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首页> 外文期刊>International journal of aerospace engineering >Parametric Design Method and Performance Analysis of Double S-Shaped Nozzles
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Parametric Design Method and Performance Analysis of Double S-Shaped Nozzles

机译:双S形喷嘴的参数化设计方法和性能分析

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A parametric design method, which was based on super-elliptical transition and self-adaption infrared radiation shield for the double S-shaped nozzle, was introduced. The complete shielding of high-temperature components in the S-shaped nozzle was realized. Model experiments and numerical simulations were performed to investigate the effects of offset ratio S/D, the ratio of length to diameter L/D, and the aspect ratio W/H on the aerodynamics and infrared radiation. The results showed that the total pressure recovery and thrust coefficients were improved initially, but dropped rapidly with the increase in offset ratios with the range of investigated parameters. There existed an optimal offset ratio for the aerodynamic performances. Considering the weight penalty, the length of nozzles should only be increased properly to achieve better aerodynamic performances. Both friction and viscous losses caused by large streamwise vortices dominated the aerodynamic performances of nozzles. The nozzle with the aspect ratio of W/H=5.0 was recommended for achieving optimal aerodynamics. The increase in aspect and offset ratios could effectively suppress plume radiation, which was, however, not sensitive to overall radiation. Compared to circular nozzles, double S-shaped nozzles reduced overall infrared radiation by over 50%, which proves significant stealth ability. A balance between aerodynamic performances and infrared radiation suppression could be reached for double S-shaped nozzles.
机译:引入了基于双S形喷嘴的超椭圆转型和自适应红外辐射屏蔽的参数化设计方法。实现了S形喷嘴中的高温分量的完全屏蔽。进行模型实验和数值模拟,以研究偏移比S / D的影响,长度与直径L / D的比率,以及空气动力学和红外辐射的纵横比为W / h。结果表明,最初改善了总压力恢复和推力系数,但随着研究参数范围的偏移比率而迅速下降。空气动力学性能存在最佳偏移比。考虑到重量惩罚,喷嘴的长度只应该适当地增加以实现更好的空气动力学性能。大型流动涡流引起的摩擦和粘性损失都主导了喷嘴的空气动力学性能。建议使用具有W / H = 5.0的纵横比的喷嘴来实现最佳空气动力学。方面和偏移比率的增加可以有效地抑制羽毛辐射,然而,这对于整体辐射不敏感。与圆形喷嘴相比,双S形喷嘴将总红外辐射减少超过50%,这证明了显着的隐身能力。可以达到空气动力学性能和红外辐射抑制之间的平衡,用于双S形喷嘴。

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