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Control of Stationary Cross-flow Modes Using Patterned Roughness at Mach 3.5

机译:使用Mach 3.5的图案粗糙度控制静止横流模式

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Spanwise-periodic roughness designed to excite selected wave lengths of stationary cross-flow modes was investigated in a 3-D boundary layer at Mach 3.5. The test model was a sharp-tipped 14° right-circular cone. The model and integrated sensor traversing system were placed in the Mach 3.5 Supersonic Low Disturbance Tunnel (SLDT) equipped with a "quiet design" nozzle at NASA Langley RC. The model was oriented at a 4.2° angle of attack to produce a mean cross-flow velocity component in the boundary layer over the cone. Three removable cone tips have been investigated. One has a smooth surface that is used to document the baseline ("natural") conditions. The other two have minute "dimples" that are equally spaced around the circumference, at a streamwise location that is just upstream of the linear stability neutral growth branch for cross flow modes. The azimuthal mode numbers of the dimpled tips were selected to either enhance the most amplified wave numbers or to suppress the growth of the most amplified wave numbers. The results indicate that the stationary cross-flow modes were highly receptive to the patterned roughness.
机译:在Mach 3.5的3-D边界层中研究了设计用于激发静止横流模式的激发的波长的翼展周期性粗糙度。测试模型是尖锐的14°右圆形锥体。该模型和集成传感器遍历系统被放置在Mach 3.5超音速低干扰隧道(SLDT),配备了NASA Langley RC的“安静设计”喷嘴。该模型以4.2°的攻角定向,以在锥上产生边界层中的平均横流速度分量。调查了三个可拆卸锥提示。一个具有光滑的表面,用于记录基线(“自然”)条件。另外两个具有围绕圆周等距间隔的微小的“凹坑”,其在沿线性稳定性中性生长分支的横向流动模式的上游。选择凹陷提示的方位角模式数量以增强最大的波数或抑制最放大的波数的生长。结果表明,静止的横流模式具有高度接受的图案粗糙度。

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