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Hypersonic interference heating on cones with short three-dimensional protuberances

机译:具有短三维隆起的圆锥体上的高超声速干涉加热

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摘要

Heat fluxes around short, three-dimensional protuberances on sharp and blunt cones in hypersonic flow were experimentally measured using platinum thin-film sensors deposited on macor inserts. A parametric study of different protrusion geometries and flow conditions were conducted. Excessive heating was observed at locations near the protrusion where increased vorticity is expected, with the hottest spot being presented at the foot of the protuberance immediately upstream of it. If left unchecked, these hot spots could prove detrimental to hypersonic flight vehicles. Z-type schlieren technique was used to visualize the flow features qualitatively. New correlations to predict the heat flux at the hot spot have been proposed.
机译:高超音速流中尖锐和钝锥上短,三维突起周围的热通量是使用沉积在macor刀片上的铂薄膜传感器通过实验测量的。进行了不同突起几何形状和流动条件的参数研究。在突起附近预计会增加涡度的位置观察到过度加热,最热的部位位于突起的底部,紧邻突起的上游。如果不加以限制,这些热点可能会损害高超音速飞行器。使用Z型schlieren技术定性地可视化流动特征。已经提出了预测热点处热通量的新的相关性。

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