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Experimental investigation of Goertler vortices in hypersonic ramp flows behind sharp and blunt leading edges

机译:高效斜坡叶片扭转尖锐钝而跳远领先边缘的实验调查

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The objective of this paper is to analyze the influence of entropy layers on the formation of Goertler vortices in hypersonic compression ramp flows at different leading edges radii, flat plate lengths and ramp angles. Ramp models with a flat plate length of 50,100 and 150 mm at ramp angles of 15*, 20* and 25* with a sharp and blunt leading edges of up to 1 mm radius are experimentally investigated in the Aachen Shock Tunnel TH2 and the Ludwieg Wind Tunnel UT-1M at Mach number 8 and a unit Reynolds number of 41· 10~6 m~(-1). The Goertler vortices are analyzed in terms of entropy layer / boundary layer interaction, vortex wavelengths, and the spanwise heat flux variation. The shock wave / boundary layer interaction influencing the Gortler instability is studied with peak heating correlations and separation lengths. Thermocouples, thermal sensitive paint, pressure sensors, schlieren imagery and infrared imaging are used to obtain the experimental data. Beyond the reversal radius, for all ramp angles and flat plates, the entropy layer / boundary layer interaction leads to a reduction of the peak heat flux and the spanwise variation at reattachment.
机译:本文的目的是分析熵层对超声波压缩斜坡在不同领先边缘,平板长度和斜坡角度的高效压缩斜坡中的形成的影响。平板长度为50,100和150毫米的斜坡型号为15 *,20 *和25 *,在Aachen冲击隧道TH2和Ludwieg Wind中实验研究了高达1毫米半径的锋利和钝的前边缘Mach号8的隧道UT-1M和单位雷诺数41·10〜6 m〜(-1)。在熵层/边界层相互作用,涡流波长和翼展热通量变化方面分析Goerller涡旋。利用峰值加热相关性和分离长度,研究了影响戈尔勒不稳定性的冲击波/边界层相互作用。热电偶,热敏涂料,压力传感器,Schlieren图像和红外成像用于获得实验数据。除了逆转半径之外,对于所有斜坡角和平板,熵层/边界层相互作用导致峰值热通量的减小和重新附着的南方霉菌变化。

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