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High frequency acoustic wave scattering from turbulent premixed flames.

机译:湍流预混火焰中的高频声波散射。

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摘要

This thesis describes an experimental investigation of high frequency acoustic wave scattering from turbulent premixed flames. The objective of this work was to characterize the scattered incoherent acoustic field and determine its parametric dependence on frequency, flame brush thickness, incident and measurement angles, mean velocity and flame speed.;The experimental facility consists of a slot burner with a flat flame sheet that is approximately 15 cm wide and 12 cm tall. The baseline cold flow characteristics and flame sheet statistics were extensively characterized.;Studies were performed over a wide range of frequencies (1-24 kHz) in order to characterize the role of the incident acoustic wave length. The spectrum of the scattered acoustic field showed distinct incoherent spectral sidebands on either side of the driving frequency. The scattered incoherent field was characterized in terms of the incoherent field strength and spectral bandwidth and related to the theoretical predictions.;The role of the flame front wrinkling scale, i.e., flame brush thickness, was also studied. Flame brush thickness was varied independent of the mean velocity and flame speed by using a variable turbulence generator. Results are reported for five flame brush thickness cases, ranging from 1.2 mm to 5.2 mm. Some dependence of scattered field characteristics on flame brush thickness was observed, but the magnitude of the effect was much smaller than expected from theoretical considerations.;The spatial dependence of the scattered field was investigated by measuring the scattered field at four measurement angles and exciting the flame at four incident angles. Theory predicts that these variations influence the spatial scale of the acoustic wave normal to the flame, a result confirmed by the measurements.;Measurements were performed for multiple combinations of mean velocities and flame speeds. The scattered field was observed to depend strongly on the flame speed. Further analysis suggested that the change in orientation angle distribution with flame speed had a large influence on the scattered field. The scattered field characteristics did not show any appreciable change with mean velocity. This result was expected since flame brush thickness characteristics themselves exhibit a weak velocity dependence.
机译:本文描述了湍流预混火焰对高频声波散射的实验研究。这项工作的目的是表征散射的非相干声场,并确定其对频率,火焰刷厚度,入射角和测量角,平均速度和火焰速度的参数依赖性。实验设备由一个带有平坦火焰片的狭缝燃烧器组成大约15厘米宽和12厘米高。基线冷流特性和火焰表统计数据得到了广泛的表征。进行了广泛的频率范围(1-24 kHz)的研究,以表征入射声波长度的作用。散射声场的频谱在驱动频率的任一侧均显示出明显的非相干频谱边带。通过非相干场强和光谱带宽表征了散射的非相干场,并与理论预测有关。;还研究了火焰前皱纹的作用,即火焰刷的厚度。通过使用可变湍流发生器,改变了火焰刷的厚度,而与平均速度和火焰速度无关。报告了五种厚度为1.2毫米至5.2毫米的火焰刷情况的结果。观察到散射场特性对火焰刷厚度有一定的依赖性,但其影响程度远小于理论考虑的预期值;通过在四个测量角度测量散射场并激发散射场来研究散射场的空间依赖性。四个入射角的火焰。理论预测,这些变化会影响垂直于火焰的声波的空间尺度,这一结果已通过测量得到证实。;对平均速度和火焰速度的多种组合进行了测量。观察到散射场在很大程度上取决于火焰速度。进一步的分析表明,取向角分布随火焰速度的变化对散射场影响很大。散射场特征没有显示出平均速度有任何明显的变化。由于火焰刷的厚度特性本身表现出较弱的速度依赖性,因此可以预期该结果。

著录项

  • 作者

    Narra, Venkateswarlu.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;
  • 关键词

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