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Boundary Layers on a Flat Plate at Sub-and Superorbital Speeds

机译:平板在亚轨道和超轨道速度下的边界层

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The heat flux and boundary layers over a flat plate at suborbital and superorbital speeds were measured in a free-piston expansion tube at enthalpies of 26.0 and 53.4 MJ/kg, respectively. Estimates of the gas-phase and surface Damkohler numbers were made that indicate that although the boundary layer might be frozen, there is a possibility of surface reactions occurring. The heat-flux results were compared with theoretical predictions of heat flux for both frozen and equilibrium chemistries. The results indicated that the influence of real gas effects, such as recombination and surface catalycity, were minimal for the present flow conditions. Interferograms were obtained using resonance enhancement of the thermal boundary layer over a flat plate. Comparison of the measured boundary-layer thickness with several expressions used to predict the boundary-layer thickness allowed an evaluation of their effectiveness at high enthalpies.
机译:在自由活塞膨胀管中,分别以26.0和53.4 MJ / kg的焓测量亚轨道和超轨道速度下平板上的热通量和边界层。进行了气相和表面Damkohler数的估计,表明尽管边界层可能被冻结,但仍有可能发生表面反应。将热通量结果与冷冻化学和平衡化学的热通量的理论预测值进行了比较。结果表明,在目前的流动条件下,实际气体影响(如重组和表面催化)的影响最小。使用平板上的热边界层的共振增强获得干涉图。将测得的边界层厚度与几种用于预测边界层厚度的表达式进行比较,可以评估它们在高焓下的有效性。

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