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Study of trajectories of jets in crossflow using direct numerical simulations

机译:直接数值模拟研究横流中射流的轨迹

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摘要

This paper studies the trajectories and near field of round jets in crossflow. Incompressible direct numerical simulations are performed at velocity ratios of 1.5 and 5.7 and the effects of jet velocity profile and boundary layer thickness on the jet trajectory are examined. The 'rd' scaling used at present (Margason 1993) does not contain any information on these parameters, and trajectories scaled by rd do not collapse. The trajectory is strongly influenced by the near field which depends on both the jet velocity profile and the crossflow boundary layer. A length scale is proposed to describe the near field of the jet. An analytical expression is proposed for this length scale which is a measure of the relative inertia of the jet and the crossflow. Incorporating this length scale significantly improves the scaling of the trajectories.
机译:本文研究了横流中圆形射流的轨迹和近场。以1.5和5.7的速度比执行不可压缩的直接数值模拟,并检查了射流速度分布和边界层厚度对射流轨迹的影响。目前使用的“ rd”标度(Margason 1993)不包含有关这些参数的任何信息,并且由rd标度的轨迹不会崩溃。轨迹受到近场的强烈影响,近场既取决于射流速度分布,又取决于横流边界层。建议使用长度标尺来描述射流的近​​场。针对该长度标尺提出了一种解析表达式,该解析表达式是射流和横流的相对惯性的量度。合并此长度比例尺可以显着改善轨迹的比例尺。

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