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Three-dimensional wall-bounded laminar boundary layer with span-wise cross free stream and moving boundary

机译:具有跨度横向自由流和运动边界的三维墙边界层流边界层

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In the current work, the 3D boundary layers of wall-bounded flow configurations were extended to the situations with span-wise cross moving boundary and free stream. The unsteady boundary layer is also addressed for the Falkner–Skan wedge flow with a span-wise oscillating wall or oscillating free stream. The span-wise secondary boundary layer equation is obtained using similarity transformation technique and solved analytically in terms of the primary stream-wise boundary layer flow solutions. Different fluid motion behaviors are found for these new solutions. It is found that for the span-wise secondary boundary layer flow there is no flow separation for any wall cross moving velocity, which is different from the primary stream-wise boundary layers with a reverse flow. For the unsteady boundary layer with an oscillating wall or free stream, it is seen that the solution is different from the Stokes oscillating plate or free stream problem. The unsteady wall drag increases with the increase in the oscillating frequency and decreases with increasing the primary span-wise free stream magnitude. The velocity overshooting near the wall is also seen for an oscillating free stream for a large oscillating frequency or a lower primary stream-wise free stream magnitude.
机译:在当前的工作中,壁面流动配置的3D边界层被扩展到跨展向交叉移动边界和自由流的情况。对于Falkner–Skan楔形流,还可以解决非稳定边界层的问题,该流具有跨度的振荡壁或振荡的自由流。使用相似度转换技术获得跨度方向的第二边界层方程,并根据主流方向的边界层流动解进行解析求解。对于这些新解决方案,发现了不同的流体运动行为。发现对于跨度方向的第二边界层流,对于任何壁交叉移动速度都没有流分离,这与具有逆流的主流方向的边界层不同。对于具有振荡壁或自由流的非稳定边界层,可以看到解决方案不同于斯托克斯振荡板或自由流问题。不稳定壁阻力随着振荡频率的增加而增加,并且随着初级翼展方向自由流大小的增加而减小。对于较大的振荡频率或较低的沿主流的自由流幅值,对于自由流也可以看到壁附近的速度超调。

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