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Temporal instability of swirling gas jets injected in liquids

机译:液体喷射回旋气体射流的时间不稳定性

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A temporal linear stability analysis of an inviscid incompressible swirling gas jet injected into a co-flowing liquid was conducted. The ratio of the tangential velocity to the axial velocity (swirl number) played a significant role in the destabilization of the gas jet. Even at small gas Weber numbers, the presence of swirl caused the higher order azimuthal modes to become unstable; the growth rates, and the dominant and limiting wave numbers of the higher order modes were greater than those of the varicose and sinuous modes. The differences in growth rates, limiting and dominant wave numbers of the various azimuthal modes became significant at large gas Weber numbers. An increase in liquid viscosity resulted in a reduction in the growth rates and the dominant wave numbers. The liquid co-flow velocity controlled the phase velocity of the unstable modes. (C) 2001 American Institute of Physics. [References: 14]
机译:对注入到同流液体中的无粘性不可压缩旋流气体进行了时间线性稳定性分析。切向速度与轴向速度之比(旋涡数)在气体射流不稳定中起重要作用。即使在气体韦伯数较小的情况下,旋涡的存在也会导致高阶方位模态变得不稳定;高阶模态的增长率,主导波数和极限波数均大于静脉曲张和正弦波模态。在大瓦斯韦伯数下,各种方位模的增长率,极限波数和主波数的差异变得很明显。液体粘度的增加导致生长速率和主导波数的降低。液体同流速度控制了不稳定模式的相速度。 (C)2001美国物理研究所。 [参考:14]

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