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Liquid jet instability and atomization in a coaxial gas stream [Review]

机译:同轴气流中液体射流的不稳定性和雾化[综述]

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An overview of the near and far-field breakup and atomization of a liquid jet by a high speed annular gas jet is presented. The various regimes of liquid jet breakup are discussed in the parameter space of the liquid Reynolds number, the aerodynamic Weber number, and the ratio of the momentum fluxes between the gas and the liquid streams. Recent measurements of the gas-liquid interfacial instabilities are reviewed and used to analyze the underlying physical mechanisms involved in the primary breakup of the liquid jet. This process is shown to consist of the periodic stripping of liquid sheets, or ligaments, which subsequently break up into smaller lumps or drops. Models to predict the liquid shedding frequency, as well as the global parameters of the spray such as the liquid core length and spray spreading angle are discussed and compared with the experiments. The role of the secondary liquid breakup on the far-field atomization of the liquid jet is also considered, and an attempt is made to apply the classical turbulent breakup concepts to explain qualitatively the measurement of the far-field droplet size distribution and its dependence on the liquid to gas mass and momentum flux ratios. Models for the droplet breakup frequency in the far-field region of the jet, and for the daughter-size probability density function, which account for the effect of the liquid loading on the local turbulent dissipation rate in the gas, are discussed in the context of the statistical description of the spray in the far field. The striking effect of the addition of swirl in the gas stream is also examined. [References: 79]
机译:概述了高速环形气体射流对液体射流的近场和远场分解和雾化。在液体雷诺数,空气动力学韦伯数以及气体和液体流之间的动量通量之比的参数空间中讨论了液体射流破裂的各种情况。回顾了最近对气液界面不稳定性的测量,并将其用于分析与液体射流初次破裂有关的潜在物理机制。示出该过程包括周期性地剥离液体片或韧带,其随后分裂成较小的团块或液滴。讨论了预测液体脱落频率的模型以及喷雾的整体参数,例如液芯长度和喷雾扩散角,并与实验进行了比较。还考虑了二次液体破碎在液体射流的远场雾化中的作用,并尝试应用经典的湍流破碎概念来定性地解释远场液滴尺寸分布的测量及其对液体与气体的质量和动量通量之比。在上下文中讨论了射流远场区域中的液滴破裂频率模型和子尺寸概率密度函数模型,这些模型考虑了液体载荷对气体中局部湍流耗散率的影响。远场喷雾的统计描述。还检查了在气流中增加涡流的惊人效果。 [参考:79]

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