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A Comparison of Classical and Pulsating Jets in Crossflow at Various Strouhal Numbers

机译:各种斯特鲁哈尔数横流中经典和脉动喷射的比较

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摘要

Investigation of the classical and pulsating jet in crossflow (JICF) at a low Reynolds number (Re = 100) has been performed by the LES method based on varied velocity ratios (r=  1~4). Time-averaged particle trajectories are compared in the classical and pulsating JICF. The formation mechanism and the corresponding flow characteristics for the counter-rotating vortex pair (CRVP) have been analyzed. An unexpected “vortex tail” has been found in the JICF at higher velocity ratio due to the enhanced interactions indicated by the increased jet momentum among the CRVP, upright vortices, and shear layers. The analysis of time-averaged longitudinal vorticity including a coupling mechanism between vortices has been performed. The returning streamlines appear in the pulsating JICF, and two extra converging points emerge near the nozzle of the jet at different Strouhal numbers. The temperature profiles based on the iso-surface for the classical and pulsating JICF have been obtained computationally and analyzed in detail.
机译:基于变速比率的LES方法(R = 1〜4),已经执行了对低雷诺数(RE = 100)的横流(JICF)的经典和脉动射流的研究。在经典和脉动的JICF中比较时间平均粒子轨迹。已经分析了用于反向旋转涡旋对(CRVP)的形成机制和相应的流动特性。由于CRVP,直立涡流和剪切层中增加的射流势头所示的增强的相互作用,JICF在JICF中发现了意外的“涡旋尾”。已经进行了包括涡流之间的耦合机构的时间平均纵向涡度的分析。返回的简化出现在脉动JICF中,两个额外的融合点在不同的Strouhal数字的喷嘴附近出现。基于用于经典和脉动JICF的ISO-表面的温度曲线已经计算得详细地获得并详细分析。

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