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Effect of longitudinal baffled blades on the first-order tangential acoustic mode in cylindrical chamber

机译:纵向折流叶片对圆柱腔内一阶切向声模的影响

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The combustion instability has been an ubiquitous problem for more than a century, especially for the first-order tangential modes. In this mode, the heat transfer rates may be greatly enhanced, resulting in the deterioration of the propulsion performance and even severe physical damage of the injector face-plate. In this paper, the effect of the longitudinal baffled blades on the first-order tangential acoustic mode in a cylindrical chamber with the nozzle was theoretically and experimentally investigated. The longitudinal baffled blades were installed on the inner surface of the chamber. The linear analysis method was adopted. The theoretical results were in good agreement with the experimental results. The conclusion was that the longitudinal baffled blades can restrain the first-order acoustic instability of the combustion chamber. With the increase in the height and number of the baffle blade, the amplitude of the first-order tangential acoustic mode gradually decreased, while the amplitude of the other modes gradually increased. With the increase in the diameter of the nozzle outlet, the amplitudes of the first order tangential oscillation mode and the first-order tangential acoustic mode all decreased. However, they varied in a relatively small range. (C) 2019 Published by Elsevier Ltd.
机译:一个多世纪以来,燃烧不稳定性一直是一个普遍存在的问题,特别是对于一阶切向模式。在这种模式下,传热速率可能会大大提高,从而导致推进性能下降,甚至会严重影响喷油器面板的物理损坏。本文从理论上和实验上研究了纵向折流叶片对带有喷嘴的圆柱腔内一阶切向声模的影响。纵向挡板叶片安装在腔室内表面上。采用线性分析方法。理论结果与实验结果吻合良好。结论是,带有纵向挡板的叶片可以抑制燃烧室的一阶声不稳定性。随着挡板叶片的高度和数量的增加,一阶切向声模的振幅逐渐减小,而其他模态的振幅逐渐增大。随着喷嘴出口直径的增加,一阶切向振荡模式和一阶切向声学模式的幅度都减小了。但是,它们在相对较小的范围内变化。 (C)2019由Elsevier Ltd.发布

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