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首页> 外文期刊>European Journal of Mechanics, B. Fluids >Vortex-speed selection within the boundary-layer flow over a rotating sphere placed in an enforced axial flow
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Vortex-speed selection within the boundary-layer flow over a rotating sphere placed in an enforced axial flow

机译:置于强制轴向流中的旋转球体边界层流内的涡旋速度选择

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This paper furthers existing work into the instability mechanisms within the boundary-layer flow over a rotating sphere through the study of amplification rates within the convectively-unstable region. The onset of convective instability is associated with the experimentally observed onset of spiral vortices reported in the literature. Axial flow is found to stabilize the boundary layer by both delaying the onset of convective instability at all latitudes and also by significantly reducing the spatial amplification rates. We find that the type II (streamline curvature) mode becomes increasingly amplified with respect to the type I (crossflow) mode and is therefore likely to be selected in practice for sufficiently high axial flow rates. Furthermore, in experiments where special care is taken to remove all surface roughness, we predict that vortices will rotate at around 75% of the local surface speed. This is consistent with the experimental observations of Kobayashi & Arai who note a speed of around 76% under particular experimental conditions. These predictions are entirely consistent with related work on the rotating-disk and cone boundary layers.
机译:通过对流不稳定区域内的放大率的研究,本文进一步研究了旋转球体边界层流内的不稳定性机理。对流不稳定性的发生与文献报道的螺旋涡旋的实验观察有关。发现轴流可以通过延迟所有纬度对流不稳定性的发生并显着降低空间放大率来稳定边界层。我们发现II型(流线曲率)模式相对于I型(错流)模式变得越来越大,因此在实践中很可能会选择足够高的轴向流量。此外,在特别注意去除所有表面粗糙度的实验中,我们预测涡旋将以局部表面速度的75%左右旋转。这与Kobayashi&Arai的实验观察结果一致,后者在特定实验条件下的速度约为76%。这些预测与转盘和圆锥边界层上的相关工作完全一致。

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