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首页> 外文期刊>Physical review, E >Suppression mechanism of Kelvin-Helmholtz instability in compressible fluid flows
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Suppression mechanism of Kelvin-Helmholtz instability in compressible fluid flows

机译:可压缩流体中Kelvin-Helmholtz不稳定性的抑制机制

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The transformative influence of compressibility on the Kelvin-Helmholtz instability (KHI) at the interface between two fluid streams of different velocities is explicated. When the velocity difference is small (subsonic), shear effects dominate the interface flow dynamics causing monotonic roll-up of vorticity and mixing between the two streams leading to the KHI. We find that at supersonic speed differentials, compressibility forces the dominance of dilatational (acoustic) rather than shear dynamics at the interface. Within this dilatational interface layer, traveling pressure waves cause the velocity perturbations to become oscillatory. We demonstrate that the oscillatory fluid motion reverses vortex roll-up and segregates the two streams leading to KHI suppression. Analysis and illustrations of the compressibility-induced suppression mechanism are presented.
机译:阐述了可压缩性对两个不同速度的流体流之间的界面处的开尔文-亥姆霍兹不稳定性(KHI)的影响。当速度差较小(亚音速)时,剪切作用将主导界面流动动力学,导致涡度单调卷起并在两个流之间混合,从而导致KHI。我们发现,在超声速差下,可压缩性迫使膨胀(声学)占主导地位,而不是界面处的剪切动力学。在该膨胀界面层内,行进的压力波使速度扰动变得振荡。我们证明了振荡流体运动逆转了涡旋并分离了导致KHI抑制的两个流。给出了可压缩性抑制机制的分析和说明。

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