Impact of burner plenum acoustics on the sound emission of a turbulent lean premixed open flame

IF 1.4 4区 工程技术 Q3 ENGINEERING, MECHANICAL International Journal of Spray and Combustion Dynamics Pub Date : 2020-09-01 DOI:10.1177/1756827720956906
S. Herff, K. Pausch, H. Nawroth, S. Schlimpert, C. Paschereit, W. Schröder
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引用次数: 6

Abstract

The acoustic field of a turbulent lean cpremixed open flame is numerically investigated by a hybrid method solving the Navier-Stokes equations in a large-eddy simulation formulation and the acoustic perturbation equations. The interaction of acoustic modes of a burner plenum and the turbulent flame is analyzed with respect to the sound emission of the flame. It is investigated if a simplified computation yields a good broadband agreement of the sound pressure spectrum with experimental measurements. The results of two numerical setups, i.e., the first configuration consists of the burner plus the plenum geometry while in the second configuration the plenum is neglected, which is often done in technical applications due to computational efficiency reasons, are compared with experimental findings. It can be concluded that the plenum has a pronounced impact on the dynamics and combustion noise of the open flame. To be more precise, the comparative juxtaposition of the numerical and experimental results shows a good agreement only for the full burner-plenum computation since the interaction of the acoustic quarter-wave modes of the burner plenum with the jet flow has to be captured. The interaction of these quarter-wave modes with the flow is analyzed and the acoustic response to heat release fluctuations of the flame of the full burner-plenum computation is compared to that of the simplified burner computation, in which the plenum acoustics is neglected. Due to the excitation by the plenum acoustics, the jet flow of the full burner plenum contains higher turbulent kinetic energy and the flame is excited at several additional frequencies which result in distinct peaks in the acoustic spectrum and a higher overall sound pressure level.
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燃烧器气室声学对稀薄湍流预混明火声发射的影响
采用求解大涡模拟公式中的Navier-Stokes方程和声扰动方程的混合方法,对湍流稀薄预混明火的声场进行了数值研究。从火焰声发射的角度分析了燃烧器静压室与湍流火焰声模态的相互作用。研究了简化计算是否能使声压谱与实验测量结果在宽频带上有很好的一致性。将两种数值设置的结果与实验结果进行了比较,即第一种配置由燃烧器和静压室组成,而在第二种配置中,由于计算效率的原因,经常忽略静压室,这在技术应用中是常见的。可以得出结论,静压室对明火的动力学和燃烧噪声有显著影响。更精确地说,数值结果和实验结果的对比并列表明,由于必须捕捉燃烧器静压室的声学四分之一波模式与射流的相互作用,因此只有对整个燃烧器静压室的计算才有很好的一致性。分析了这些四分之一波模态与流动的相互作用,并比较了全燃烧器-静压室计算与忽略静压室声学的简化燃烧器计算对火焰放热波动的声响应。由于静压室声学的激励,全燃烧器静压室的射流具有较高的湍流动能,火焰在多个附加频率上受到激励,导致声谱出现明显的峰值,整体声压级较高。
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来源期刊
International Journal of Spray and Combustion Dynamics
International Journal of Spray and Combustion Dynamics THERMODYNAMICS-ENGINEERING, MECHANICAL
CiteScore
2.20
自引率
12.50%
发文量
21
审稿时长
>12 weeks
期刊介绍: International Journal of Spray and Combustion Dynamics is a peer-reviewed open access journal on fundamental and applied research in combustion and spray dynamics. Fundamental topics include advances in understanding unsteady combustion, combustion instability and noise, flame-acoustic interaction and its active and passive control, duct acoustics...
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