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Experimental investigation of acoustic self-oscillation influence on decay process for underexpanded supersonic jet in submerged space

机译:水下自膨胀超声速射流声自激对衰减过程影响的实验研究

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摘要

Intensification of mixing between the gaseous working body ejected through a jet nozzle with ambient medium is an important scientific and technical problem. Effective mixing can increase the total efficiency of power and propulsion apparatuses. The promising approach, although poorly studied, is generation of acoustic self-oscillation inside the jet nozzle: this impact might enhance the decay of a supersonic jet and improve the mixing parameters. The paper presents peculiar properties of acoustic self-excitation in jet nozzle. The paper presents results of experimental study performed for a model injector with a set of plates placed into the flow channel, enabling the excitation of acoustic self-oscillations. The study reveals the regularity of under-expanded supersonic jet decay in submerged space for different flow modes. Experimental data support the efficiency of using the jet nozzle with acoustic self-oscillation in application to the systems of gas fuel supply. Experimental results can be used for designing new power apparatuses for aviation and space industry and for process plants.
机译:通过喷嘴喷射的气态工作体与周围介质之间的混合增强是重要的科学和技术问题。有效的混合可以提高动力和推进装置的总效率。尽管研究很少,但有前途的方法是在喷嘴内部产生声波自激:这种影响可能会增强超音速射流的衰减并改善混合参数。本文介绍了喷嘴中声自激的特殊性质。本文介绍了对模型注入器进行的实验研究结果,该模型注入器将一组板放置在流动通道中,从而能够激发声自激振荡。研究揭示了水下在不同流动模式下超声速射流衰减不足的规律。实验数据支持在气体燃料供应系统中应用具有声波自激的喷嘴的效率。实验结果可用于设计用于航空航天工业和加工厂的新型动力设备。

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