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Parametric Study on Influence of an Array of Air Jets on the Performance of Supersonic Air Intake by Varying the Jet Injection and Back Pressure

机译:参数研究通过改变喷射喷射和背压来实现空气喷射阵列对超音速进气口的影响

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A numerical study on the performance parameters of supersonic mixed compression air intake has been carried out at a design Mach number of 2.2 with and without air jets at various back-pressure ratios using a commercially available software, Ansys 2019. The k-omega turbulence model was selected to capture the viscous effects. The injection pressure and the gap between the air jets were also varied to see the effect on flow field inside the air intake. The location of the air jets was kept fixed in the longitudinal direction and the position of the normal shock was varied by changing the back pressure. Mass flow ratio, flow distortion, total pressure recovery, and skin friction coefficient were chosen to measure the performance of air intake. The results suggest that a proper combination of the number of air jets and their injection pressure can improve the performance and flow field of the supersonic air intake. Deployment of four air jets with an injection pressure ratio of 4 has shown the best performance for all back-pressure cases studied.
机译:在使用市售的软件Ansys 2019的设计马赫数为2.2的设计马赫数的设计马赫数的设计马赫数的数字研究已经在2.2的设计马赫数中进行了数值研究.K-OMEGA湍流模型被选中以捕获粘性效果。还可以改变喷射压力和空气喷射之间的间隙,以便在进气中的流场的影响。在纵向方向上保持空气喷射的位置,并且通过改变背压来改变正常冲击的位置。选择质量流量比,流动变形,总压力回收和皮肤摩擦系数,以测量进气量的性能。结果表明,空气喷气机的数量及其喷射压力的适当组合可以改善超音速进气的性能和流场。具有注射压力比为4的四个空气喷气机的部署已经为研究的所有背压案例所示。

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