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首页> 外文期刊>Journal of propulsion and power >Dynamic Response of Rocket Swirl Injectors, Part I: Wave Reflection and Resonance
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Dynamic Response of Rocket Swirl Injectors, Part I: Wave Reflection and Resonance

机译:火箭旋流注入器的动态响应,第一部分:波反射和共振

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摘要

Linear analyses are developed to theoretically investigate how disturbance waves are reflected and transmitted in the vortex chamber of a classical swirl injector. The dependence of the magnitude of the wave reflection process on the disturbance frequency is derived, and it is shown that this dependence may exhibit distinct maximum values. It is explained that the frequencies at which maximum response occurs are termed the resonant frequencies of the swirl injector. In general, resonant conditions will depend not only on the geometry of the injector but also on the particular flow conditions. In other words, for a given injector geometry, there are specific flow conditions that may produce resonance. A simple formula is derived for the primary resonance, which corresponds to a quarter-wave oscillation within the vortex chamber. Two different resonance theories are presented that vary in their level of accuracy of description of the flow transition from the vortex chamber to the nozzle. Results are provided for both of these models.
机译:开展了线性分析,以从理论上研究扰动波如何在经典旋流喷油器的涡流室中反射和传输。推导了波反射过程的大小对干扰频率的依赖性,并且表明这种依赖性可能表现出明显的最大值。解释了发生最大响应的频率称为旋流喷射器的共振频率。通常,共振条件不仅取决于喷射器的几何形状,而且还取决于特定的流动条件。换句话说,对于给定的喷射器几何形状,存在可能产生共振的特定流动条件。一个简单的公式可以推导一次共振,它对应于涡旋室内的四分之一波振荡。提出了两种不同的共振理论,它们在描述从旋涡室到喷嘴的流动过渡的准确度方面有所不同。提供了这两个模型的结果。

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