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Experimental and Computational Investigation of Multiple Injection Ports in a Convergent-Divergent Nozzle for Fluidic Thrust Vectoring

机译:束流-散流喷嘴中多个注入口用于流体推力矢量的实验和计算研究

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摘要

A computational and experimental study was conducted to investigate the effects of multiple injection ports in a two-dimensional, convergent-divergent nozzle, for fluidic thrust vectoring. The concept of multiple injection ports was conceived to enhance the thrust vectoring capability of a convergent-divergent nozzle over that of a single injection port without increasing the secondary mass flow rate requirements. The experimental study was conducted at static conditions in the Jet Exit Test Facility of the 16-Foot Transonic Tunnel Complex at NASA Langley Research Center. Internal nozzle performance was obtained at nozzle pressure ratios up to 10 with secondary nozzle pressure ratios up to 1 for five configurations. The computational study was conducted using the Reynolds Averaged Navier-Stokes computational fluid dynamics code PAB3D with two-equation turbulence closure and linear Reynolds stress modeling. Internal nozzle performance was predicted for nozzle pressure ratios up to 10 with a secondary nozzle pressure ratio of 0.7 for two configurations. Results from the experimental study indicate a benefit to multiple injection ports in a convergent-divergent nozzle. In general, increasing the number of injection ports from one to two increased the pitch thrust vectoring capability without any thrust performance penalties at nozzle pressure ratios less than 4 with high secondary pressure ratios. Results from the computational study are in excellent agreement with experimental results and validates PAB3D as a tool for predicting internal nozzle performance of a two dimensional, convergent-divergent nozzle with multiple injection ports.
机译:为了进行流体推力矢量化,进行了计算和实验研究,以研究二维,收敛-发散喷嘴中多个注入口的影响。构想了多个注入口的概念,以在不增加次级质量流率要求的情况下,比单个注入口提高会聚-发散喷嘴的推力矢量能力。实验研究是在美国航空航天局兰利研究中心的16英尺跨音速隧道综合体的射流出口测试设施中的静态条件下进行的。对于五种配置,在高达10的喷嘴压力比和高达1的次级喷嘴压力比下获得内部喷嘴性能。使用带有两方程湍流闭合和线性雷诺应力建模的雷诺平均Navier-Stokes计算流体动力学代码PAB3D进行了计算研究。对于两种配置,在喷嘴压力比最高为10的情况下,可预测内部喷嘴性能,而辅助喷嘴压力比为0.7。实验研究的结果表明,对收敛-发散喷嘴中的多个注入口有利。通常,将喷射端口的数量从一个增加到两个会增加螺距推力矢量能力,而在次级压力比较高的情况下,当喷嘴压力比小于4时,不会出现任何推力性能损失。计算研究的结果与实验结果非常吻合,并验证了PAB3D可作为预测具有多个进样口的二维会聚发散喷嘴的内部喷嘴性能的工具。

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