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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Numerical investigation of supercavity geometry and gas leakage behavior for the ventilated supercavities with the twin-vortex and the re-entrant jet modes
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Numerical investigation of supercavity geometry and gas leakage behavior for the ventilated supercavities with the twin-vortex and the re-entrant jet modes

机译:用双涡流和再参与者喷射模式对通风超障碍超级沟壑几何和气体泄漏行为的数值研究

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摘要

To investigate the supercavity geometry and gas flow structure for the supercavities with two closure types under the different flow conditions, an inhomogeneous multiphase model with the SST turbulence model was established, and validated by experimental results. The results show that two distinct regions exist inside the supercavity, which include the downstream flow region along the gas-water interface and the reverse flow region. For the twin-vortex supercavity, the internal gas leaks from the supercavity boundary by two paths: the supercavity surface and the two-vortex tubes. Increasing Froude number leads to more internal gas stripped from the supercavity surface. Two types of gas loss exist for the re-entrant jet supercavity with high Froude number, one type is the steady process of gas loss, and the major gas-leaking path is the supercavity surface rather than supercavity closure region. The other type is the unsteady periodic ejection, and the gas cluster of periodic ejection is merely a small part of the gas stored inside the supercavity.
机译:为了研究在不同流动条件下具有两个闭合类型的超脉冲几何和气体流动结构,建立了具有SST湍流模型的非均匀多相模型,并通过实验结果验证。结果表明,超缺陷内部存在两个不同的区域,其包括沿着气体 - 水界面的下游流动区域和逆流区域。对于双涡超高曲线,内部气体通过两条路径从超级沟壑边界泄漏:超级避险表面和双涡管。增加Froude号码导致更多的内部气体从超级沟槽表面剥离。具有高弗劳德数的再参赛者射流超级沟壑存在两种汽油损失,一种类型是气体损失的稳定过程,并且主要的气体泄漏路径是超级避险表面而不是超级挤压闭合区域。其他类型是不稳定的周期性喷射,并且周期性喷射的气体簇仅仅是存储在超级避险度内的气体的一小部分。

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