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Large eddy simulation of compressible round jets with coflow

机译:Coflow的可压缩圆射流的大涡模拟

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Large eddy simulations of subsonic round jets are carried out using high order compact finite difference scheme and an explicit filtering based approximate deconvolution method. The jets have a Mach number of 0.9 and Reynolds number of 4.5 x 10(5) based on jet diameter and centerline velocity at inflow. Results obtained for the mean flow and turbulence intensities agree well with those in existing literature. We also study the effects of co flow velocity ratio on the flow physics. Increase in potential core length and decrease in spreading rate of jet is observed in the presence of co-flow. The effects of co-flow velocity ratio on the axial Reynolds stress and turbulent kinetic energy budgets are also presented. It is observed that increasing co-flow velocity ratio leads to reduction in the turbulence intensities and near-field sound levels.
机译:使用高阶紧凑的有限差分方案和基于显式滤波的近似解卷积方法进行亚态圆形喷射的大型涡流模拟。基于射流直径和流入的中心线速度,喷射器的马赫数为0.9和雷诺数为4.5×10(5)。为平均流动和湍流强度获得的结果与现有文献中的那些相同。我们还研究了CO流速比对流物理的影响。在共流情况下,观察到潜在芯长度和射流扩散速率的增加。还提出了轴向雷诺应力和湍流动力学能预算的汇流流速比的影响。观察到,增加的融流速度比率导致湍流强度和近场声级的降低。

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