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Boundary Layer Stability on a Yawed Spinning Body of Revolution and Its Effect on the Magnus Force and Moment

机译:偏转旋转体上的边界层稳定性及其对马格努斯力矩的影响

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The parameters are established which are important to the stability of a boundary layer flow over a yawed spinning cylinder in a uniform stream. It is shown that transition occurs asymmetrically in general and this asymmetry can be important for the prediction of aerodynamic forces and moments (e.g., the Magnus effect). Instability of the steady-state boundary layer flow is determined using small disturbance theory. Although the approach is strictly valid only for the calculation of the conditions for stability in the small, experimental data indicate that in many problems, it provides a good estimate for the transition to turbulence. (Author)

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