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Spectral Analysis of the Acoustic Near Field of a Solid-Propellant Rocket

机译:固体推进剂火箭声近场的光谱分析

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摘要

Recently, Horne etal. ("Measurements of Unsteady Pressure Fluctuations in the Near-Field of a Solid Rocket Motor Plume," International Journal of Aeroacoustics,Vol. 15, Nos. 4-5, July 2016, pp. 554-569) presented extensive measurements of the acoustic near field of a solid-propellant rocket. The experiment consists of two phases: the high-burn phase and the low-burn phase. The main objective of this investigation is to use this set of data for the determination of the dominant noise components in the near field of a rocket. The data consist of spectral measurements of an array of 14 near-field microphones and a single far-field microphone. By itself, this set of data is insufficient to accomplish the stated objective. The data are supplemented with information provided by the two-noise source model (Tam, C. K. W., Viswanathen, K., Ahuja, K. K., and Panda, J., "The Sources of Jet Noise: Experimental Evidence," Journal of Fluid Mechanics, Vol. 615, 2008, pp. 253-292) of hot supersonic laboratory jets. The two-noise source model is supported by the existence of two similarity spectra. By applying the similarity spectra to the data of Horne etal. at low burn, it is shown that the dominant noise components in the near field of a solid-propellant rocket are the same as those found in the far field of supersonic jets. Further, the data allow the development of a model for the spatial distribution of the sources of the dominant noise components. On applying the model to the high-burn phase of the experiment, excellent agreements are found.
机译:最近,霍恩等人。 (“固体火箭发动机羽流近场中非定常压力波动的测量”,《国际航空声学杂志》,第15卷,第4-5号,2016年7月,第554-569页)对声学进行了广泛的测量固体火箭的近场。实验包括两个阶段:高燃烧阶段和低燃烧阶段。这项研究的主要目的是将这组数据用于确定火箭近场中的主要噪声成分。数据由14个近场麦克风阵列和一个远场麦克风的频谱测量组成。仅靠这组数据不足以实现所述目标。数据还补充了两噪声源模型提供的信息(Tam,CKW,Viswanathen,K.,Ahuja,KK和Panda,J。,“射流噪声的源:实验证据”,《流体力学》, Vol.615,2008,pp.253-292)的热超声实验室喷嘴。两个相似度谱的存在为双噪声源模型提供了支持。通过将相似光谱应用于Horne等人的数据。研究表明,在低燃烧时,固体推进剂火箭近场的主要噪声成分与超音速喷气机的远场的噪声成分相同。此外,该数据允许开发用于主要噪声分量的源的空间分布的模型。在将该模型应用于实验的高燃烧阶段时,发现了很好的协议。

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  • 来源
    《AIAA Journal》 |2018年第3期|949-963|共15页
  • 作者单位

    Florida State Univ, Dept Math, Tallahassee, FL 32306 USA;

    NASA, Ames Res Ctr, Moffett Field, CA 94035 USA;

    NASA, Ames Res Ctr, Moffett Field, CA 94035 USA;

    NASA, Ames Res Ctr, Moffett Field, CA 94035 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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