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Time-Domain In Situ Characterization of Acoustic Liners in a Flow Duct

机译:流道中声衬的时域原位表征

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摘要

A novel method for measuring liner characteristics in situ in a flow duct is proposed with the immediate aim of obtaining the impedance boundary condition for use in time-domain acoustics. This method as an integrated system in the present demonstration employs an accurate computational aeroacoustics model for prediction of the transient response of a liner to a plane-wave source; an acoustic impulse generator capable of producing sharp, repeatable, millisecond-short sound pulses of desired waveforms; a physical setup of a partially lined duct in a wind tunnel; and an optimization method for parametric identification of the embedded liner. Based on the assumption that impedance can be characterized by a sum of damped harmonic oscillators, the characterizing parameters of the liner are inferred by minimizing the differences between the model-predicted and the in situ measured pressure responses at strategically and conveniently placed sensor locations and are immediate applicable as causal broadband time-domain impedance-equivalent boundary conditions for the computational aeroacoustic model. The use of acoustic impulses of narrow space-time extents affords this method an easy resolve of the influence of neighboring but irrelevant boundaries such as the duct exit. The reliability, effectiveness, and potential benefits of this method are studied and demonstrated. This method is expected to provide broadband inferences and insights into the mean flow effect on liners in a wide range of practical applications with the present setup. It is believed that the feasibility demonstrated here opens a new dimension for theoretical, experimental, and numerical studies in the time domain.
机译:提出了一种新颖的测量流道内衬特性的方法,其直接目的是获得时域声学中使用的阻抗边界条件。在本演示中,此方法作为集成系统采用了精确的计算航空声学模型来预测衬管对平面波源的瞬态响应。声脉冲发生器,能够产生所需波形的尖锐,可重复的,毫秒级短的声音脉冲;风洞中部分衬里的管道的物理设置;以及用于嵌入式衬里的参数识别的优化方法。基于这样的假设,即阻抗可以由阻尼谐波振荡器的总和来表征,通过最小化模型预测值和就地测量的压力响应之间的差异来推断衬管的特征参数,这些压力响应是在战略位置和方便位置放置的,并且立即可作为计算航空声学模型的因果宽带时域阻抗等效边界条件。使用窄时空范围的声脉冲使该方法可以轻松解决相邻但不相关的边界(如导管出口)的影响。研究并证明了该方法的可靠性,有效性和潜在利益。预期该方法将提供宽带推断和洞察力,以了解在当前设置下各种实际应用中对衬套的平均流量影响。可以相信,这里展示的可行性为时域的理论,实验和数值研究开辟了新的领域。

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