首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >An Assessment of the Two-Layer Quasi-Laminar Theory of Relaminarization Through Recent High-Re Accelerated Turbulent Boundary Layer Experiments
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An Assessment of the Two-Layer Quasi-Laminar Theory of Relaminarization Through Recent High-Re Accelerated Turbulent Boundary Layer Experiments

机译:近期高再加速湍流边界层实验评估近代relamarizizization的两层准层状理论

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The phenomenon of relaminarization is observed in many flow situations, including that of an initially turbulent boundary layer (TBL) subjected to strong favorable pressure gradients (FPG). As several experiments on relaminarizing flows have indicated, TBLs subjected to high pressure gradients do not follow the universal log-law, and (for this and other reasons) the prediction of boundary layer (BL) parameters using current turbulence models has not been successful. However, a quasi-laminar theory (QLT; proposed in 1973), based on a two-layer model to explain the later stages of relaminarization, showed good agreement with the experimental data available at that time. These data were mostly at relatively low Re and hence left the precise role of viscosity undefined. QLT, therefore, could not be assessed at high-Re. Recent experiments, however, have provided more comprehensive data and extended the Reynolds number range to nearly 5 x 10(3) in momentum thickness. These data provide a basis for a reassessment of QLT, which is revisited here with an improved predictive code. It is demonstrated that even for these high-Re flows subjected to high acceleration, QLT provides good agreement with experimental results, and therefore, has the potential to substitute for Reynolds-averaged Navier-Stokes (RANS) simulations in high FPG regions.
机译:在许多流动情况下观察到雷欣化的现象,包括经受强良好的压力梯度(FPG)的初始湍流边界层(TBL)的现象。由于若干关于重新分析流动的实验表明,经过高压梯度的TBL不遵循通用记录法,并且(为此和其他原因)使用电流湍流模型的边界层(BL)参数的预测尚未成功。然而,基于两层模型来解释重新征化的后期模型,QLT; 1973年提出的QLT; QLT。这些数据主要是相对较低的RE,因此留下了粘度未定义的精确作用。因此,QLT无法在高回收中进行评估。然而,最近的实验提供了更全面的数据,并在动量厚度下延伸到近5×10(3)的雷诺数范围。这些数据为QLT重新评估提供了基础,这在这里重新审视了改进的预测代码。据证明,即使对于经过高加速的这些高再流量,QLT也与实验结果提供了良好的一致性,因此,有可能替代高FPG地区的雷诺平均Navier-Stokes(RANS)模拟。

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