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GOVERNING PARAMETERS OF ADVERSE PRESSURE GRADIENT TURBULENT BOUNDARY LAYERS

机译:反向压力梯度湍流边界层的测量参数

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We perform a careful nondimensional analysis of the turbulent boundary layer equations in order to bring out, without assuming any self-similar behaviour, a consistent set of nondimensional parameters characterizing the outer region of turbulent boundary layers with arbitrary pressure gradients. These nondimensional parameters are a pressure gradient parameter, a Reynolds number (different from commonly used ones) and an inertial parameter. They are obtained without assuming a priori the outer length and velocity scales. They represent the ratio of the magnitudes of two types of forces in the outer region, using the Reynolds shear stress gradient (apparent turbulent force) as the reference force: inertia to apparent turbulent forces for the inertial parameter, pressure to apparent turbulent forces for the pressure gradient parameter and apparent turbulent to viscous forces for the Reynolds number. We determine under what conditions they retain their meaning, depending on the outer velocity scale that is considered, with the help of seven boundary layer databases. We find the impressive result that if the Zagarola- Smits velocity is used as the outer velocity scale, the stream-wise evolution of the three ratios of forces in the outer region can be accurately followed with these non-dimensional parameters in all these flows-not just the order of magnitude of these ratios. This cannot be achieved with three other outer velocity scales commonly used for pressure gradient turbulent boundary layers. Consequently, the three new nondimensional parameters, when expressed with the Zagarola-Smits velocity, can be used to follow-in a global sense-the streamwise evolution of the stream-wise mean momentum balance in the outer region. This study provides a clear and consistent framework for the analysis of the outer region of adverse-pressure-gradient turbulent boundary layers.
机译:我们对湍流边界层方程进行仔细的无量纲分析,以便在不假设任何自相似行为的情况下得出一致的一组无量纲参数,这些参数表征具有任意压力梯度的湍流边界层的外部区域。这些无量纲参数是压力梯度参数,雷诺数(不同于常用的参数)和惯性参数。无需事先假设外部长度和速度范围即可获得它们。它们表示外部区域中两种力的大小之比,以雷诺剪切应力梯度(视在湍流力)为参考力:惯性参数的惯性与视在湍流力,对于惯性参数为压力与视在湍流力雷诺数的压力梯度参数和表观湍流到粘性力。在七个边界层数据库的帮助下,我们根据所考虑的外部速度标尺确定它们在什么条件下保留其含义。我们发现令人印象深刻的结果是,如果使用Zagarola-Smits速度作为外部速度标度,则在所有这些流中,这些无量纲的参数都可以精确地跟踪外部区域中三种力的比率沿流向的演化,不只是这些比例的数量级。这通常无法通过压力梯度湍流边界层通常使用的三个其他外部速度标尺来实现。因此,当以Zagarola-Smits速度表示时,这三个新的无量纲参数可用于在全局意义上跟随外部区域中流向平均动量平衡的流向演变。这项研究为分析逆压梯度湍流边界层的外部区域提供了清晰一致的框架。

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