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Research and Development of Rotating Detonation Engine System for the Sounding Rocket Flight Experiment S520-31

机译:用于探测火箭飞行试验S520-31旋转爆轰发动机系统的研究与开发S520-31

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A detonation is a combustion wave that propagates at supersonic speed (2~3 km/s) in a combustible mixture. There are many fundamental studies of detonation waves and detonation engine systems. The detonation cycle has a higher thermal efficiency than a conventional constant-pressure combustion cycle. Therefore, it is expected that a high-efficiency propulsion system can be realized using detonation waves.A rotating detonation engine (RDE) uses continuous detonation propagating at a bottom in an annular combustor. As detonation waves propagate at a supersonic speed only in the bottom region of the RDEs, the combustor can be shortened. However, the combustor needs cooling system due to high heat flux to the combustor wall.In this experimental study, we performed combustion tests of RDE system using gaseous ethylene and oxygen as the propellant. This RDE system performance will also be demonstrated in space environment by the sounding rocket. We measured the combustor pressure, temperatures, heat flus, mass flow rate and thrust. The RDE system used in this study is shown in Figure 1. We performed the long-duration rotating detonation engine combustion tests for at sea level condition. The stable trust histories were obtained.
机译:爆轰是一种燃烧波,其在可燃混合物中以超音速(2〜3km / s)传播。爆轰波浪和爆炸发动机系统有许多基本研究。爆轰循环的热效率高于传统的恒压燃烧循环。因此,预期可以使用爆炸波实现高效推进系统。旋转爆轰发动机(RDE)使用在环形燃烧器的底部处的连续爆轰传播。由于爆震波仅在RDE的底部区域以超音速传播,因此可以缩短燃烧器。然而,燃烧器由于高热焊剂而需要冷却系统。在该实验研究中,我们使用气态乙烯和氧作为推进剂进行RDE系统的燃烧试验。该RDE系统性能也将在空间环境中展示探测火箭。我们测量了燃烧室压力,温度,热压,质量流量和推力。本研究中使用的RDE系统如图1所示。我们在海平状况下进行了长期旋转爆震发动机燃烧试验。获得稳定的信任历史。

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