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MECHANISM OF WALL TURBULENCE IN BOUNDARY LAYER FLOW

机译:边界层流动中壁湍流的机理

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摘要

The energy gradient method is used to analyze the turbulent generation in the transition boundary layer flow. It is found that the maximum of the energy gradient function occurs at the wall for the Blasius boundary layer flow. At this location under a sufficiently high Reynolds number, even a low level of free-stream disturbance can cause the turbulent transition and sustain the flow to be in a state of turbulence. This is an excellent explanation of the physics of self-sustenance of wall turbulence. The mechanism of receptivity for boundary layer flow can also be understood from the energy gradient criterion. That is, the free-stream disturbance can propagate towards the wall by the "energy gradient" process to cause turbulent transition, and the transition point in boundary layer can be moved forward towards the leading edge when the level of external disturbance increases.
机译:能量梯度法用于分析过渡边界层流中的湍流产生。发现能量梯度函数的最大值出现在Blasius边界层流的壁上。在足够高的雷诺数下的该位置,即使是低水平的自由流扰动也会引起湍流过渡,并使流动保持湍流状态。这是对壁湍流自我维持的物理学的极好的解释。也可以从能量梯度标准中了解边界层流动的接受机理。即,自由流扰动可通过“能量梯度”过程向壁传播,以引起湍流过渡,并且当外部扰动水平增加时,边界层中的过渡点可朝着前缘向前移动。

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