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首页> 外文期刊>International Journal of Heat and Fluid Flow >Scaling and statistics of large-defect adverse pressure gradient turbulent boundary layers
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Scaling and statistics of large-defect adverse pressure gradient turbulent boundary layers

机译:大缺陷逆压梯度湍流边界层的尺度与统计

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摘要

The purpose of this article is to test similarity laws and scaling ideas, as well as characterize turbulence behaviour of large-defect adverse-pressure gradient turbulent boundary layers using six experimental and numerical databases including a new direct numerical simulation of a strongly decelerated non-equilibrium turbulent boundary layer. In the latter flow, at a moderate Reynolds number, the mean velocity profiles depart from the classical law of the wall throughout the inner region including in the viscous sublayer and they do not follow the log law. However, the agreement is excellent with the extended law of the wall that accounts for the pressure gradient for the viscous sublayer. The Reynolds stress components are not self-similar in the viscous sublayer when the velocity defect is important, but they scale reasonably well with the pressure-viscous scales.
机译:本文的目的是使用六个实验和数值数据库,包括对强减速非平衡的新的直接数值模拟,来测试相似性定律和缩放思想,以及表征大缺陷逆压梯度湍流边界层的湍流行为。湍流边界层。在后一种流动中,在一个中等的雷诺数下,平均速度曲线在包括粘性子层在内的整个内部区域均偏离壁的经典定律,并且不遵循对数定律。但是,对于解释粘性子层压力梯度的壁扩展定律,该协议是极好的。当速度缺陷很重要时,雷诺应力分量在粘性子层中不是自相似的,但它们随压力-粘滞标度的变化合理。

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