Theoretical and Numerical Studies on the Performance of Shock Vector Control

Kexin Wu, H. Kim
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Abstract

The transverse injection into a supersonic flow is a significant application that appeared in numerous aerodynamic applications, such as drag reduction and fluidic thrust vectoring control. Nowadays, fluidic thrust vector control is gradually replacing mechanical thrust vector control to redirect various air vehicles. Shock vector control is very popular in fluidic thrust vector control field due to lots of advantages, such as simple structure, more integrated control effect, and quick vectoring response. In present works, numerical simulations and theoretical analyses were conducted to investigate the shock vectoring performance in a three-dimensional rectangular nozzle. To validate the reliability and accuracy of the present numerical methodology, static pressure distributions along upper and lower nozzle surfaces in the symmetry plane were compared with experimental data published by NASA. It was evident that present numerical results present great approximations with experimental data. Control variables of the slot injector were studied, which not only include slot length and slot width but also contain uniform mass flow ratio and injection pressure ratio. Performance variations were illustrated clearly, such as static pressure distributions along upper and lower nozzle surfaces, deflection angle, resultant thrust coefficient, and thrust efficiency. Useful conclusions were obtained for further investigations on shock vector control.
冲击矢量控制性能的理论与数值研究
超声速流动的横向喷射在许多气动应用中都有重要的应用,如减阻和流体推力矢量控制。目前,流体推力矢量控制正逐步取代机械推力矢量控制,实现各种飞行器的重定向。冲击矢量控制以其结构简单、控制效果综合、矢量响应快等优点,在流体推力矢量控制领域得到了广泛的应用。本文对三维矩形喷管的激波矢量特性进行了数值模拟和理论分析。为了验证该数值方法的可靠性和准确性,将对称平面上、下喷管表面的静压分布与NASA公布的实验数据进行了比较。显然,目前的数值结果与实验数据有很大的近似。研究了槽式喷油器的控制变量,不仅包括槽长和槽宽,还包括均匀质量流量比和注入压力比。性能变化,如静压分布沿上下喷嘴表面,偏转角,合成推力系数和推力效率清楚地说明。所得结论对进一步研究激波病媒控制有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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