mainly concentrates near the end-wall of foil. The baroclinic torque is the major source of the vorticity production during the collapse of cavitation. Our work is helpful to understand the interactions between cavitation and vortexes in a tip-leakage cavitating flow.
机译:在目前的纸张中,进行大型涡流模拟,以研究具有间隙的NACA0009水翼膜周围的尖端泄漏空腔流动。将数值结果与实验数据进行比较,获得合理的协议。尖端泄漏空腔流动中的涡流结构良好再现。在间隙附近观察到尖端泄漏空化流动中的三种类型的涡流结构,尖端泄漏涡流,尖端分离涡流和诱导涡旋。与尖端分离和诱导涡旋相比,尖端泄漏涡旋更强大,造成卷材的发展大幅发展。简化的涡流传输方程表明,扩张项在涡旋发展的整个过程中占主导地位,而拉伸术语主要集中在箔的端壁附近。曲金扭矩是空化坍塌期间涡旋生产的主要来源。我们的工作有助于了解尖端泄漏空腔流动中空化和涡旋之间的相互作用。

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