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INFLUENCE OF MICROJET CONDITION ON CHARACTERISTICS OF SUPERSONIC JET NOISE AND FLOW FIELD

机译:微射流条件对超声速射流噪声和流场特性的影响

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Jet noise reduction is essential for environmentally-friendly civil transport. Since jet noise becomes very intense in the case of supersonic aircraft, noise reduction is crucial topic for the realization of next-generation supersonic transport. In the present study, experimental investigations were performed to clarify the effect of microjet injection on supersonic jet noise and flow field. The experiments were focused on supersonic jet with Mach number up to 1.47, which was generated from a rectangular nozzle with high aspect ratio. Far-field acoustic measurements were conducted for widely ranged microjet conditions to understand the influence of the condition on characteristics of supersonic jet noise and flow field. For understanding the unsteady behavior of the flow field and the relation with noise reduction, flow field visualization was performed with schlieren technique using a high-speed camera.
机译:降低喷气机的噪音对于环境友好的民用运输至关重要。由于在超音速飞机上喷气噪声变得非常强烈,因此降噪对于实现下一代超音速运输至关重要。在本研究中,进行了实验研究以阐明微喷射喷射对超音速喷射噪声和流场的影响。实验的重点是马赫数高达1.47的超音速喷射,该喷射是由具有高纵横比的矩形喷嘴产生的。对大范围的微射流条件进行了远场声学测量,以了解该条件对超声速射流噪声和流场特性的影响。为了了解流场的非稳态行为以及与降噪的关系,使用Schlieren技术使用高速摄像机进行了流场可视化。

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