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首页> 外文期刊>Journal of visualization >Application of free interaction theory in swept shock wave/turbulent boundary layer interactions
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Application of free interaction theory in swept shock wave/turbulent boundary layer interactions

机译:自由相互作用理论在扫激波/湍流边界层相互作用中的应用

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摘要

AbstractFin-generated swept shock wave/turbulent boundary layer interactions were experimentally investigated via nanoparticle-based planar laser scattering method, surface oil flow visualizations, surface pressure measurements, and particle image velocimetry. Surface plateau pressure is also theoretically predicted. The plateau pressure of present quasi-conical swept shock interaction is dependent on the local skin friction coefficient and normal Mach number component, and can be predicted per a criterion deduced from free interaction theory. Visualizations and surface pressure measurements confirm that the surface plateau pressure data are equal to the pressure downstream of the separation shock; the upstream influence line is parallel to the impingement line of the separation shock on the flat plate. These observations support the free interaction theory as-applied to quasi-conical swept shock interactions.Graphical abstract
机译: 摘要 由鳍产生的扫荡冲击波/湍流通过基于纳米粒子的平面激光散射方法,表面油流可视化,表面压力测量和粒子图像测速,对边界层相互作用进行了实验研究。从理论上还可以预测表面平台压力。当前的准锥形扫掠冲击相互作用的平台压力取决于局部皮肤摩擦系数和正常的马赫数分量,并且可以根据由自由相互作用理论推导的标准来预测。可视化和表面压力测量结果证实表面平稳压力数据等于分离冲击下游的压力;上游影响线平行于平板上的分离冲击的冲击线。这些观察结果支持适用于准圆锥形扫频冲击相互作用的自由相互作用理论。 图形抽象 <图类别=“标准” Float =“否” ID =“ Figa”>

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