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    气波振荡管内运动波系升温效应影响因素分析

    Analysis of influencing factors on the heating effect of moving wave systems in pressure wave oscillator tubes

    • 摘要: 针对气波振荡管升温机理及关键参数影响规律尚不明确的问题,以气波振荡管组成的波转子为研究对象,采用理论分析与数值模拟相结合的方法,研究其内部升温机制及参数对升温效应的影响。结果表明,气波振荡管升温过程主要包括激波突跃升温和弱压缩波叠加渐进升温两个阶段;进气压比和振荡管管宽主要通过影响激波强度改变激波突跃升温效果,高压端口宽度和振荡管管长主要通过影响弱压缩波叠加持续性改变渐进升温效果,转速则同时影响上述两种升温过程。研究结论可为气波振荡管升温效应调控及其工程应用提供参考。

       

      Abstract: To address the unclear heating mechanism of the gas wave oscillation tube and the uncertain effects of key parameters on its heating performance, a wave rotor composed of gas wave oscillation tubes was taken as the research object, and its internal heating mechanism as well as the effects of different parameters on the heating process were investigated by combining theoretical analysis with numerical simulation. The results showed that the heating process in the gas wave oscillation tube mainly consisted of two stages: abrupt heating induced by shock waves and gradual heating caused by the superposition of weak compression waves. The pressure ratio and tube width mainly affected the abrupt shock-induced heating by changing the shock intensity, while the width of the high-pressure inlet port and the tube length mainly affected the gradual heating process by influencing the duration of weak compression-wave superposition. The rotational speed affected both heating processes simultaneously. These findings provide a reference for regulating the heating effect of gas wave oscillation tubes and for their engineering applications.

       

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