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Transition Experiments on Slightly Blunted Cones with Distributed Roughness in Hypersonic Flight

机译:高超声速飞行中具有分布粗糙度的略钝圆锥体的过渡实验

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Slightly blunted cones with smooth tips and roughened frusta were flown in the NASA Ames hypersonic ballistic range through quiescent air environments. Global surface intensity (temperature) distributions were optically measured and analyzed to determine transition onset and progression over the roughened surface. Real-gas Navier-Stokes calculations of model flowfields, including laminar boundary layer development in these flowfields, were conducted to predict key dimensionless parameters used to correlate transition on such configurations in hypersonic flow. For distributed roughness elements totally immersed within the laminar boundary layer, the critical roughness Reynolds number correlating approach was found to well model transition onset and progression over the roughened conic frusta. The critical value of the roughness Reynolds number for transition was found to be 269 ± 20%, in agreement with the critical value of 250 ± 20% determined in earlier experiments for transition on rough, blunt bodies in hypersonic free flight.
机译:通过静止的空气环境,在NASA Ames高超音速弹道范围内飞行了略微钝尖的圆锥体,其顶部具有光滑的尖端和粗糙的视锥细胞。用光学方法测量并分析总体表面强度(温度)分布,以确定在粗糙表面上的转变开始和进展。进行了模型流场的实际气体Navier-Stokes计算,包括这些流场中的层状边界层发展,以预测关键的无量纲参数,这些参数与高超声速流中此类构造的过渡相关。对于完全浸没在层流边界层内的分布粗糙度元素,发现了临界粗糙度雷诺数相关方法可以很好地模拟粗糙圆锥体上的过渡开始和进展。发现转变的粗糙度雷诺数的临界值为269±20%,这与在早期实验中确定的在高超声速自由飞行中在粗糙钝性物体上转变的临界值250±20%一致。

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