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Effects of optimized and sub-optimum two degree of freedom lining tolerances on modeled inlet acoustic attenuation and Normal incidence impedance measurement at elevated temperatures.

机译:优化和次优两个自由度衬里公差对建模的入口声衰减和高温下法向入射阻抗测量的影响。

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摘要

This work first investigates the effect of manufacturing tolerances on realized attenuation for two degree-of-freedom linings with the use of lining models and finite element duct propagation codes. Acoustic linings were created for two turbofan engines that optimize attenuation at takeoff/sideline and approach conditions. Lining physical and geometric parameters were set, which best meet the optimum impedance requirements at two target frequencies. Similar linings were created to investigate sub-optimum designs. Variations of these parameters representing realistic manufacturing tolerances were used to systematically examine the effect on installed impedance and predicted attenuation. Attenuation at sideline and approach conditions was found to be sensitive to manufacturing tolerances around optimum conditions. The results of the study are case dependent; however the analysis scheme presented provides a method for cost-benefit analysis of manufacturing processes. In a second study, an impedance tube, with an associated data analysis method, was developed and analyzed for temperature uncertainties that allowed the measurement of impedance of acoustic samples at elevated temperatures. This impedance measurement method was validated at room temperature by comparing the results with predicted impedance from empirically based impedance models and with impedance measurements in a standard traversing microphone impedance tube. Impedance for four samples was measured at elevated temperatures, and the results were compared to room temperature measurements. For two of the samples, the impedances measured at elevated temperatures were compared to the results of extensions of room temperature empirical models, confirming the trend of the results of the elevated temperature measurements.
机译:这项工作首先使用衬砌模型和有限元导管传播代码,研究了制造公差对两个自由度衬砌的已实现衰减的影响。为两个涡扇发动机创建了隔音衬里,以优化起飞/副航和进近条件下的衰减。设置了衬里物理和几何参数,它们最能满足两个目标频率下的最佳阻抗要求。创建了类似的衬里以调查次优设计。这些代表实际制造公差的参数的变化用于系统地检查对安装阻抗和预测衰减的影响。发现在边线和进场条件下的衰减对最佳条件附近的制造公差很敏感。研究结果取决于具体情况;但是,提出的分析方案为制造过程的成本效益分析提供了一种方法。在第二项研究中,开发了一种阻抗管及其相关的数据分析方法,并分析了温度不确定性,从而可以在高温下测量声学样本的阻抗。通过将结果与基于经验的阻抗模型的预测阻抗以及在标准的传声器阻抗管中的阻抗测量值进行比较,可以在室温下验证该阻抗测量方法。在高温下测量了四个样品的阻抗,并将结果与​​室温测量值进行了比较。对于其中两个样本,将在高温下测得的阻抗与室温经验模型的扩展结果进行了比较,从而确认了高温测量结果的趋势。

著录项

  • 作者

    Burd, David R.;

  • 作者单位

    Missouri University of Science and Technology.;

  • 授予单位 Missouri University of Science and Technology.;
  • 学科 Engineering Aerospace.;Physics Acoustics.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 178 p.
  • 总页数 178
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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