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首页> 外文期刊>International journal of aerospace engineering >Numerical Simulation on the Influence of Injection Location, Injection Angle, and Divergence Half Angle on SITVC Nozzle Flow Field
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Numerical Simulation on the Influence of Injection Location, Injection Angle, and Divergence Half Angle on SITVC Nozzle Flow Field

机译:注射位置,注射角度和发散半角对SITVC喷嘴流场影响的数值模拟

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摘要

A numerical study has been performed to characterize the nozzle flow field of secondary injection thrust vector control (SITVC) and to estimate the performance parameters of SITVC. After validating the CFD turbulence models with an experimental data, a numerical simulation has been conducted in order to investigate the influence of changing the injection location, the injection angle, and the primary nozzle divergence half angle on the SITVC nozzle flow field structure and on the SITVC performance parameters. The secondary mass flow rate was kept constant for all cases during the simulation. The results showed that downstream injection near the nozzle exit Mp=2.75 increases the high-pressure zone upstream the injection leading to an increase in the side force; also, the higher divergence half angle 15 degrees slightly increases the side force and it provides a wide range of deflection without shock impingement on the opposite wall becoming more effective for SITVC. The injection angle in the upstream direction 135 degrees increases the side force, and by decreasing the injection angle to downstream direction 45 degrees, the side force decreases. However, the SITVC performance parameters and the flow field structure are more influenced by the injection location and the primary nozzle divergence half angle while being less influenced by the injection angle.
机译:已经执行了数值研究以表征次级注射推力矢量控制(SITVC)的喷嘴流场并估计SITVC的性能参数。在用实验数据验证CFD湍流模型之后,已经进行了数值模拟,以研究改变注射位置,注射角度和主要喷嘴发散半角在SITVC喷嘴流场结构上的影响和上的影响SITVC性能参数。在模拟期间所有病例保持次级质量流量恒定。结果表明,喷嘴出口MP = 2.75附近的下游注射增加了喷射上游的高压区,导致侧力的增加;而且,较高的发散半角15度略微增加侧力,并且它提供了宽范围的偏转而没有冲击冲击的相对壁对SITVC更有效。上游方向135度的注射角度增加侧力,并且通过将喷射角度降低到下游方向45度,侧力减小。然而,SITVC性能参数和流场结构的喷射位置和主要喷嘴发散半角的影响更大,同时受到注射角度的影响较小。

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