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首页> 外文期刊>The Journal of the Acoustical Society of America >Spatial correlation in the ambient core noise field of a turbofan engine
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Spatial correlation in the ambient core noise field of a turbofan engine

机译:涡扇发动机环境核心噪声场中的空间相关性

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摘要

An acoustic transfer function relating combustion noise and turbine exit noise in the presence of enclosed ambient core noise is investigated using a dynamic system model and an acoustic system model for the particular turbofan engine studied and for a range of operating conditions. Measurements of cross-spectra magnitude and phase between the combustor and turbine exit and auto-spectra at the turbine exit and combustor are used to show the presence of indirect and direct combustion noise over the frequency range of 0-400 Hz. The procedure used evaluates the ratio of direct to indirect combustion noise. The procedure used also evaluates the post-combustion residence time in the combustor which is a factor in the formation of thermal NOx and soot in this region. These measurements are masked by the ambient core noise sound field in this frequency range which is observable since the transducers are situated within an acoustic wavelength of one another. An ambient core noise field model based on one and two dimensional spatial correlation functions is used to replicate the spatially correlated response of the pair of transducers. The spatial correlation function increases measured attenuation due to destructive interference and masks the true attenuation of the turbine.
机译:使用动态系统模型和声学系统模型,针对所研究的特定涡扇发动机并针对一系列工作条件,研究了存在封闭环境核心噪声时与燃烧噪声和涡轮出口噪声相关的声学传递函数。燃烧室和涡轮出口之间的互谱幅值和相位以及涡轮出口和燃烧室处的自动谱的测量用于显示0-400 Hz频率范围内间接燃烧噪声和直接燃烧噪声的存在。使用的程序评估直接燃烧噪声与间接燃烧噪声的比率。所使用的程序还评估了燃烧器在燃烧器中的停留时间,这是在该区域形成热NOx和烟灰的一个因素。这些测量被在该频率范围内的环境核心噪声声场掩盖,这是可观察到的,因为换能器位于彼此的声波波长内。基于一维和二维空间相关函数的环境核心噪声场模型用于复制一对换能器的空间相关响应。空间相关函数会由于相消干扰而增加测得的衰减,并掩盖了涡轮的真实衰减。

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