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Analysis of Instantaneous Turbulent Velocity Vector and Temperature Profiles in Transitional Rough Channel Flow

机译:过渡粗糙通道中瞬时湍流速度矢量和温度曲线的分析

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The instantaneous velocity vector and instantaneous temperature in a turbulent flow in a transitionally rough channel have been analyzed from unsteady Navier-Stokes equations and unsteady thermal energy equation for large Reynolds numbers. The inner and outer layers asymptotic expansions for the instantaneous velocity vector and instantaneous temperature have been matched in the overlap region by the Izakson-Millikan-Kolmogorov hypothesis. The higher order effects and implications of the intermediate (or meso) layer are analyzed for the instantaneous velocity vector and instantaneous temperature. Uniformly valid solutions for instantaneous velocity vector have been decomposed into the mean velocity vector, and fluctuations in velocity vector, as well as the instantaneous temperature, have been decomposed into mean temperature and fluctuations in temperature. It is shown in the present work that if the mean velocity vector in the work of Afzal (1976, "Millikan Argument at Moderately Large Reynolds Numbers, " Phys. Fluids, 16, pp. 600-602) is replaced by instantaneous velocity vector, we get the results of Lundgren (2007, "Asymptotic Analysis of the Constant Pressure Turbulent Boundary Layer," Phys. Fluids, 19, pp. 055105) for instantaneous velocity vector. The comparison of the predictions for momentum and thermal mesolayers is supported by direct numerical simulation (DNS) and experimental data.
机译:从不稳定的Navier-Stokes方程和不稳定的热能方程(对于大的雷诺数),分析了过渡粗糙通道中湍流中的瞬时速度矢量和瞬时温度。 Izakson-Millikan-Kolmogorov假设在重叠区域匹配了瞬时速度矢量和瞬时温度的内层和外层渐近展开。针对瞬时速度矢量和瞬时温度,分析了中间(或中间)层的较高阶效应和含义。将瞬时速度矢量的统一有效解分解为平均速度矢量,并将速度矢量的波动以及瞬时温度分解为平均温度和温度波动。当前的工作表明,如果将Afzal工作中的平均速度矢量(1976年,“中等大雷诺数的Millikan论点”,Phys.Fluids,16,第600-602页)替换为瞬时速度矢量,我们得到了Lundgren(2007,“恒压湍流边界层的渐近分析”,Phys.Fluids,19,pp.055105)的结果,用于瞬时速度矢量。直接数值模拟(DNS)和实验数据支持对动量和热中间层预测的比较。

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