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Investigation of Unsteady/Quasi-Steady Scramjet Behavior using High-Speed Visualization Techniques

机译:使用高速可视化技术调查非定常/准稳态扰乱行为

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Experiments are carried out in the HEG (High Enthalpy Shock Tunnel G?ttingen) wind-tunnel to obtain detailed measurements on the HyShot II scramjet configuration at equivalence ratios close to the incipient choking point at simulated 28-km altitude flight conditions. Diagnostic techniques include time-resolved pressure measurements and simultaneous high-speed schlieren and OH* chemiluminescence imaging. Similar to previous experiments at higher equivalence ratios, the onset of choking is signaled by the formation of an unsteady shock train that initially propagates up the duct. The shock motion then slows, however, and a quasi-steady topology develops with the shock lodged at a position that depends strongly on the equivalence ratio (the position lying further upstream for higher equivalence ratios). This topology persists until the conclusion of the steady test time. Based on these measurements, a value for the critical choking equivalence ratio, i.e., that at which the shock train first appears, in the range of 0.38-0.39 is determined. High-speed temperature sensitive paint measurements are also carried out on the model intake ramp to provide global information on the boundary-layer transition behavior.
机译:实验在HEG(高焓冲击隧道G.TTingen)风隧道中进行,以在靠近模拟28 km高度飞行条件下的初期窒息点的等效比率下获得Hyshot II瘙痒率配置的详细测量。诊断技术包括时间分辨的压力测量和同时高速Schlieren和OH *化学发光成像。类似于以前的等效比率的实验,通过形成最初传播管道的不稳定冲击火车来发出窒息的发作。然而,震动运动随后减慢,并且准稳定的拓扑在依赖于在等效比上强烈依赖的位置(进一步上游以获得更高的等效比率的位置)开发。这种拓扑仍然存在,直到结论稳定的测试时间。基于这些测量,确定了临界窒息等效率的值,即,首先出现冲击列车的值,在0.38-0.39的范围内。在模型摄入斜坡上还进行高速温度敏感涂料测量,以提供关于边界层转换行为的全局信息。

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