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Transition Measurements on Slender and Blunt Bodies in Ludwieg Tubes at Mach 6

机译:6马赫时Ludwieg管中细长体和钝体的过渡测量

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In the present study, transition measurements are conducted on slender and blunt bodies in two different facilities. A 7° half-angle cone is used as a slender body and an Apollo shaped capsule as a blunt body. The measurements are performed in the HLB of the TU Braunschweig in Germany and in the HHK-6 of the US Air Force Academy. Pressure sensors are applied to investigate transition mechanisms, while infrared thermography and coaxial thermocouples are used to detect transition location. A recent thorough investigation of the free stream disturbance is used as a basis to understand the effect of noise level on the transition location and dominating mechanism. Although both facilities are almost identical transition tends to occur earlier in the HHK-6. The maximum amplitude of the measured second mode instability was higher in the HLB. Laminar-turbulent boundary layer transition on blunt bodies was influenced as well, but to a lesser extent.
机译:在本研究中,过渡测量是在两个不同的设施中对细长和钝体进行的。 7°半角圆锥体用作细长体,而阿波罗形状的胶囊则用作钝体。测量是在德国不伦瑞克工业大学的HLB和美国空军学院的HHK-6中进行的。压力传感器用于研究过渡机制,而红外热成像和同轴热电偶用于检测过渡位置。最近对自由流扰动进行了彻底的研究,以此为基础来了解噪声水平对过渡位置和主导机制的影响。尽管两个设施几乎相同,但过渡往往发生在HHK-6的早期。在HLB中,测得的第二模式不稳定性的最大幅度较高。钝体上的层流湍流边界层过渡也受到了影响,但程度较小。

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