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首页> 外文期刊>Physics of fluids >Effect of non-parallel mean flow on the acoustic spectrum of heated supersonic jets: Explanation of 'jet quietening'
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Effect of non-parallel mean flow on the acoustic spectrum of heated supersonic jets: Explanation of 'jet quietening'

机译:非平行平均流量对加热超声波喷射的声光谱的影响:“喷射安静”解释

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摘要

Noise measurements of heated axisymmetric jets at a fixed supersonic acoustic Mach number indicate that the acoustic spectrum reduces when the temperature ratio increases. The "spectral quietening" effect has been observed both experimentally and computationally using large Eddy simulations. It was explained by Afsar, Goldstein, and Fagan [AIAA J. 49, 2522 (2011)] through the cancellation introduced by the enthalpy flux/momentum flux coupling term using the generalized acoustic analogy formulation. But the parallel flow assumption is known to give inaccurate predictions at high jet speeds. In this paper, we therefore extend the nonparallel flow asymptotic theory of Goldstein, Sescu, and Afsar [J. Fluid Mech. 695, 199 (2012)] for the vector Green's function of the adjoint linearized Euler equations in the analogy. Using the steady Reynolds averaged Navier Stokes calculation for the jet mean flow, we find that the coupling term propagator is positive-definite and asymptotically subdominant at low frequencies corresponding to the peak jet noise when nonparallel flow effects are taken into account and self-consistent approximations for the turbulence structure are made. We then assess the validity of the non-parallel flow-based acoustic analogy model by computing the overall sound pressure level (OASPL) at various observation angles. Interpretation of the latter allows a more rational explanation of the quietening effect. In general, our noise predictions are in very good agreement with acoustic data beyond the peak frequency. Published under license by AIP Publishing.
机译:固定超声波声马赫数处的加热轴对称喷射的噪声测量表明当温度比增加时声光缩短。已经使用大涡模拟实验和计算地观察到“光谱安静”效果。它是由Afsar,Goldstein和Fagan [AIAA J.49,2522(2011)]通过使用广义声学类比制剂的焓通量/动量通量耦合术语引入的消除来解释。但是已知并行流动假设在高喷射速度下给出不准确的预测。在本文中,我们延长了Goldstein,Sescu和AFSAR的非平行流渐近理论[J.流体机械。 695,199(2012)]对于矢量绿色的伴随线性化欧拉方程在类比中的功能。使用稳定的雷诺斯平均Navier Stokes计算喷射平均流量,我们发现耦合项传播者在对应于峰值射流噪声时,耦合项传播者是正定的和渐近亚个体,当考虑非平行流量效应和自我一致的近似时对于制造湍流结构。然后,我们通过在各种观察角度计算整体声压级(OASPL)来评估非并行流动的声学模型的有效性。解释后者允许更合理地解释安抚效果。通常,我们的噪声预测与超出峰值频率的声学数据非常好。通过AIP发布在许可证下发布。

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  • 来源
    《Physics of fluids》 |2019年第10期|共25页
  • 作者单位

    Univ Strathclyde Dept Mech &

    Aerosp Engn 75 Montrose St Glasgow G41 1XJ Lanark Scotland;

    Mississippi State Univ Dept Aerosp Engn Starkville MS 39762 USA;

    Mississippi State Univ Dept Aerosp Engn Starkville MS 39762 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

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