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A Computational Study of Entrainment in the Near Field of a Gas Jet

机译:近场近场夹带的计算研究

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A multidimensional model for transient sprays and gas jets is employed to study entrainment characteristics in the near field of a gas jet. Turbulence is represented using a k-e model. Local entrainment and mass flux in the near field of the jets were estimated as functions of axial distance from the jet orifice. Integrated radial mass inflow to the center of the jet as a function of radial distance was also examined. The results are compared with published trends in the literature. The behavior of the entrainment constant is also examined in the near field. The effect of the near field entrainment characteristics on the far field behavior of the jet is discussed. The influence of the orifice velocity profile on entrainment characteristics is also discussed. Computed results of centerline velocity in steady gas jet are compared to particle image velocimetry measurements made in gas jets. The implications of these results for modeling transient jets in engines are critically evaluated.
机译:用于瞬态喷射和气体喷射的多维模型用于研究近场近场的夹带特性。使用K-E模型表示湍流。局部夹带和近场近场的质量通量被估计为距射流孔的轴向距离的函数。还检查了作为径向距离函数的射流中心的集成径向质量流入。将结果与文献中发表的趋势进行了比较。近端的夹带常量的行为也在近场中进行检查。讨论了近场夹带特性对射流的远场行为的影响。还讨论了孔口速度分布对夹带特性的影响。将稳定气体射流中的中心线速度的计算结果与煤气喷射中的颗粒图像速度测量进行比较。这些结果对发动机中的瞬态喷射进行建模的影响是批判性评估的。

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