首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >An experimental study of binary lateral jets on a standard model in subsonic, transonic, and supersonic cross-flows
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An experimental study of binary lateral jets on a standard model in subsonic, transonic, and supersonic cross-flows

机译:二元横向喷射对亚型,跨音,超声交叉流量标准模型的实验研究

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There are numerous aerodynamic and nonaerodynamic methods to control flying devices, one of which is lateral jets, i.e. a high-speed method with convenient operation at low speeds or high altitudes. In this research, a new arrangement of lateral jets is examined by testing in a wind tunnel. The test is conducted on the Basic Finner model. In this design, the jets at the top and bottom of the model are arranged in pairs and parallel to each other. This combination, in addition to controlling pitch channel, provides the necessary conditions to control the roll channel. In this paper, pressure distribution is examined in the upstream and downstream areas as well as middle of jets. The flow visualization method is also used. The results are provided for subsonic, transonic, and supersonic free flow regime at the positive and negative angles of attacks. In the subsonic and supersonic flows, the achievements of the binary jets are the further pressure reduction on the middle line of jets compared with the same position at downstream of a single jet, and maintaining a high-pressure area of a single jet at the upstream of jets compared with the upstream area. However, the pressure reduction rate is lower in the transonic regime and the effectiveness of the angle of attack is greater than the subsonic and supersonic flows. Finally, a comparison with numerical result is accomplished.
机译:控制飞行装置有许多空气动力学和非流体动力学方法,其中一个是横向喷射器,即高速法以低速或高海拔高速操作。在该研究中,通过在风洞中测试来检查横向喷射的新布置。该测试在基本的芬兰模型上进行。在这种设计中,模型顶部和底部的喷射成对排列并彼此平行。这种组合除了控制间距通道之外,还提供了控制辊通道的必要条件。在本文中,在上游和下游区域以及喷气机中间检查压力分布。还使用流量可视化方法。在攻击的正和负角度提供亚音速,跨音和超音速流动状态的结果。在亚音速和超音速流动中,二进制喷射的成果是与单个喷射的下游的相同位置相比,射流中间的进一步减压,并在上游保持单个喷射的高压区域喷气机与上游区域进行比较。然而,在跨音状态下减压率较低,攻角的有效性大于子系统和超音速流动。最后,完成与数值结果的比较。

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