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Experimental investigation of surface flow pattern on truncated cones in Mach 5 flow: influence of truncation ratio

机译:5马赫流截锥上表面流型的实验研究:截断率的影响

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摘要

The flow characteristics on a truncated cone with a cylinder were experimentally investigated in a Mach 5 flow with a Reynolds number 3.8 × 105, based on the cylindrical diameter. Two different truncation ratios of 0.5 and 0.7 were used. The incidence angle varied from −12 to 0° with 3° intervals to investigate the influence of the truncation ratio on the surface flow pattern. The measurement techniques: unsteady pressure-sensitive paint (anodized aluminium method), color Schlieren photography, and surface oil flow were used. It was found that the distance of the external shock wave from the conical surface depends on the truncation ratio, and the surface pressure on the conical portion increases when the external shock wave moves closer to the model surface. The “external” shock wave denotes a detached shock wave and the “internal” one is the shock wave formed between the detached bow shock wave and the model surface. In the higher truncation ratio at the higher incidence angle, the internal shock wave induced by the flow separation on the conical surface impinges on the external shock wave, which results in its reflection. This reflection leads to the pressure increase on the model surface. On the other hand, this reflection does not appear in the lower truncation ratio. In spite of the different truncation ratios, the angle of the internal shock wave is identical at the same incidence angle. From the oil flow results, the wall shear stress on the leeward conical surface is lager in the higher truncation ratio model.
机译:根据圆柱直径,在雷诺数为3.8×105的Mach 5流中,通过实验研究了带圆柱体的圆锥台上的流动特性。使用两种不同的截断比0.5和0.7。入射角从-12到0°(以3°的间隔)变化,以研究截断比对表面流型的影响。测量技术:使用不稳定的压敏涂料(阳极氧化铝法),彩色Schlieren摄影和表面油流。已经发现,外部冲击波与圆锥形表面的距离取决于截断率,并且当外部冲击波靠近模型表面时,圆锥形部分上的表面压力会增加。 “外部”冲击波表示分离的冲击波,而“内部”冲击波表示分离的弓形冲击波与模型表面之间形成的冲击波。在较高的入射角处具有较高的截断比时,由圆锥面上的流分离引起的内部冲击波会撞击外部冲击波,从而导致反射。这种反射导致模型表面上的压力增加。另一方面,在较低的截断率中不会出现这种反射。尽管截断率不同,但在相同的入射角下,内部冲击波的角度是相同的。从油流的结果来看,在较高的截断比模型中,背风圆锥面上的壁面剪应力更大。

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