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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Aerodynamic characteristics of breathing blunt nose configuration at hypersonic speeds
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Aerodynamic characteristics of breathing blunt nose configuration at hypersonic speeds

机译:超音速下呼吸钝鼻构造的空气动力学特征

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摘要

Breathing blunt nose technique is one of the promising methods for reducing the drag of blunt-nosed body at hypersonic speeds. The air, traversed by the bow shock positioned ahead of the nose, at the stagnation region is allowed to enter through a hole at the blunt-nose and ejected at the rear part (base region) of the body. This manipulation reduces the positive pressure over the stagnation regions of the nose and increases the pressure at the base, resulting in reduced suction at the base. The simultaneous manifestation of reducing the compression at the nose and suction at the base regions results in reduction of the total drag. The drag reduction caused by the breathing blunt nose technique has been measured in a Mach 7 tunnel. Also, the drag and flow field around the blunt-nosed body, with and without breathing hole, has been computed. The aerodynamic characteristics of the breathing blunt nose model obtained experimentally are compared with the CFD results. It is found that the breathing results in 5% reduction in drag. The lift coefficient also comes down for the model with breathing nose. But the lift-to-drag ratio is found to be the same for both the cases; the blunt-nosed body with and without nose-hole.
机译:呼吸钝鼻技术是减少高超声速下钝鼻体阻力的一种有前途的方法。在停滞区域中,由位于鼻子前面的弓形冲击所穿过的空气可以通过钝鼻处的孔进入,并在身体的后部(底部区域)喷出。该操作减小了鼻子的停滞区域上的正压力,并增加了底部的压力,导致底部的吸力降低。减少鼻子的压缩和底部区域的吸力的同时表现出总阻力的减小。由呼吸钝鼻技术引起的阻力降低已在Mach 7隧道中进行了测量。同样,已经计算出带有和不带有呼吸孔的钝鼻周围的阻力和流场。通过实验获得的呼吸钝鼻模型的空气动力学特性与CFD结果进行了比较。发现呼吸导致阻力降低了5%。对于具有呼吸鼻子的模型,升力系数也会降低。但是发现两种情况的升阻比是相同的。鼻孔较钝的鼻孔。

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